Phosphorus 32 Atom

Phosphorus 32 Atom. This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team.

Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

This entity has been manually annotated by the chebi team. This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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This entity has been manually annotated by the chebi team.. This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death... Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team.. This entity has been manually annotated by the chebi team.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death... Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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This entity has been manually annotated by the chebi team. This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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This entity has been manually annotated by the chebi team. This entity has been manually annotated by the chebi team.. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team.. This entity has been manually annotated by the chebi team.

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This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team.. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death... This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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This entity has been manually annotated by the chebi team... This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.. This entity has been manually annotated by the chebi team.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.. This entity has been manually annotated by the chebi team.

Phosphorus Wikipedia

Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death... Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team. This entity has been manually annotated by the chebi team.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team.. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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This entity has been manually annotated by the chebi team. . This entity has been manually annotated by the chebi team.

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This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team... Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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This entity has been manually annotated by the chebi team. This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death... Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team. This entity has been manually annotated by the chebi team.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team. This entity has been manually annotated by the chebi team.

Phosphorus Wikipedia

This entity has been manually annotated by the chebi team. This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death... This entity has been manually annotated by the chebi team.

Phosphorus Wikipedia

This entity has been manually annotated by the chebi team. This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team.

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This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team... Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death... This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.. This entity has been manually annotated by the chebi team.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. .. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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This entity has been manually annotated by the chebi team. This entity has been manually annotated by the chebi team.

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This entity has been manually annotated by the chebi team... This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death... Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death... Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.. This entity has been manually annotated by the chebi team.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team... This entity has been manually annotated by the chebi team.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team.. This entity has been manually annotated by the chebi team.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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This entity has been manually annotated by the chebi team... Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team.. This entity has been manually annotated by the chebi team.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team.. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team.. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team.. This entity has been manually annotated by the chebi team.

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This entity has been manually annotated by the chebi team. . This entity has been manually annotated by the chebi team.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team... Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team... This entity has been manually annotated by the chebi team.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death... Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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This entity has been manually annotated by the chebi team... Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team. This entity has been manually annotated by the chebi team.

Phosphorus Wikipedia

This entity has been manually annotated by the chebi team.. This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.. This entity has been manually annotated by the chebi team.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team.. This entity has been manually annotated by the chebi team.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death... Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team. This entity has been manually annotated by the chebi team.

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This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team... Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team... This entity has been manually annotated by the chebi team.

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This entity has been manually annotated by the chebi team. . This entity has been manually annotated by the chebi team.

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This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team.. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team... This entity has been manually annotated by the chebi team.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death... Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team.. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

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This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.

Compared To An Atom Of Phosphorus 31 An Atom Of Sulfur 32 Contai

This entity has been manually annotated by the chebi team... Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team.. This entity has been manually annotated by the chebi team.

Easy And Fast In Situ Functionalization Of Exfoliated 2d Black Phosphorus With Gold Nanoparticles Dalton Transactions Rsc Publishing Doi 10 1039 D1dt02123k

This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death. This entity has been manually annotated by the chebi team. This entity has been manually annotated by the chebi team.

Atomic Concepts Regents Review Regents Review 1 A

This entity has been manually annotated by the chebi team... This entity has been manually annotated by the chebi team. Emitted by phosphorus p32, beta particles directly damage cellular dna and, by ionizing intracellular water to produce several types of cytotoxic free radicals and superoxides, indirectly damage intracellular biological macromolecules, resulting in tumor cell death.. This entity has been manually annotated by the chebi team.

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