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Anti-Gal: An abundant human natural antibody of multiple pathogeneses and clinical benefits

机译:抗Gal:丰富的人类天然抗体,具有多种发病机制和临床益处

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摘要

Anti-Gal is the most abundant natural antibody in humans constituting ~1% of immunoglobulins. Anti-Gal is naturally produced also in apes and Old World monkeys. The ligand of anti-Gal is a carbohydrate antigen called the \u22alpha-gal epitope\u22 with the structure Galalpha1-3Galbeta1-4GlcNAc-R. The alpha-gal epitope is present as a major carbohydrate antigen in nonprimate mammals, prosimians and New World monkeys. Anti-Gal can contribute to several immunological pathogeneses. Anti-Gal IgE produced in some individuals causes allergies to meat and to the therapeutic monoclonal antibody cetuximab, all presenting alpha-gal epitopes. Aberrant expression of the alpha-gal epitope or of antigens mimicking it in humans may result in autoimmune processes, as in Graves\u27 Disease. alpha-Gal epitopes produced by Trypanosoma cruzi interact with anti-Gal and induce \u22autoimmune like\u22 inflammatory reactions in Chagas Disease. Anti-Gal IgM and IgG further mediate rejection of xenografts expressing alpha-gal epitopes. Because of its abundance, anti-Gal may be exploited for various clinical uses. It increases immunogenicity of microbial vaccines (e.g., flu vaccine) presenting alpha-gal epitopes by targeting them for effective uptake by APC. Tumor lesions are converted into vaccines against autologous tumor associated antigens by intratumoral injection of alpha-gal glycolipids which insert into tumor cell membranes. Anti-Gal binding to alpha-gal epitopes on tumor cells targets them for uptake by APC. Accelerated wound healing is achieved by application of alpha-gal nanoparticles which bind anti-Gal, activate complement, recruit and activate macrophages that induce tissue regeneration. This therapy may be of further significance in regeneration of internally injured tissues such as ischemic myocardium and injured nerves. This article is protected by copyright. All rights reserved.
机译:抗Gal抗体是人类中含量最高的天然抗体,占免疫球蛋白的〜1%。猿猴和旧大陆猴也自然产生抗Gal。抗Gal的配体是一种碳水化合物抗原,称为\ u22alpha-gal表位\ u22,具有结构Galalpha1-3Galbeta1-4GlcNAc-R。在非灵长类哺乳动物,prosimians和New World猴子中,α-gal表位是主要的碳水化合物抗原。抗Gal可能会导致多种免疫病原性。在一些个体中产生的抗Gal IgE对肉和治疗性单克隆抗体西妥昔单抗引起过敏,所有这些都具有α-gal表位。如在Graves病中那样,人类中α-gal表位或模仿其的抗原的异常表达可能导致自身免疫过程。克鲁格锥虫产生的α-Gal表位与抗Gal相互作用,并在恰加斯病中诱导自身免疫性炎症反应。抗Gal IgM和IgG进一步介导表达α-gal表位的异种移植物的排斥。由于其丰富性,抗-Gal可以用于各种临床用途。通过靶向具有APC有效吸收能力的α-gal表位的微生物疫苗(例如流感疫苗),可以提高其免疫原性。通过肿瘤内注射插入肿瘤细胞膜中的α-半乳糖脂,将肿瘤损伤转化为针对自体肿瘤相关抗原的疫苗。与肿瘤细胞上的alpha-gal表位结合的抗Gal靶向其被APC吸收。通过应用结合抗Gal的α-gal纳米颗粒,激活补体,募集和激活诱导组织再生的巨噬细胞,可以加速伤口愈合。该疗法在诸如缺血性心肌和神经损伤之类的内部损伤组织的再生中可能具有进一步的意义。本文受版权保护。版权所有。

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    Galili, Uri;

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