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一种用于交互式腹水转移的柔软、仿生人工淋巴系统。

A soft, bioinspired artificial lymphatic system for interactive ascites transfer.

作者信息

Wang Peng, Fu Ji, Jin Peng, Zeng Jin, Miao Xiaohui, Wang Heling, Ma Yinji, Feng Xue

机构信息

AML, Department of Engineering Mechanics Tsinghua University Beijing China.

Laboratory of Flexible Electronics Technology Tsinghua University Beijing China.

出版信息

Bioeng Transl Med. 2023 Aug 3;8(5):e10567. doi: 10.1002/btm2.10567. eCollection 2023 Sep.

Abstract

Low-flow removal of refractory ascites is critical to treating cirrhosis and digestive system tumor, and thus, commercial ascites pump emerged lately. The rigid structure of clinically available pumps rises complication rate and lack of flow rate monitoring hinders early warning of abnormalities. Herein, a soft artificial system was proposed inspired by lymph for interactive ascites transfer with great biocompatibility. The implantable system is composed of pump cavity, valves and tubes, which are soft and flexible made by silica gel. Therefore, the system possesses similar modulus to tissues and can naturally fit surrounding tissues. The cavity with magnetic tablet embedded is driven by extracorporeal magnetic field. Subsequently, the system can drain ascites with a top speed of 23 mL min, much higher than that of natural lymphatic system and state-of-art devices. Moreover, integrated flexible sensors enable wireless, real-time flow rate monitoring, serving as proof of treatment adjustment, detection and locating of malfunction at early stage. The liver function of experimental objects was improved, and no severe complications occurred for 4 weeks, which proved its safety and benefit to treatment. This artificial lymphatic system can serve as a bridge to recovery and pave the way for further clinical research.

摘要

低流量去除顽固性腹水对于治疗肝硬化和消化系统肿瘤至关重要,因此,商用腹水泵最近应运而生。临床可用泵的刚性结构增加了并发症发生率,且缺乏流速监测阻碍了异常情况的早期预警。在此,受淋巴启发提出了一种具有良好生物相容性的用于交互式腹水转移的软人工系统。该可植入系统由泵腔、瓣膜和管道组成,它们由硅胶制成,柔软且灵活。因此,该系统具有与组织相似的模量,能够自然地贴合周围组织。嵌入磁片的腔室由体外磁场驱动。随后,该系统能够以最高23毫升/分钟的速度引流腹水,远高于天然淋巴系统和现有设备。此外,集成的柔性传感器能够进行无线、实时流速监测,为治疗调整、早期故障检测和定位提供依据。实验对象的肝功能得到改善,四周内未出现严重并发症,证明了其安全性和治疗益处。这种人工淋巴系统可作为康复的桥梁,为进一步的临床研究铺平道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d0b8/10486333/9ec5e3be834f/BTM2-8-e10567-g001.jpg

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