生物医学中的 3D 打印:通过增材制造推进个性化护理

Q4 Biochemistry, Genetics and Molecular Biology
K. Pathak, Riya Saikia, Aparoop Das, Dibyajyoti Das, Md Ariful Islam, Pallab Pramanik, Abhishek Parasar, PARTHA PROTIM BORTHAKUR, Pranjal Sarmah, Madhurjya Saikia, Barbie Borthakur
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引用次数: 0

摘要

将三维(3D)打印技术融入生物医学研究和个性化医疗领域,凸显了当代医疗保健领域不断发展的范式转变。这一技术进步标志着在针对患者的治疗干预和创新方面可能取得突破。这篇系统性综述对现有文献进行了批判性评估,阐明了 3D 打印在增强生物医学应用和制定定制医疗策略方面的现状、固有挑战和前景。基于详尽的文献分析,包括过去十年的实证研究、案例研究和大量综述,对组织工程、假肢开发、给药系统和定制医疗器械等关键领域进行了划分。三维打印技术的出现为制造以患者为中心的植入物、生物结构和设备提供了精确度,从而降低了相关风险。同时,3D 打印技术还促进了个性化给药模式的构思,以优化治疗效果。尽管取得了这些进步,但有关材料生物兼容性、监管合规性以及前卫打印技术的经济影响等问题依然存在。要充分利用 3D 打印技术在医疗保健领域的变革潜力,学术界、临床医生、工业实体和监管机构之间的合作至关重要。随着研究和创新的不断深入,3D 打印技术有望重新定义生物医学科学和以患者为中心的医疗服务的发展轨迹。本文旨在论证以下研究目标:3D 打印技术与生物医学的结合是否能在多大程度上增强针对患者的治疗,并有助于改善医疗效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
3D printing in biomedicine: advancing personalized care through additive manufacturing
The integration of three-dimensional (3D) printing techniques into the domains of biomedical research and personalized medicine highlights the evolving paradigm shifts within contemporary healthcare. This technological advancement signifies potential breakthroughs in patient-specific therapeutic interventions and innovations. This systematic review offers a critical assessment of the existing literature, elucidating the present status, inherent challenges, and prospective avenues of 3D printing in augmenting biomedical applications and formulating tailored medical strategies. Based on an exhaustive literature analysis comprising empirical studies, case studies, and extensive reviews from the past decade, pivotal sectors including tissue engineering, prosthetic development, drug delivery systems, and customized medical apparatuses are delineated. The advent of 3D printing provides precision in the fabrication of patient-centric implants, bio-structures, and devices, thereby mitigating associated risks. Concurrently, it facilitates the ideation of individualized drug delivery paradigms to optimize therapeutic outcomes. Notwithstanding these advancements, issues concerning material biocompatibility, regulatory compliance, and the economic implications of avant-garde printing techniques persist. To fully harness the transformative potential of 3D printing in healthcare, collaborative endeavors amongst academicians, clinicians, industrial entities, and regulatory bodies are paramount. With continued research and innovation, 3D printing is poised to redefine the trajectories of biomedical science and patient-centric care. The paper aims to justify the research objective of whether to what extent the integration of 3D printing technology in biomedicine enhances patient-specific treatment and contributes to improved healthcare outcomes.
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CiteScore
2.10
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