作者
KangJu Lee, Yumeng Xue, Junmin Lee, Han‐Jun Kim, Yaowen Liu, Peyton Tebon, Einollah Sarikhani, Wujin Sun, Shiming Zhang, Reihaneh Haghniaz, Betül Çelebi‐Saltik, Xingwu Zhou, Serge Ostrovidov, Samad Ahadian, Nureddin Ashammakhi, Mehmet R Dokmeci, Ali Khademhosseini
发表日期
2020/6
期刊
Advanced Functional Materials
卷号
30
期号
23
页码范围
2000086
简介
Mesenchymal stem cells (MSCs) have been widely used for regenerative therapy. In most current clinical applications, MSCs are delivered by injection but face significant issues with cell viability and penetration into the target tissue due to a limited migration capacity. Some therapies have attempted to improve MSC stability by their encapsulation within biomaterials; however, these treatments still require an enormous number of cells to achieve therapeutic efficacy due to low efficiency. Additionally, while local injection allows for targeted delivery, injections with conventional syringes are highly invasive. Due to the challenges associated with stem cell delivery, a local and minimally invasive approach with high efficiency and improved cell viability is highly desired. In this study, a detachable hybrid microneedle depot (d‐HMND) for cell delivery is presented. The system consists of an array of microneedles with an …
引用总数
20202021202220232024622304514