Hyaluronic acid--a versatile biopolymer.

Australian journal of biotechnology Pub Date : 1990-01-01
S W Tan, M R Johns, P F Greenfield
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Abstract

Since its discovery from bovine synovial fluid, hyaluronic acid has found application in several diverse areas. It is now extensively used in ophthalmic surgery, in the treatment of lameness in racehorses and as an ingredient in cosmetics. It can also be used in drug delivery, orthopedics, cardiovascular aids and in wound healing. Even so, its potential as a therapeutic agent is yet to be fulfilled. New improved products, formed by crosslinking hyaluronic acid with itself or other chemicals, are being produced. Hyaluronic acid is clearly a most valuable therapeutic biopolymer. This article reviews the properties of hyaluronic acid, its biosynthetic pathway and its methods of commercial production, and provides an estimation of its current and future world demand. Experiments designed to improve production economics have been performed in our laboratory. These involved control of glucose and yeast extract concentrations and fermentation pH. Hyaluronic acid production by Streptococcus zooepidemicus was found to be lower at pH 6.5 than at pH 7.1. A new method of extending the production of hyaluronic acid by S. zooepidemicus into the stationary phase has also been achieved.

透明质酸——一种多功能生物聚合物。
自从从牛滑液中发现透明质酸以来,它已经在几个不同的领域得到了应用。它现在广泛用于眼科手术,治疗赛马的跛行,并作为化妆品的一种成分。它还可用于药物输送、骨科、心血管辅助和伤口愈合。即便如此,它作为一种治疗剂的潜力仍有待实现。新的改进产品,由透明质酸与自身或其他化学品交联形成,正在生产。透明质酸显然是一种最有价值的治疗性生物聚合物。本文综述了透明质酸的性质、生物合成途径和商业化生产方法,并对其目前和未来的世界需求进行了展望。为了提高生产经济性,我们在实验室进行了一些实验。这些包括葡萄糖和酵母提取物浓度的控制以及发酵pH。动物流行病链球菌在pH 6.5时的透明质酸产量低于pH 7.1。研究还发现了一种将动物疫霉生产透明质酸延长到固定期的新方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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