Literature DB >> 12882586

Role of red blood cells in pharmacokinetics of chemotherapeutic agents.

Dirk Schrijvers1.   

Abstract

After oral or parenteral administration of chemotherapeutic agents, these drugs are transported to the tissues by the blood in different fractions: plasma water, plasma proteins or cells. Erythrocytes may play an important role in the storage, transport and metabolism of chemotherapeutic agents. Anthracyclines, ifosfamide and its metabolites, and topoisomerase I and I/II inhibitors are incorporated in red blood cells. They may be transported to the tumour tissue and mobilised from the erythrocyte by different active or passive transport mechanisms. Erythrocytes may also be used as carriers for drugs such as asparaginase. This leads to a decreased toxicity profile. Finally, it has been shown that red blood cells are important in the transport and metabolism of mercaptopurine. The erythrocyte concentration of mercaptopurine has a prognostic value in the treatment of childhood acute lymphoblastic leukemia. In this review, the role of red blood cells for various anticancer drugs is further discussed.

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Year:  2003        PMID: 12882586     DOI: 10.2165/00003088-200342090-00001

Source DB:  PubMed          Journal:  Clin Pharmacokinet        ISSN: 0312-5963            Impact factor:   6.447


  56 in total

1.  Partitioning of ifosfamide and its metabolites between red blood cells and plasma.

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Journal:  J Pharm Sci       Date:  1996-03       Impact factor: 3.534

Review 2.  Ifosfamide/mesna. A review of its antineoplastic activity, pharmacokinetic properties and therapeutic efficacy in cancer.

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Journal:  Drugs       Date:  1991-09       Impact factor: 9.546

Review 3.  Erythrocytes and the transport of drugs and endogenous compounds.

Authors:  M S Highley; E A De Bruijn
Journal:  Pharm Res       Date:  1996-02       Impact factor: 4.200

4.  The anti-neoplastic drug 5-fluorouracil produces echinocytosis and affects blood rheology.

Authors:  G M Baerlocher; J H Beer; G R Owen; H J Meiselman; W H Reinhart
Journal:  Br J Haematol       Date:  1997-11       Impact factor: 6.998

5.  Pharmacokinetics of carboplatin after i.v. administration.

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Journal:  Cancer Treat Rep       Date:  1987-12

6.  Pharmacokinetics of oxaliplatin in patients with normal versus impaired renal function.

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Journal:  Cancer Chemother Pharmacol       Date:  2000       Impact factor: 3.333

7.  Blood thiols following amifostine and mesna infusions, a pediatric oncology group study.

Authors:  A K Souid; R C Fahey; M K Aktas; O A Sayin; S Karjoo; G L Newton; P D Sadowitz; R L Dubowy; M L Bernstein
Journal:  Drug Metab Dispos       Date:  2001-11       Impact factor: 3.922

8.  Methotrexate-loaded, photosensitized erythrocytes: a photo-activatable carrier/delivery system for use in cancer therapy.

Authors:  G Flynn; L McHale; A P McHale
Journal:  Cancer Lett       Date:  1994-07-29       Impact factor: 8.679

9.  In vitro cytotoxicity, protein binding, red blood cell partitioning, and biotransformation of oxaliplatin.

Authors:  L Pendyala; P J Creaven
Journal:  Cancer Res       Date:  1993-12-15       Impact factor: 12.701

10.  Differential interactions of camptothecin lactone and carboxylate forms with human blood components.

Authors:  Z Mi; T G Burke
Journal:  Biochemistry       Date:  1994-08-30       Impact factor: 3.162

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  12 in total

Review 1.  Cardiovascular complications of breast cancer therapy in older adults.

Authors:  Chetan Shenoy; Igor Klem; Anna Lisa Crowley; Manesh R Patel; Mark A Winchester; Cynthia Owusu; Gretchen G Kimmick
Journal:  Oncologist       Date:  2011-07-07

2.  Non-Hodgkin's lymphoma in the elderly.

Authors:  Paolo F Caimi; Paul M Barr; Nathan A Berger; Hillard M Lazarus
Journal:  Drugs Aging       Date:  2010-03-01       Impact factor: 3.923

3.  On Command Drug Delivery via Cell-Conveyed Phototherapeutics.

Authors:  Christina M Marvin; Song Ding; Rachel E White; Natalia Orlova; Qunzhao Wang; Emilia M Zywot; Brianna M Vickerman; Lauren Harr; Teresa K Tarrant; Paul A Dayton; David S Lawrence
Journal:  Small       Date:  2019-07-28       Impact factor: 13.281

4.  Sample Extraction and Simultaneous Chromatographic Quantitation of Doxorubicin and Mitomycin C Following Drug Combination Delivery in Nanoparticles to Tumor-bearing Mice.

Authors:  Rui Xue Zhang; Tian Zhang; King Chen; Ji Cheng; Paris Lai; Andrew M Rauth; K Sandy Pang; Xiao Yu Wu
Journal:  J Vis Exp       Date:  2017-10-05       Impact factor: 1.355

Review 5.  Toxicity of Cancer Therapies in Older Patients.

Authors:  Olivia Le Saux; Claire Falandry
Journal:  Curr Oncol Rep       Date:  2018-06-13       Impact factor: 5.075

Review 6.  Regenerative therapies for diabetic microangiopathy.

Authors:  Roberto Bassi; Alessio Trevisani; Sara Tezza; Moufida Ben Nasr; Francesca Gatti; Andrea Vergani; Antonio Farina; Paolo Fiorina
Journal:  Exp Diabetes Res       Date:  2012-03-29

7.  A complex micellar system co-delivering curcumin with doxorubicin against cardiotoxicity and tumor growth.

Authors:  Di Zhang; Qian Xu; Ning Wang; Yanting Yang; Jiaqi Liu; Guohua Yu; Xin Yang; Hui Xu; Hongbo Wang
Journal:  Int J Nanomedicine       Date:  2018-08-10

8.  Facilitated uptake of a bioactive metabolite of maritime pine bark extract (pycnogenol) into human erythrocytes.

Authors:  Max Kurlbaum; Melanie Mülek; Petra Högger
Journal:  PLoS One       Date:  2013-04-30       Impact factor: 3.240

9.  A quinoxaline derivative as a potent chemotherapeutic agent, alone or in combination with benznidazole, against Trypanosoma cruzi.

Authors:  Jean Henrique da Silva Rodrigues; Tânia Ueda-Nakamura; Arlene Gonçalves Corrêa; Diego Pereira Sangi; Celso Vataru Nakamura
Journal:  PLoS One       Date:  2014-01-17       Impact factor: 3.240

10.  Brain Transport Profiles of Ginsenoside Rb1 by Glucose Transporter 1: In Vitro and in Vivo.

Authors:  Yu-Zhu Wang; Qing Xu; Wei Wu; Ying Liu; Ying Jiang; Qing-Qing Cai; Qian-Zhou Lv; Xiao-Yu Li
Journal:  Front Pharmacol       Date:  2018-04-19       Impact factor: 5.810

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