摘要
恰加斯病,也称为美洲锥虫病,是一种被忽视的热带疾病,影响约 700 万人,尤其是在拉丁美洲。值得注意的是,北美、欧洲、日本和澳大利亚等非流行地区的病例报告数量有所增加。该疾病是一种媒介传播疾病,由病原体克氏锥虫通过受感染的虫子传播引起。众所周知,大约 40% 的感染患者会出现心脏、消化系统或神经系统的改变。目前用于治疗的药物只有两种,苯硝唑和硝呋莫司。然而,这两种治疗方案都存在一些局限性,例如慢性阶段的毒性、致突变性和低效率。一些文献报道指出了寄生虫抗药性的发生。为了克服这些限制,新分子的生物勘探作为替代品是提高这种慢性疾病治疗成功率的主要目标之一。来自自然资源的生物勘探活性代谢物可能会给疾病控制和寄生虫消除带来新的希望。在这里,我们总结了使用实验模型、体外测试和计算机方法来识别和测试具有杀锥虫活性的藻类、细菌和真菌衍生的生物活性化合物的最新进展。
关键词: 恰加斯病、克氏锥虫、毒力因子、疗法、藻类蛋白、真菌蛋白。
Current Medicinal Chemistry
Title:Novel Therapeutic Options for Chagas Disease Based on Bioactive Compounds from Algae, Bacteria and Fungi Species
Volume: 28 Issue: 36
关键词: 恰加斯病、克氏锥虫、毒力因子、疗法、藻类蛋白、真菌蛋白。
摘要: Chagas Disease, also known as American trypanosomiasis, is a Neglected Tropical Disease that affects around seven million people, especially in Latin America. Noteworthy, there has been an increase in the numbers of case reports in non-endemic areas, such as North America, Europe, Japan, and Australia. The disease is a vector-borne disease caused by the pathogen Trypanosoma cruzi being transmitted by infected bugs. It is known that about forty percent of infected patients develop cardiac, digestive, or neurological alterations. There are only two drugs currently used for treatment, benznidazole and nifurtimox. However, both therapeutic regimens present several limitations, such as toxicity, mutagenicity and low efficiency during the chronic phase. Some reports in the literature point to the occurrence of parasite resistance. To overcome these limitations, the bioprospection of novel molecules as alternatives is one of the major goals to improve therapeutic success in this chronic disease. Bioprospecting active metabolites from natural resources might bring new hopes for disease control and parasite elimination. Here we summarize the most recent advances to identify and test Algae, Bacteria and Fungi-derived bioactive compounds with trypanocidal activity using experimental models, in vitro testing and in silico approaches.
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Cite this article as:
Novel Therapeutic Options for Chagas Disease Based on Bioactive Compounds from Algae, Bacteria and Fungi Species, Current Medicinal Chemistry 2021; 28 (36) . https://dx.doi.org/10.2174/0929867328666210806101559
DOI https://dx.doi.org/10.2174/0929867328666210806101559 |
Print ISSN 0929-8673 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-533X |
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