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Camelid Single-Domain Antibodies As an Alternative to Overcome Challenges Related to the Prevention Detection and Control of Neglected Tropical Diseases

机译:骆驼单域抗体作为克服与预防检测和控制被忽视的热带病有关的挑战的替代方法

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摘要

Due mainly to properties such as high affinity and antigen specificity, antibodies have become important tools for biomedical research, diagnosis, and treatment of several human diseases. When the objective is to administer them for therapy, strategies are used to reduce the heterologous protein immunogenicity and to improve pharmacokinetic and pharmacodynamic characteristics. Size minimization contributes to ameliorate these characteristics, while preserving the antigen–antibody interaction site. Since the discovery that camelids produce functional antibodies devoid of light chains, studies have proposed the use of single domains for biosensors, monitoring and treatment of tumors, therapies for inflammatory and neurodegenerative diseases, drug delivery, or passive immunotherapy. Despite an expected increase in antibody and related products in the pharmaceutical market over the next years, few research initiatives are related to the development of alternatives for helping to manage neglected tropical diseases (NTDs). In this review, we summarize developments of camelid single-domain antibodies (VHH) in the field of NTDs. Particular attention is given to VHH-derived products, i.e., VHHs fused to nanoparticles, constructed for the development of rapid diagnostic kits; fused to oligomeric matrix proteins for viral neutralization; and conjugated with proteins for the treatment of human parasites. Moreover, paratransgenesis technology using VHHs is an interesting approach to control parasite development in vectors. With enormous biotechnological versatility, facility and low cost for heterologous production, and greater ability to recognize different epitopes, VHHs have appeared as an opportunity to overcome challenges related to the prevention, detection, and control of human diseases, especially NTDs.
机译:主要由于诸如高亲和力和抗原特异性的特性,抗体已成为用于生物医学研究,诊断和治疗几种人类疾病的重要工具。当目标是对其进行治疗时,可以使用一些策略来降低异源蛋白的免疫原性并改善药代动力学和药效学特性。尺寸最小化有助于改善这些特征,同时保留抗原-抗体相互作用位点。自发现骆驼科动物产生不含轻链的功能抗体以来,研究已提出将单个域用于生物传感器,监测和治疗肿瘤,炎性和神经退行性疾病的治疗,药物递送或被动免疫疗法。尽管预计未来几年医药市场中抗体和相关产品的增长,但很少有研究计划与开发有助于管理被忽视的热带病(NTD)的替代品有关。在这篇综述中,我们总结了NTDs领域骆驼科单域抗体(VHH)的发展。特别注意VHH衍生产品,即与纳米颗粒融合的VHH,用于开发快速诊断试剂盒;融合至寡聚基质蛋白以进行病毒中和;并与蛋白质结合以治疗人类寄生虫。此外,使用VHHs的准转基因技术是控制载体中寄生虫发展的有趣方法。 VHH具有巨大的生物技术多功能性,异源生产的便利性和低成本,并且具有识别不同表位的更大能力,因此已成为克服与人类疾病(尤其是NTD)的预防,检测和控制有关的挑战的机会。

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