Impedance of novel therapeutic technologies: the case of stem cells.

Clinical and Translational Science Pub Date : 2012-10-01 Epub Date: 2012-06-28 DOI:10.1111/j.1752-8062.2012.00434.x
David G Zacharias, Timothy J Nelson, Paul S Mueller, C Christopher Hook
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引用次数: 1

Abstract

Embryonic stem cell (ES) technology has advanced considerably within the past three decades and has gained prominent distinction within the emerging field of regenerative medicine. As it now enters the nascent stages of clinical application, many hopes and expectations arise along with questions as to where the technology will go. This paper evaluates the technical and practical obstacles that must be overcome before it can fully translate into the clinical context, the existence of strong opposition to the technology, political and legal barriers that have impeded its progression, and the role of healthcare reform in creating new social and economic priorities. In contrast to the technological imperative, a driving force seeking to implement the most recent scientific advances into medical practice, we refer to such translational obstacles as "technological impedance." Rather than expending inordinate effort to preserve existing systems that continue to possess major hurdles, we advocate fostering interdisciplinary approaches in the development of new generation platforms and embracing disruptive innovations that create solutions to technological impedance and move us forward in healthcare delivery. Clin Trans Sci 2012; Volume 5: 422-427.

新治疗技术的阻抗:以干细胞为例。
胚胎干细胞(ES)技术在过去的三十年中取得了长足的进步,并在再生医学的新兴领域中取得了显著的成就。随着它现在进入临床应用的初级阶段,许多希望和期望伴随着技术将走向何方的问题而产生。本文评估了在完全转化为临床环境之前必须克服的技术和实践障碍,对技术的强烈反对,阻碍其进展的政治和法律障碍,以及医疗改革在创造新的社会和经济优先事项方面的作用。技术势在必行是一种寻求将最新科学进展应用于医疗实践的驱动力,与此相反,我们将这种转化障碍称为“技术阻抗”。我们主张在新一代平台的开发中培养跨学科的方法,并拥抱颠覆性的创新,以创造技术障碍的解决方案,推动我们在医疗保健服务方面取得进步,而不是花费过多的精力来保留现有的系统。中华临床医学杂志2012;卷5:422-427。
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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