Department of Pathology, Korea University Ansan Hospital, Gyeonggi-do, Republic of Korea.
Department of Materials Science and Engineering, Korea University, Seoul, Republic of Korea.
J Mater Chem B. 2022 Apr 6;10(14):2708-2718. doi: 10.1039/d1tb02341a.
Fecal incontinence is a disabling condition in which the passage of fecal material cannot be controlled. Although the condition is not life-threatening, it can seriously reduce the quality of life of a patient by isolating them from others. Though various surgical treatments are available for moderate to severe symptoms, a bulking agent is a minimally invasive technique that has attracted attention because of its safety and simple treatment process. However, the biocompatibility of bulking agent materials remains a central issue, with their durability questioned because immune responses and/or the circulatory system may remove the bulking agent . This study investigated a bulking agent composed of polydimethylsiloxane and hyaluronic acid as a microfiller and carrier gel, respectively. To improve the injectability of the bulking agent, the filler size was tuned using a suspension-based fabrication technique. To evade immune responses, the filler surface was treated with a zwitterionic polymer that simultaneously functionalized and stabilized the material interfaces. The resulting bulking agent exhibited good injectability and biocompatibility , with 58% lower protein adsorption and no cytotoxicity, leading to an improved bulking effect in a preclinical rat model compared with a bulking agent without surface treatment. These results illustrate the promising potential of bulking agents as a therapy for fecal incontinence with reduced foreign body reactions and long-lasting efficacy.
大便失禁是一种使人丧失能力的疾病,即无法控制粪便的排出。虽然这种疾病不会危及生命,但它会使患者与他人隔离,严重降低他们的生活质量。虽然有各种手术治疗方法可用于中度至重度症状,但由于其安全性和简单的治疗过程,一种填充剂作为微创技术引起了人们的关注。然而,填充剂材料的生物相容性仍然是一个核心问题,其耐久性受到质疑,因为免疫反应和/或循环系统可能会清除填充剂。本研究调查了一种由聚二甲基硅氧烷和透明质酸组成的填充剂,分别作为微填料和载体凝胶。为了提高填充剂的可注射性,使用基于悬浮液的制造技术来调整填充剂的粒径。为了避免免疫反应,用两性离子聚合物对填充剂表面进行处理,该聚合物同时对材料界面进行功能化和稳定化。所得填充剂具有良好的可注射性和生物相容性,其蛋白质吸附率降低了 58%,没有细胞毒性,与未经表面处理的填充剂相比,在临床前大鼠模型中具有更好的填充效果。这些结果表明,作为大便失禁治疗方法,填充剂具有减少异物反应和长效疗效的巨大潜力。