Menzel E J, Farr C
Institute of Immunology, University of Vienna and FAROMED, Austria.
Cancer Lett. 1998 Sep 11;131(1):3-11. doi: 10.1016/s0304-3835(98)00195-5.
This is an overview of the biochemistry, biological function and therapeutic uses of hyaluronidase and its substrate, hyaluronate. We focus on the role of hyaluronate and its receptor CD44 in cell-cell and cell-matrix adhesion and cell activation as well as on the putative role of hyaluronate and hyaluronidase in morphogenesis. Variants of CD44 and their putative role in tumor metastasis are also included. Other topics that are discussed are the chemical and enzymatic nature of hyaluronidase, i.e. the mode of substrate degradation, pharmacodynamical and pharmacokinetic aspects of this enzyme and its role as spreading factor. Purification methods, possible contaminations and techniques of activity determinations are mentioned as well as the physiological role of hyaluronidase and tumor-associated alterations in serum and tissue enzyme levels. As far as therapeutic applications are concerned, we discuss uses of hyaluronidase in ophthalmology and regional anesthesia as well as pain management in osteoarthritis using hyaluronate.
本文概述了透明质酸酶及其底物透明质酸盐的生物化学、生物学功能和治疗用途。我们重点关注透明质酸盐及其受体CD44在细胞间和细胞与基质黏附以及细胞活化中的作用,以及透明质酸盐和透明质酸酶在形态发生中的假定作用。还包括CD44的变体及其在肿瘤转移中的假定作用。讨论的其他主题包括透明质酸酶的化学和酶学性质,即底物降解模式、该酶的药效学和药代动力学方面及其作为扩散因子的作用。提到了纯化方法、可能的污染物和活性测定技术,以及透明质酸酶的生理作用和血清及组织酶水平的肿瘤相关改变。就治疗应用而言,我们讨论了透明质酸酶在眼科和区域麻醉中的用途,以及使用透明质酸盐治疗骨关节炎疼痛的情况。