Literature DB >> 11750851

Modulation of cisplatin pharmacodynamics by Cremophor EL: experimental and clinical studies.

H Gelderblom1, W J Loos, J Verweij, M E L van der Burg, M J A de Jonge, E Brouwer, K Nooter, G Stoter, A Sparreboom.   

Abstract

The paclitaxel vehicle Cremophor EL (CrEL) has been shown to selectively inhibit the accumulation of cisplatin in peripheral blood leucocytes, but not in tumour cells in vitro, and we hypothesised that this phenomenon is responsible for the improvement of the therapeutic index of cisplatin observed in combination studies with paclitaxel. Here, we report on studies assessing the interaction between CrEL and cisplatin in a murine model, and involving the potential clinical applicability of CrEL as a protector for cisplatin-associated haematological side-effects. In mice, CrEL (0.17 ml/kg, intravenous (i.v.)) given in combination with cisplatin (10 mg/kg, intraperitoneal (i.p.)) did not change the pharmacokinetics of cisplatin. Cisplatin-induced haematological toxicity, expressed as white blood cells (WBC) at nadir, was significantly reduced by CrEL from 5.05+/-0.95 to 6.50+/-1.31 x 10(9)/l (P=0.0009). Data obtained from cancer patients treated with cisplatin (70 mg/m(2), 3-h i.v.) and topotecan (0.45 or 0.60 mg/m(2)/day x 2) preceded by CrEL (12 ml, 3-h i.v.) (n=6) or without CrEL (n=10) similarly indicated significant differences in the percent decrease in WBC between the groups (46.5+/-18.7 versus 67.2+/-15.0%; P=0.029). Likewise, the percent decrease in platelet count was significantly greater in the absence of CrEL (23.9+/-5.38 versus 73.3+/-15.5%; P=0.0003). Pharmacokinetic parameters of unbound and total cisplatin and of topotecan lactone and total drug were not significantly different from historic control values (P>or=0.245). Overall, this study provides further evidence on the important role of CrEL in the pharmacological and toxicological profile of cisplatin, and implies that reformulation of cisplatin with CrEL for systemic treatment might achieve an improvement of its therapeutic index, particularly in the setting of a weekly dose-dense concept.

Entities:  

Mesh:

Substances:

Year:  2002        PMID: 11750851     DOI: 10.1016/s0959-8049(01)00348-3

Source DB:  PubMed          Journal:  Eur J Cancer        ISSN: 0959-8049            Impact factor:   9.162


  4 in total

1.  Docetaxel-loaded thermosensitive and bioadhesive nanomicelles as a rectal drug delivery system for enhanced chemotherapeutic effect.

Authors:  Youn Gee Seo; Dong-Wuk Kim; Woo Hyun Yeo; Thiruganesh Ramasamy; Yu-Kyoung Oh; Young-Joon Park; Jung-Ae Kim; Dong Hoon Oh; Sae Kwang Ku; Jin Ki Kim; Chul Soon Yong; Jong Oh Kim; Han-Gon Choi
Journal:  Pharm Res       Date:  2013-04-03       Impact factor: 4.200

2.  Nano-Delivery of a Novel Inhibitor of Polynucleotide Kinase/Phosphatase (PNKP) for Targeted Sensitization of Colorectal Cancer to Radiation-Induced DNA Damage.

Authors:  Sams M A Sadat; Melinda Wuest; Igor M Paiva; Sirazum Munira; Nasim Sarrami; Forughalsadat Sanaee; Xiaoyan Yang; Marco Paladino; Ziyad Binkhathlan; Feridoun Karimi-Busheri; Gary R Martin; Frank R Jirik; David Murray; Armin M Gamper; Dennis G Hall; Michael Weinfeld; Afsaneh Lavasanifar
Journal:  Front Oncol       Date:  2021-12-23       Impact factor: 6.244

3.  Weekly high-dose cisplatin is a feasible treatment option: analysis on prognostic factors for toxicity in 400 patients.

Authors:  F E de Jongh; R N van Veen; S J Veltman; R de Wit; M E L van der Burg; M J van den Bent; A S Th Planting; W J Graveland; G Stoter; J Verweij
Journal:  Br J Cancer       Date:  2003-04-22       Impact factor: 7.640

4.  Hepatotoxicity and pharmacokinetics of cisplatin in combination therapy with a traditional Chinese medicine compound of Zengmian Yiliu granules in ICR mice and SKOV-3-bearing nude mice.

Authors:  Can Gong; Lin Qian; Hong Yang; Li-li Ji; Hai Wei; Wen-bin Zhou; Cong Qi; Chang-hong Wang
Journal:  BMC Complement Altern Med       Date:  2015-08-18       Impact factor: 3.659

  4 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.