AUTHOR=Sun Xuyan , Yang Hua , Zhang Han , Zhang Weiwei , Liu Chunyu , Wang Xiaoxiao , Song Wenping , Wang Lin , Zhao Qingsong TITLE=Magnetic gelatin-hesperidin microrobots promote proliferation and migration of dermal fibroblasts JOURNAL=Frontiers in Chemistry VOLUME=12 YEAR=2024 URL=https://www.frontiersin.org/journals/chemistry/articles/10.3389/fchem.2024.1478338 DOI=10.3389/fchem.2024.1478338 ISSN=2296-2646 ABSTRACT=
Dermal fibroblasts play a crucial role in the formation of granulation tissue in skin wounds. Consequently, the differentiation, migration, and proliferation of dermal fibroblasts are considered key factors in the skin wound healing process. However, in patients with diabetic foot ulcers, the proliferation and migration of fibroblasts are impaired by reactive oxygen species and inflammatory factors impair. Therefore, a novel magnetic gelatin-hesperidin microrobots drug delivery system was developed using microfluidics. The morphology, motility characteristics, and drug release of the microrobot were assessed, along with its impact on the proliferation and migration of human dermal fibroblasts under high-glucose conditions. Subjected to a rotating magnetic field, the microrobots exhibit precise, controllable, and flexible autonomous motion, achieving a maximum speed of 9.237 μm/s.