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Laser flash photolysis and pulse radiolysis study on chemical activity of VP-16 and podophyllotoxin 被引量:2

Laser flash photolysis and pulse radiolysis study on chemical activity of VP-16 and podophyllotoxin
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摘要 Time-resolved laser flash photolysis and pulse radiolysis have been used to study the chemical activity of podophyllotoxin(PPT) and etoposide(VP-16). The mechanism of photoionization of etoposide and podophyllotoxin has been confirmed and illustrated. It is demonstrated that VP-16 and PPT in aqueous solution can be photoionized at 248 nm to give hydrated electron and neutral radical resulting from rapid deprotonation of radical cation of VP-16 and PPT. The quantum yield for the photoionization of VP-16 and PPT with single-photo is 0.21 and 0.61, respectively. In addition, they can react with hydrated electron, hydrogen radical and hydroxyl radical. This will give chemists some advice on synthesizing new derivatives of podophyllotoxin in cancer treatment. Time-resolved laser flash photolysis and pulse radiolysis have been used to study the chemical activity of podophyllotoxin(PPT) and etoposide(VP-16). The mechanism of photoionization of etoposide and podophyllotoxin has been confirmed and illustrated. It is demonstrated that VP-16 and PPT in aqueous solution can be photoionized at 248 nm to give hydrated electron and neutral radical resulting from rapid deprotonation of radical cation of VP-16 and PPT. The quantum yield for the photoionization of VP-16 and PPT with single-photo is 0.21 and 0.61, respectively. In addition, they can react with hydrated electron, hydrogen radical and hydroxyl radical. This will give chemists some advice on synthesizing new derivatives of podophyllotoxin in cancer treatment.
出处 《Science China Chemistry》 SCIE EI CAS 2002年第2期191-199,共9页 中国科学(化学英文版)
基金 This work was supported by the National Natural Science Foundation of China (Grant No. 39700029).
关键词 podophyllotoxin VP-16 laser flash photolysis PULSE radiolysis ANTITUMOR activity. podophyllotoxin VP-16 laser flash photolysis pulse radiolysis antitumor activity
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