K5 血浆蛋白酶片段的生物医学应用

L. G. Kapustianenko
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摘要

目的Plasminogen kringle 5 是一种内源性血管生成抑制剂。本综述旨在强调 Kringle 5 在调节血管生成和肿瘤生长方面的潜在生物医学应用。方法。血管生成是一个复杂的过程,涉及内皮细胞增殖、迁移、基底膜降解和新生血管组织。由于新血管不受控制的生长会导致许多常见疾病的恶化,首先是肿瘤疾病、自身免疫性疾病、眼部新生血管损伤等,因此使用血管紧张素可以成为预防和辅助治疗这些病症的一种很有前景的药物治疗方法。应用血管紧张素的优势在于,即使使用高剂量也无毒性、无免疫原性、靶细胞对其作用缺乏耐受性。血管紧张素包括一组含环的蛋白水解衍生纤溶酶原/纤溶酶原片段,可作为内皮增殖和迁移的强效抑制介质。在所有已知的血管生长抑素种类中,分离出的 K5 血浆纤溶酶原片段通过触发多种信号通路,导致细胞死亡,从而抑制血管生成,对内皮细胞的增殖具有最强的抑制活性。结果。目前的文献数据表明,人纤溶酶原的 Kringle 结构域 5 除了对内皮细胞和某些类型的肿瘤细胞具有表达性和高度特异性的细胞毒性外,还具有作为抗血管生成和抗肿瘤调节剂的其他优势,包括其特异性抑制活性,这种活性只影响活化、增殖的内皮细胞,因此对其他类型的正常细胞无毒性。作为一种在人体机体内形成的内源性蛋白质,K5 不会引起免疫反应。K5 作为一种结构稳定的小多肽分子,可在大肠杆菌细胞中获得重组蛋白,也可用于定向给药和缓释的药代动力学系统。结论K5有望成功用作治疗剂,以控制与血管生成失调相关的病理过程,因此有必要开发和改进其生产方法,并进一步测试其合理的多生物活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
BIOMEDICAL APPLICATION OF K5 PLASMINOGEN FRAGMENT
Aim. Plasminogen kringle 5 is an endogenous angiogenic inhibitor. The purpose of the present review was to highlight the potential biomedical application of kringle 5 in the regulation of angiogenesis and tumor growth. Methods. Angiogenesis is a complex process that involves endothelial cell proliferation, migration, basement membrane degradation, and neovessel organization. Since the uncontrolled growth of new blood vessels causes the progression of many common diseases, first of all, oncological diseases, autoimmune disorders, neovascular damage of the eye, the use of angiostatins can be a promising pharmacotherapeutic approach to the prevention and adjuvant therapy of these pathological conditions. The advantages of angiostatins application are their non-toxicity even at high doses, non-immunogenicity, lack of tolerance of target cells to their action. Angiostatins comprise a group of kringle-containing proteolytically-derived fragments of plasminogen/plasmin, which act as potent inhibitory mediators of endothelial proliferation and migration. Among all known angiostatin species, isolated K5 plasminogen fragment was shown to display the most potent inhibitory activity against proliferation of endothelial cells via triggering multiple signaling pathways, which lead to cell death and resulting angiogenesis suppression. Results. Current literature data suggest that in addition to expressed and highly specific cytotoxicity in relation to endotheliocytes and some types of tumor cells, the kringle domain 5 of human plasminogen has other advantages as an antiangiogenic and antitumor regulator, including its specific inhibitory activity, which affects only activated, proliferating endothelial cells, and therefore is non-toxic to other types of normal cells. As an endogenous protein, which is formed in the human organism, K5 does not provoke an immune response. K5 as a small polypeptide molecule with a stable structure can be obtained as a recombinant protein in E. coli cells, and can also be used in pharmacokinetic systems of targeted delivery and sustained release. Conclusions. The prospect of successful use of K5 as a therapeutic agent to manage pathological processes associated with dysregulation of angiogenesis makes it necessary to develop and improve methods of its production and to further test its plausible pleiotropic biological activities.
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