Suppr超能文献

一种可驱动的软性储液器可调节宿主异物反应。

An actuatable soft reservoir modulates host foreign body response.

作者信息

Dolan E B, Varela C E, Mendez K, Whyte W, Levey R E, Robinson S T, Maye E, O'Dwyer J, Beatty R, Rothman A, Fan Y, Hochstein J, Rothenbucher S E, Wylie R, Starr J R, Monaghan M, Dockery P, Duffy G P, Roche E T

机构信息

Institute for Medical Engineering and Science, Massachusetts Institute of Technology, Cambridge, MA, USA.

Biomedical Engineering, College of Engineering and Informatics, National University of Ireland Galway, Galway, Ireland.

出版信息

Sci Robot. 2019 Aug 28;4(33). doi: 10.1126/scirobotics.aax7043.

Abstract

The performance of indwelling medical devices that depend on an interface with soft tissue is plagued by complex, unpredictable foreign body responses. Such devices-including breast implants, biosensors, and drug delivery devices-are often subject to a collection of biological host responses, including fibrosis, which can impair device functionality. This work describes a milliscale dynamic soft reservoir (DSR) that actively modulates the biomechanics of the biotic-abiotic interface by altering strain, fluid flow, and cellular activity in the peri-implant tissue. We performed cyclical actuation of the DSR in a preclinical rodent model. Evaluation of the resulting host response showed a significant reduction in fibrous capsule thickness ( = 0.0005) in the actuated DSR compared with non-actuated controls, whereas the collagen density and orientation were not changed. We also show a significant reduction in myofibroblasts ( = 0.0036) in the actuated group and propose that actuation-mediated strain reduces differentiation and proliferation of myofibroblasts and therefore extracellular matrix production. Computational models quantified the effect of actuation on the reservoir and surrounding fluid. By adding a porous membrane and a therapy reservoir to the DSR, we demonstrate that, with actuation, we could (i) increase transport of a therapy analog and (ii) enhance pharmacokinetics and time to functional effect of an inotropic agent. The dynamic reservoirs presented here may act as a versatile tool to further understand, and ultimately to ameliorate, the host response to implantable biomaterials.

摘要

依赖与软组织界面的植入式医疗设备的性能受到复杂、不可预测的异物反应的困扰。此类设备——包括乳房植入物、生物传感器和药物输送设备——通常会引发一系列生物宿主反应,包括纤维化,这可能会损害设备功能。这项工作描述了一种毫米级动态软储库(DSR),它通过改变植入物周围组织中的应变、流体流动和细胞活性,积极调节生物-非生物界面的生物力学。我们在临床前啮齿动物模型中对DSR进行了周期性驱动。对由此产生的宿主反应的评估表明,与未驱动的对照组相比,驱动的DSR中纤维囊厚度显著降低(P = 0.0005),而胶原蛋白密度和取向没有变化。我们还表明,驱动组中的肌成纤维细胞显著减少(P = 0.0036),并提出驱动介导的应变减少了肌成纤维细胞的分化和增殖,从而减少了细胞外基质的产生。计算模型量化了驱动对储库和周围流体的影响。通过在DSR中添加多孔膜和治疗储库,我们证明,通过驱动,我们可以(i)增加治疗类似物的运输,以及(ii)增强正性肌力药物的药代动力学和达到功能效果的时间。这里介绍的动态储库可能是一种通用工具,有助于进一步了解并最终改善宿主对可植入生物材料的反应。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验