利用脑源性细胞外囊泡支持基于rdoc的药物开发

I. Magaraggia , J. Krauskopf , J.G. Ramaekers , Y. You , L. de Nijs , J.J. Briedé , R. Schreiber
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引用次数: 0

摘要

研究领域标准(RDoC)框架提供了一个维度和跨诊断的方法来理解复杂的神经精神和神经疾病,促进新疗法的发展。然而,由于缺乏足够的生物标志物,将细胞和分子脑过程整合到RDoC框架中受到阻碍。这篇综述探讨了从生物体液中分离的脑源性细胞外囊泡(BDEVs)作为基于rdoc的药物发现的非侵入性机制生物标志物的潜力。我们概述了BDEVs,包括它们的分类、生物学功能以及目前的分离和表征方法。然后,我们讨论了BDEV货物作为中枢神经系统药物研究中的机械生物标志物的研究,重点关注靶标参与、治疗反应和毒性。此外,我们还讨论了神经科学研究中关于BDEVs表征和验证的重要考虑和开放性问题。特别强调了在BDEVs中使用miRNA货物作为分子读数,强调了它们的稳定性、调节作用和反映脑功能动态变化的潜力。最后,本文提出了进一步研究BDEV miRNA货物作为分子读数的策略,强调其能够提供药物作用的分子机制及其在RDoC框架内与中枢神经系统药物发现的相关性。尽管存在方法和概念上的挑战,但bdev代表了推进基于rdoc的药物发现的有前途的工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Harnessing brain-derived extracellular vesicles to support RDoC-based drug development
The Research Domain Criteria (RDoC) framework offers a dimensional and transdiagnostic approach to understanding complex neuropsychiatric and neurological disorders, facilitating the development of novel therapeutics. However, the integration of cellular and molecular brain processes into the RDoC framework is hindered by the lack of adequate biomarkers. This review explores the potential of brain-derived extracellular vesicles (BDEVs) isolated from biofluids as a source of non-invasive mechanistic biomarkers in RDoC-based drug discovery. We provide an overview of BDEVs, including their classification, biological functions, and current methodologies for isolation and characterization. We then discuss studies that have investigated BDEV cargo as mechanistic biomarkers in CNS drug studies, focusing on target engagement, treatment response, and toxicity. Additionally, we address important considerations and open questions regarding the characterization and validation of BDEVs in neuroscience research. Special emphasis is placed on the use of miRNA cargo within BDEVs as molecular readouts, highlighting their stability, regulatory roles, and potential to reflect dynamic changes in brain function. Finally, the review proposes strategies to further investigate the use of BDEV miRNA cargo as molecular readouts, underscoring its ability to provide insights into the molecular mechanisms underlying drug effects and their relevance to CNS drug discovery within the RDoC framework. Despite existing methodological and conceptual challenges, BDEVs represent a promising tool for advancing RDoC-based drug discovery.
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