Biological and Pharmaceutical Bulletin
Online ISSN : 1347-5215
Print ISSN : 0918-6158
ISSN-L : 0918-6158
Biodisposition Characteristics of N-Succinyl-chitosan and Glycol-chitosan in Normal and Tumor-bearing Mice
Kazuka KAMIYAMAHiraku ONISHIYoshiharu MACHIDA
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JOURNAL FREE ACCESS

1999 Volume 22 Issue 2 Pages 179-186

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Abstract

Two water-soluble chitosan derivatives, N-succinyl-chitosan (Suc-chi; average MW 3×105) and glycol-chitosan (Gly-chi; average MW 1.5×105), were examined concerning their biodisposition characteristics in order to evaluate their possible use as water-soluble drug carriers. Their body distribution and urinary excretion were investigated by i.v. administration of FITC-labeled Suc-chi (FTC-Suc-chi) and FITC-labeled Gly-chi (FTC-Gly-chi) to normal and Sarcoma 180 solid tumor-bearing mice. In normal mice, both polymers showed good retention in blood circulation; especially, FTC-Suc-chi exhibited a long half-life of 51 h, and its distribution to other tissues was very small. FTC-Gly-chi was distributed into the kidney to a relatively high extent. In tumor-bearing mice, FTC-Suc-shi and FTC-Gly-chi were eliminated faster from the blood circulaiton than in normal mice, that is, with half-lives of 11 and 7h, respectively. FTC-Suc-chi was less partitioned to the tumor tissue but accumulated more easily into it compared with FTC-Gly-chi. This suggested the enhanced permeability and retention (EPR) effect of Suc-chi and explained the previous result that a water-soluble Suc-chi-mitomycin C conjugate injected intravenously exhibited a good effect against Sarcoma 180 solid tumor. FTC-Gly-chi showed greater distribution to the kidney than in normal mice. Urinary excretion studies indicated the faster excretion of both polymers in tumor-bearing mice. The molecular weight of the products excreted into urine indicated that both polymers should be pretty resistant to the hydrolytic enzyme, lysozyme. Taking toxicities into account, Suc-chi is consiered to be available as a drug carrier showing long systemic retention and tumor accumulation.

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© The Pharmaceutical Society of Japan
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