期刊论文详细信息
The Japanese Journal of Pharmacology
Suppressive Effects of Tranilast on Pulmonary Fibrosis and Activation of Alveolar Macrophages in Mice Treated with Bleomycin: Role of Alveolar Macrophages in the Fibrosis
Hiroichi Nagai1  Akihide Koda1  Hiroshi Mori1  Hiroyuki Tanaka1  Kenji Kawada2 
[1] Department of Pharmacology, Gifu Pharmaceutical University;Gifu College of Medical Technology
关键词: Pulmonary fibrosis;    Bleomycin;    Tranilast;    Alveolar macrophage;    Reactive oxygen species;   
DOI  :  10.1254/jjp.67.279
学科分类:药理学
来源: Nihon Yakuri Gakkai Henshuubu / Japanese Pharmacological Society
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【 摘 要 】

References(38)Cited-By(22)Polaprezinc, an insoluble zinc complex of L-carnosine, exhibits anti-ulcer effects by acting directly on mucosal lesions. The disposition of polaprezinc in the stomach was studied to clarify the usefulness of its structure as an insoluble complex. The time courses of 14C-radioactivity in the gastric contents and gastric tissues were parallel to those of 65Zn after oral administration of a mixture of 14-Cpolaprezinc and 65Zn-polaprezinc (14C-, 65Zn-polaprezinc) to rats. The gastric contents of 14C-polaprezinc and 65Zn-polaprezinc were greater than those of 14C-L-carnosine and 65ZnSO4. Mean residence times (MRT) of 14C-polaprezinc and 65Zn-polaprezinc in the stomach were almost the same (ca. 2 hr), and they were double those of 14C-L-carnosine and 65ZnSO4. In gastric tissues, the area under the concentration curves (AUC0-8 hr) of 14C-polaprezinc and 65Zn-polaprezinc were 1.7 times greater than those of 14C-L-carnosine and 65ZnSO4, respectively. After administration of 14C-, 65Zn-polaprezinc to rats with acetic acid-induced ulcers, 14C and 65Zn-radioactivities in the ulcerous sites were very similar and greater than those of 14C-, 65Zn-polaprezinc dissolved in acid. In conclusion, polaprezinc is retained in the stomach longer and adheres to the ulcerous sites more than zinc or L-carnosine. The characteristics of this compound may arise from its insolubility and contribute to its strong pharmacological action.

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