Silver micro- and nanoparticles filled silicone for limb prosthetics.

Biomaterials Translational Pub Date : 2025-04-24 eCollection Date: 2025-01-01 DOI:10.12336/bmt.24.00073
Sofiya Eksharova, Yuliya Poletaeva, Anna Kurenkova, Denis Mishchenko, Egor Aydakov, Vladimir Serdyukov
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Abstract

The threat of bacterial growth on the skin under the prosthetic liners or sleeves is an important problem, which can cause various serious diseases up to the repeated amputation. One of the promising ways to solve this problem is to use antibacterial materials as a liner/sleeve material. Among others composite based on the silicone polymer with silver particles additive is may be a simple and effective solution, since the silicone is the main material for the prosthetic liners and sleeves and silver demonstrates pronounced antibacterial effect. However, the questions related to the optimal concentration of silver in silicone that results in maximum antibacterial efficiency without harming human skin are still open. In the present work, synthesis of metallic silver powder from a mixture of micro- and nanoparticles was performed and composite samples based on silicone polymer with different silver concentrations were fabricated. The antibacterial properties of fabricated samples were studied using the microdilution method against gram-positive spore-forming bacteria Bacillus subtilis. The cytotoxic effect of the tested samples was evaluated on healthy human fibroblast cell (NAF1nor). Moreover, the effect of adding silver micro- and nanoparticles to silicone on its extensibility and hardness was studied. The results showed that the addition of silver has a noticeable effect on the antibacterial properties of silicone polymer reaching more than 50%. Furthermore, all tested silicone-silver composites were shown to be non-toxic. The presence of silver does not significantly affect the relative elongation of the samples. However, hardness increases with higher silver concentrations. In the final phase, prototypes of the silver-filled silicone prosthetic sleeve were fabricated for utilisation by the patient at the prosthetic-orthopaedic clinic. The testing of the prototype was successfully completed by the patient, thereby demonstrating practical functionality and suitability for clinical use.

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银微粒和纳米颗粒填充硅胶假肢。
在假肢衬垫或袖子下的皮肤上细菌生长的威胁是一个重要的问题,它可能导致各种严重的疾病,甚至导致反复截肢。解决这一问题的一个有希望的方法是使用抗菌材料作为衬里/套筒材料。其中,基于硅树脂聚合物和银颗粒添加剂的复合材料可能是一种简单有效的解决方案,因为硅树脂是假肢衬垫和袖子的主要材料,而银具有明显的抗菌效果。然而,与硅树脂中银的最佳浓度有关的问题,在不伤害人体皮肤的情况下达到最大的抗菌效率,仍然是开放的。在本工作中,用微粒子和纳米粒子的混合物合成了金属银粉,并制备了不同银浓度的有机硅聚合物复合样品。采用微量稀释法研究制备的样品对革兰氏阳性芽孢杆菌枯草芽孢杆菌的抑菌性能。对健康人成纤维细胞(NAF1nor)进行了细胞毒性评价。此外,还研究了在有机硅中添加银微粒和纳米粒子对其延展性和硬度的影响。结果表明,银的加入对有机硅聚合物的抗菌性能有明显的影响,达到50%以上。此外,所有经过测试的硅银复合材料都是无毒的。银的存在对样品的相对伸长率没有显著影响。然而,硬度随着银浓度的增加而增加。在最后阶段,银填充硅胶假肢套的原型被制作出来,供患者在假肢矫形诊所使用。患者成功完成了原型的测试,从而展示了实际功能和临床使用的适用性。
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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来源期刊
CiteScore
6.70
自引率
0.00%
发文量
9
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