Literature DB >> 26249543

Pharmacokinetic Properties of Single and Repeated Injection of Liposomal Platelet Substitute in a Rat Model of Red Blood Cell Transfusion-Induced Dilutional Thrombocytopenia.

Mai Hashimoto1, Kazuaki Taguchi2, Shigeru Ogaki1, Hiroshi Watanabe3, Manabu Kinoshita4, Kahoko Nishikawa5, Shinji Takeoka6, Yasuo Ikeda6, Makoto Handa7, Masaki Otagiri8, Toru Maruyama9.   

Abstract

A preclinical study of dodecapeptide ((400)HHLGGAKQAGDV(411)) (H12)-(adenosine diphosphate, ADP)-liposomes for use as a synthetic platelet (PLT) substitute under conditions of red blood cell (RBC) transfusion-induced dilutional thrombocytopenia is limited to pharmacological effect. In this study, the pharmacokinetics of H12-(ADP)-liposomes in RBC transfusion-induced dilutional thrombocytopenic rats were evaluated. As evidenced by the use of (14) C, (3) H double-radiolabeled H12-(ADP)-liposomes in which the encapsulated ADP and liposomal membrane were labeled with (14) C and (3) H, respectively, the H12-(ADP)-liposomes remained intact in the blood circulation for up to 3 h after injection, and were mainly distributed to the liver and spleen. The encapsulated ADP was mainly eliminated in the urine, whereas the outer membrane was mainly eliminated in the feces. These successive pharmacokinetic properties of the H12-(ADP)-liposomes in RBC transfusion-induced dilutional thrombocytopenic rats were similar to those in healthy rats, except for the shorter retention time in the circulation. When H12-(ADP)-liposomes were repeatedly injected into RBC transfusion-induced dilutional thrombocytopenic rats at intervals of 5 days at a dose of 10 mg lipids/kg, the second dose of injected H12-(ADP)-liposomes were rapidly cleared from the circulation, namely, via the accelerated blood clearance phenomenon. These novel pharmacokinetic findings provide useful information for the further development of H12-(ADP)-liposomes as a PLT substitute.
© 2015 Wiley Periodicals, Inc. and the American Pharmacists Association.

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Keywords:  accelerated blood clearance phenomenon; adenosine-diphosphate; clearance; dodecapeptide; liposome; pegylation; pharmacokinetics; platelet substitute; thrombocytopenia; transfusion

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Year:  2015        PMID: 26249543     DOI: 10.1002/jps.24607

Source DB:  PubMed          Journal:  J Pharm Sci        ISSN: 0022-3549            Impact factor:   3.534


  1 in total

1.  Fibrinogen-Coated Albumin Nanospheres Prevent Thrombocytopenia-Related Bleeding.

Authors:  Anthony D Sung; Richard C Yen; Yiqun Jiao; Alyssa Bernanke; Deborah A Lewis; Sara E Miller; Zhiguo Li; Joel R Ross; Alexandra Artica; Sadhna Piryani; Dunhua Zhou; Yang Liu; Tuan Vo-Dinh; Maureane Hoffman; Thomas L Ortel; Nelson J Chao; Benny J Chen
Journal:  Radiat Res       Date:  2020-08-01       Impact factor: 3.372

  1 in total

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