硅酮
植入
包膜挛缩
紫杉醇
乳腺癌
医学
乳房植入物
胶囊
纤维化
乳房再造术
生物医学工程
佐剂
乳房切除术
癌症
化疗
外科
材料科学
肿瘤科
内科学
复合材料
植物
生物
作者
Noehyun Myung,Seoyoung Hwang,Won Ha,Hyun‐Wook Kang
标识
DOI:10.1002/adtp.202300358
摘要
Abstract Breast cancer patients undergoing mastectomy receive silicone‐implant‐based breast reconstruction to mitigate the psychological distress of breast loss, typically in conjunction with adjuvant therapy. However, significant problems remain, such as systemic toxicity from chemotherapy and fibrosis that causes capsular contracture. Here, the development of a silicone implant coated with an alginate gel containing antisolvent‐crystallized paclitaxel (acPTX) is reported. By antisolvent crystallization, the compact formulation of acPTX ensures slow release for long‐term breast cancer recurrence prevention. The mixture of acPTX and the biodegradable alginate gel, which reduces fibrosis, is uniformly coated onto the silicone implant using 3D printed implant‐specific molds based on the shape obtained from 3D scanning. In a breast cancer recurrence mouse model, silicone implants coated with acPTX gel show a long‐term preventive effect compared to gel‐coated implants with commercially available PTX. Furthermore, animal studies using C57BL/6 mice show that alginate‐gel‐coated implants significantly reduce capsule thickness, collagen density, and the number of fibrosis‐related cells around the implant compared to silicone implants. The developed acPTX‐gel‐coated implant presents a promising approach for breast reconstruction in mastectomized breast cancer patients. It provides a novel platform for developing implants with long‐term drug release properties.
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