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在细胞色素P450诱导试验中使用人肝细胞的机遇与挑战。

Opportunities and challenges in using human hepatocytes in cytochromes P450 induction assays.

作者信息

Dvorak Zdenek

机构信息

a Department of Cell Biology and Genetics, Faculty of Science , Palacky University Olomouc , Olomouc , Czech Republic.

出版信息

Expert Opin Drug Metab Toxicol. 2016;12(2):169-74. doi: 10.1517/17425255.2016.1125881. Epub 2016 Jan 8.

Abstract

INTRODUCTION

Identification of inducers of xenobiotic-metabolizing cytochromes P450 (CYP) is of topical interest. The issue mainly concerns three sectors: (i) preclinical testing of drug candidates and testing existing drugs and their combinations; (ii) food safety applications with regard to additives, contaminants, and adulterants; (iii) environmental applications, comprising detection and identification of endocrine disruptors.

AREAS COVERED

A literature search was performed using the PubMed database, covering state-of-the-art of human hepatocyte (HH) culture use, and their exploitation for the identification of P450 inducers. A list of CYP inducers identified by HHs is provided.

EXPERT OPINION

Primary cultures of HHs had long been considered as a gold standard for induction assays of xenobiotic-metabolizing enzymes. Owing to several shortcomings of HHs, alternative approaches such as immortalization of HHs, use of cell lines, generation of clonal cell lines from HHs, use of induced pluripotent stem (iPS) cells, cells from humanized animals, etc., were employed. While yielding particular advantage, overall, alternatives to HHs still remain an avenue for discrete applications or technical situations. Thus, HHs remain the most suitable model for complex CYP induction studies. The summary may be effectively expressed by strength/weakness/opportunity/threats analysis.

摘要

引言

鉴定外源性代谢细胞色素P450(CYP)的诱导剂是当前的研究热点。该问题主要涉及三个领域:(i)候选药物的临床前测试以及现有药物及其组合的测试;(ii)关于添加剂、污染物和掺假物的食品安全应用;(iii)环境应用,包括内分泌干扰物的检测和鉴定。

涵盖领域

使用PubMed数据库进行了文献检索,涵盖了人肝细胞(HH)培养的最新应用情况,以及利用其鉴定P450诱导剂的情况。提供了由HH鉴定出的CYP诱导剂列表。

专家观点

长期以来,HH原代培养一直被视为外源性代谢酶诱导试验的金标准。由于HH存在若干缺点,因此采用了其他方法,如HH的永生化、细胞系的使用、从HH生成克隆细胞系、诱导多能干细胞(iPS)的使用、人源化动物的细胞等。虽然这些方法具有特定优势,但总体而言,HH的替代方法仍然是适用于特定应用或技术情况的途径。因此,HH仍然是复杂CYP诱导研究最合适的模型。可以通过优势/劣势/机会/威胁分析有效地表达总结内容。

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