微观生理学系统作为可靠的药物发现和评估工具:从创新到成熟的演变

IF 2.6 4区 工程技术 Q2 BIOCHEMICAL RESEARCH METHODS
Biomicrofluidics Pub Date : 2023-12-28 DOI:10.1063/5.0179444
Hye-Ran Moon, Nishanth Surianarayanan, Tarun Singh, Bumsoo Han
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引用次数: 0

摘要

微生理学系统(MPSs),又称器官芯片或疾病芯片,是最近出现的在体外平台上重建各种器官和疾病的体内细胞微环境的技术。开发这些基于微流控技术的平台是为了提供可靠的药物发现和监管评估试验平台。尽管最近出现了各种 MPS 平台并取得了进展,但它们在药物发现和评估过程中的应用仍然滞后。造成这种延误的主要原因是缺乏具有可重复性和可靠性的严格标准,以及在制药研究和工业环境中采用的实际困难。本综述讨论了 MPS 平台在药物发现过程中的当前和潜在应用,同时考虑了药物发现过程中的几个关键步骤,包括靶点识别和验证、临床前评估和临床试验。此外,还讨论了在各种药物发现和监管评估步骤中更广泛地推广和采用 MPS 所面临的机遇和挑战。应对这些挑战将把漫长而昂贵的药物发现和评估过程转变为更高效的创新药物发现、筛选和审批过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microphysiological systems as reliable drug discovery and evaluation tools: Evolution from innovation to maturity
Microphysiological systems (MPSs), also known as organ-on-chip or disease-on-chip, have recently emerged to reconstitute the in vivo cellular microenvironment of various organs and diseases on in vitro platforms. These microfluidics-based platforms are developed to provide reliable drug discovery and regulatory evaluation testbeds. Despite recent emergences and advances of various MPS platforms, their adoption of drug discovery and evaluation processes still lags. This delay is mainly due to a lack of rigorous standards with reproducibility and reliability, and practical difficulties to be adopted in pharmaceutical research and industry settings. This review discusses the current and potential use of MPS platforms in drug discovery processes while considering the context of several key steps during drug discovery processes, including target identification and validation, preclinical evaluation, and clinical trials. Opportunities and challenges are also discussed for the broader dissemination and adoption of MPSs in various drug discovery and regulatory evaluation steps. Addressing these challenges will transform long and expensive drug discovery and evaluation processes into more efficient discovery, screening, and approval of innovative drugs.
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来源期刊
Biomicrofluidics
Biomicrofluidics 生物-纳米科技
CiteScore
5.80
自引率
3.10%
发文量
68
审稿时长
1.3 months
期刊介绍: Biomicrofluidics (BMF) is an online-only journal published by AIP Publishing to rapidly disseminate research in fundamental physicochemical mechanisms associated with microfluidic and nanofluidic phenomena. BMF also publishes research in unique microfluidic and nanofluidic techniques for diagnostic, medical, biological, pharmaceutical, environmental, and chemical applications. BMF offers quick publication, multimedia capability, and worldwide circulation among academic, national, and industrial laboratories. With a primary focus on high-quality original research articles, BMF also organizes special sections that help explain and define specific challenges unique to the interdisciplinary field of biomicrofluidics. Microfluidic and nanofluidic actuation (electrokinetics, acoustofluidics, optofluidics, capillary) Liquid Biopsy (microRNA profiling, circulating tumor cell isolation, exosome isolation, circulating tumor DNA quantification) Cell sorting, manipulation, and transfection (di/electrophoresis, magnetic beads, optical traps, electroporation) Molecular Separation and Concentration (isotachophoresis, concentration polarization, di/electrophoresis, magnetic beads, nanoparticles) Cell culture and analysis(single cell assays, stimuli response, stem cell transfection) Genomic and proteomic analysis (rapid gene sequencing, DNA/protein/carbohydrate arrays) Biosensors (immuno-assay, nucleic acid fluorescent assay, colorimetric assay, enzyme amplification, plasmonic and Raman nano-reporter, molecular beacon, FRET, aptamer, nanopore, optical fibers) Biophysical transport and characterization (DNA, single protein, ion channel and membrane dynamics, cell motility and communication mechanisms, electrophysiology, patch clamping). Etc...
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