Design of a wasp-inspired biopsy needle capable of self-propulsion and friction-based tissue transport.

IF 4.3 3区 工程技术 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Frontiers in Bioengineering and Biotechnology Pub Date : 2025-01-06 eCollection Date: 2024-01-01 DOI:10.3389/fbioe.2024.1497221
Jette Bloemberg, Suzanne van Wees, Vera G Kortman, Aimée Sakes
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Abstract

Percutaneous pancreatic core biopsy is conclusive but challenging due to large-diameter needles, while smaller-diameter needles used in aspiration methods suffer from buckling and clogging. Inspired by the ovipositor of parasitic wasps, which resists buckling through self-propulsion and prevents clogging via friction-based transport, research has led to the integration of these functionalities into multi-segment needle designs or tissue transport system designs. This study aimed to combine these wasp-inspired functionalities into a single biopsy needle by changing the interconnection of the needle segments. The resulting biopsy needle features six parallel needle segments interconnected by a ring passing through slots along the length of the needle segments, enabling a wasp-inspired reciprocating motion. Actuation employs a cam and follower mechanism for controlled translation of the segments. The needle prototype, constructed from nitinol rods and stainless steel rings, measures 3 mm in outer diameter and 1 mm in inner diameter. Testing in gelatin phantoms demonstrated efficient gelatin core transport (up to 69.9% ± 9.1% transport efficiency) and self-propulsion (0.842 ± 0.042 slip ratio). Future iterations should aim to reduce the outer diameter while maintaining tissue yield. The design offers a promising new avenue for wasp-inspired medical tools, potentially enhancing early pancreatic cancer detection, thus reducing healthcare costs and patient complications.

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黄蜂启发的活检针的设计,能够自我推进和基于摩擦的组织运输。
经皮胰腺核心活检是决定性的,但具有挑战性,因为大直径的针,而小直径的针在穿刺方法中遭受屈曲和堵塞。受寄生蜂产卵器的启发,研究人员将这些功能整合到多节段针设计或组织运输系统设计中。寄生蜂产卵器通过自我推进来抵抗屈曲,并防止摩擦运输造成堵塞。本研究旨在通过改变针段的互连,将这些受黄蜂启发的功能结合到单个活检针中。由此产生的活检针具有六个平行的针段,通过沿针段长度穿过槽的环相互连接,从而实现黄蜂启发的往复运动。驱动器采用凸轮和从动件机构来控制各部分的平移。针原型由镍钛诺棒和不锈钢环构成,外径3毫米,内径1毫米。在明胶模型中进行的测试显示了高效的明胶核心运输(高达69.9%±9.1%的运输效率)和自我推进(0.842±0.042的滑移比)。未来的迭代应旨在减少外径,同时保持组织产量。该设计为黄蜂启发的医疗工具提供了一条有前途的新途径,有可能提高胰腺癌的早期检测,从而降低医疗成本和患者并发症。
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来源期刊
Frontiers in Bioengineering and Biotechnology
Frontiers in Bioengineering and Biotechnology Chemical Engineering-Bioengineering
CiteScore
8.30
自引率
5.30%
发文量
2270
审稿时长
12 weeks
期刊介绍: The translation of new discoveries in medicine to clinical routine has never been easy. During the second half of the last century, thanks to the progress in chemistry, biochemistry and pharmacology, we have seen the development and the application of a large number of drugs and devices aimed at the treatment of symptoms, blocking unwanted pathways and, in the case of infectious diseases, fighting the micro-organisms responsible. However, we are facing, today, a dramatic change in the therapeutic approach to pathologies and diseases. Indeed, the challenge of the present and the next decade is to fully restore the physiological status of the diseased organism and to completely regenerate tissue and organs when they are so seriously affected that treatments cannot be limited to the repression of symptoms or to the repair of damage. This is being made possible thanks to the major developments made in basic cell and molecular biology, including stem cell science, growth factor delivery, gene isolation and transfection, the advances in bioengineering and nanotechnology, including development of new biomaterials, biofabrication technologies and use of bioreactors, and the big improvements in diagnostic tools and imaging of cells, tissues and organs. In today`s world, an enhancement of communication between multidisciplinary experts, together with the promotion of joint projects and close collaborations among scientists, engineers, industry people, regulatory agencies and physicians are absolute requirements for the success of any attempt to develop and clinically apply a new biological therapy or an innovative device involving the collective use of biomaterials, cells and/or bioactive molecules. “Frontiers in Bioengineering and Biotechnology” aspires to be a forum for all people involved in the process by bridging the gap too often existing between a discovery in the basic sciences and its clinical application.
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