AI Article Synopsis

  • Cancer treatment with cisplatin can lead to drug resistance, largely due to cellular defense mechanisms, particularly involving glutathione (GSH).
  • The study examined how cisplatin affects intracellular GSH levels in various human cell lines, including both sensitive and resistant types.
  • Results showed significant differences in GSH content between resistant and sensitive cell lines, suggesting that changes in GSH levels post-cisplatin exposure are more indicative of resistance than initial GSH levels, with GSH measurements potentially serving as predictors of cisplatin resistance.

Article Abstract

One of the major complications in cancer chemotherapy with cisplatin as one of the important medicines in treatment regimens of different cancers is the development of resistance. One of the most described cellular defense mechanisms involved in resistance is glutathione (GSH), thus in this study, the effects of cisplatin on the total intracellular GSH level (GSHi) in some sensitive and resistant variants of human cell lines (hepatocarcinoma HepG2, skin A375, cisplatin sensitive glioblastoma U373MG and cisplatin resistant glioblastoma U373MGCP, cisplatin sensitive ovary A2780S and cisplatin resistant A2780CP cells) were studied. MTT assay was performed to measure cytotoxicity of cisplatin (33.3 µM for 1 hour). Following cisplatin exposure, GSHi (per million cells) was evaluated using a photometrical assay up to 90 minutes. Our results indicate that there are significant differences between GSHi content of A2780CP and U373MGCP cells compared to other cell lines. Moreover, IC50 of cisplatin in different cells seems to have a relation with mean of GSH level in 90 minutes (GSH (mean)90). As a conclusion, it seems that resistance to cisplatin in different cell lines is more related with the diverse patterns of GSHi variations following cisplatin exposure than its original level, and/or its cellular increase or decrease. It is also suggested that GSH (mean)90 may be used as a factor for the prediction of cellular resistance to cisplatin.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4403068PMC

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