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链脲佐菌素诱导糖尿病的挑战与问题——一种用于理解糖尿病发病机制和评估治疗方法的临床相关动物模型。

Challenges and issues with streptozotocin-induced diabetes - A clinically relevant animal model to understand the diabetes pathogenesis and evaluate therapeutics.

作者信息

Goyal Sameer N, Reddy Navya M, Patil Kalpesh R, Nakhate Kartik T, Ojha Shreesh, Patil Chandragouda R, Agrawal Yogeeta O

机构信息

Cardiovascular & Diabetes Division, Department of Pharmacology, R. C. Patel Institute of Pharmaceutical Education and Research, Karvand Naka, Shirpur, 425405, Dist-Dhule, Maharashtra, India.

Department of Pharmacology, H. R. Patel Institute of Pharmaceutical Education and Research, Karvand Naka, Shirpur, 425405, Dist-Dhule, Maharashtra, India.

出版信息

Chem Biol Interact. 2016 Jan 25;244:49-63. doi: 10.1016/j.cbi.2015.11.032. Epub 2015 Dec 2.

Abstract

Streptozotocin (STZ) has been extensively used over the last three decades to induce diabetes in various animal species and to help screen for hypoglycemic drugs. STZ induces clinical features in animals that resemble those associated with diabetes in humans. For this reason STZ treated animals have been used to study diabetogenic mechanisms and for preclinical evaluation of novel antidiabetic therapies. However, the physiochemical characteristics and associated toxicities of STZ are still major obstacles for researchers using STZ treated animals to investigate diabetes. Another major challenges in STZ-induced diabetes are sustaining uniformity, suitability, reproducibility and induction of diabetes with minimal animal lethality. Lack of appropriate use of STZ was found to be associated with increased mortality and animal suffering. During STZ use in animals, attention should be paid to several factors such as method of preparation of STZ, stability, suitable dose, route of administration, diet regimen, animal species with respect to age, body weight, gender and the target blood glucose level used to represent hyperglycemia. Therefore, protocol for STZ-induced diabetes in experimental animals must be meticulously planned. This review highlights specific skills and strategies involved in the execution of STZ-induced diabetes model. The present review aims to provide insight into diabetogenic mechanisms of STZ, specific toxicity of STZ with its significance and factors responsible for variations in diabetogenic effects of STZ. Further this review also addresses ways to minimize STZ-induced mortality, suggests methods to improve STZ-based experimental models and best utilize them for experimental studies purported to understand diabetes pathogenesis and preclinical evaluation of drugs.

摘要

在过去三十年中,链脲佐菌素(STZ)已被广泛用于在各种动物物种中诱导糖尿病,并帮助筛选降血糖药物。STZ在动物中诱导出的临床特征与人类糖尿病相关特征相似。因此,用STZ处理的动物已被用于研究糖尿病发病机制和新型抗糖尿病疗法的临床前评估。然而,STZ的物理化学特性和相关毒性仍然是研究人员使用经STZ处理的动物来研究糖尿病的主要障碍。STZ诱导糖尿病的另一个主要挑战是保持一致性、适用性、可重复性,并以最小的动物死亡率诱导糖尿病。人们发现,STZ使用不当与死亡率增加和动物痛苦有关。在动物使用STZ的过程中,应注意几个因素,如STZ的制备方法、稳定性、合适剂量、给药途径、饮食方案、动物的年龄、体重、性别以及用于代表高血糖的目标血糖水平等动物物种因素。因此,必须精心规划实验动物中STZ诱导糖尿病的方案。本综述强调了实施STZ诱导糖尿病模型所涉及的特定技能和策略。本综述旨在深入了解STZ的糖尿病发病机制、STZ的特定毒性及其意义以及导致STZ糖尿病作用差异的因素。此外,本综述还探讨了将STZ诱导的死亡率降至最低的方法,提出了改进基于STZ的实验模型并将其最佳用于旨在了解糖尿病发病机制和药物临床前评估的实验研究的方法。

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