3D bioprinting for drug development and screening: Recent trends towards personalized medicine

Arpana Parihar , Dipesh Singh Parihar , Kritika Gaur , Neha Arya , Vikas Kumar Choubey , Raju Khan
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Abstract

Personalized medicine, leveraging patient-specific genomic data, is revolutionizing treatment paradigms by enabling tailored therapies to individual needs, thus mitigating adverse effects and enhancing clinical outcomes. One innovative application in this field is the use of 3D bioprinting technology to design, develop and screen patient-customized medicines. This technology meticulously designs and develops therapeutic drugs by depositing active pharmaceutical ingredients layer by layer, culminating in a drug delivery structure optimized for the patient's unique dosage requirements. 3D bioprinting represents an emerging confluence of biological sciences and additive manufacturing, meeting the clinical demand for functional biological tissues through the integration of printing technologies, regenerative medicine principles, and advanced material science. This review provides an overview of the current state of 3D bioprinting applications and explores the transformative potential of 3D bioprinting in personalizing medicine. Moreover, the review elucidates the capabilities of 3D bioprinting in drug design, facilitating the production of complex therapeutic regimens in specific dosage forms, such as drugs with tailored dose concentrations, controlled release kinetics, and the capacity to combine multiple therapeutic regimens into a single, easy-to-administer format. This paper also addresses the challenges and obstacles faced in integrating 3D bioprinting techniques into pharmaceutical practice, ranging from technical and regulatory hurdles to scalability. Further, the efficacy of 3D bioprinting as a tool for advancing personalized medicine helps to utilize the full potential of this technology to enhance patient healthcare regimes.
用于药物开发和筛选的 3D 生物打印:个性化医疗的最新趋势
个性化医疗利用患者特定的基因组数据,根据个人需求量身定制治疗方案,从而减轻不良反应,提高临床疗效,正在彻底改变治疗模式。该领域的一项创新应用是利用三维生物打印技术设计、开发和筛选为患者量身定制的药物。这项技术通过逐层沉积活性药物成分,精心设计和开发治疗药物,最终形成针对患者独特剂量要求进行优化的给药结构。三维生物打印是生物科学和快速成型制造的新兴结合体,通过整合打印技术、再生医学原理和先进的材料科学,满足临床对功能性生物组织的需求。本综述概述了三维生物打印的应用现状,并探讨了三维生物打印在个性化医疗方面的变革潜力。此外,该综述还阐明了三维生物打印在药物设计方面的能力,有助于以特定剂型生产复杂的治疗方案,例如具有定制剂量浓度、可控释放动力学的药物,以及将多种治疗方案组合成单一、易于服用的形式的能力。本文还探讨了将三维生物打印技术融入制药实践所面临的挑战和障碍,包括技术和监管障碍以及可扩展性。此外,三维生物打印作为推进个性化医疗的一种工具,其功效有助于充分发挥该技术的潜力,改善患者的医疗保健方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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