Synergistic effect of Hypoxic Conditioning and Cell-Tethering Colloidal Gels enhanced Productivity of MSC Paracrine Factors and Accelerated Vessel Regeneration.

缺氧条件和细胞束缚胶体凝胶的协同作用增强了 MSC 旁分泌因子的产量并加速了血管再生

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作者:Lee Myung Chul, Lee Jae Seo, Kim Seongsoo, Jamaiyar Anurag, Wu Winona, Gonzalez Montserrat Legorreta, Durán Tania Carolina Acevedo, Madrigal-Salazar Andrea Donaxi, Bassous Nicole, Carvalho Violeta, Choi Cholong, Kim Da-Seul, Seo Jeong Wook, Rodrigues Nelson, Teixeira Senhorinha F C F, Alkhateeb Abdulhameed F, Soto Javier Alejandro Lozano, Hussain Mohammad Asif, Leijten Jeroen, Feinberg Mark W, Shin Su Ryon
Microporous hydrogels have been widely used for delivering therapeutic cells. However, several critical issues, such as the lack of control over the harsh environment they are subjected to under pathological conditions and rapid egression of cells from the hydrogels, have produced limited therapeutic outcomes. To address these critical challenges, cell-tethering and hypoxic conditioning colloidal hydrogels containing mesenchymal stem cells (MSCs) are introduced to increase the productivity of paracrine factors locally and in a long-term manner. Cell-tethering colloidal hydrogels that are composed of tyramine-conjugated gelatin prevent cells from egressing through on-cell oxidative phenolic crosslinks while providing mechanical stimulation and interconnected microporous networks to allow for host-implant interactions. Oxygenating microparticles encapsulated in tyramine-conjugated colloidal microgels continuously generated oxygen for 2 weeks with rapid diffusion, resulting in maintaining a mild hypoxic condition while MSCs consumed oxygen under severe hypoxia. Synergistically, local retention of MSCs within the mild hypoxic-conditioned and mechanically robust colloidal hydrogels significantly increased the secretion of various angiogenic cytokines and chemokines. The oxygenating colloidal hydrogels induced anti-inflammatory responses, reduced cellular apoptosis, and promoted numerous large blood vessels in vivo. Finally, mice injected with the MSC-tethered oxygenating colloidal hydrogels significantly improved blood flow restoration and muscle regeneration in a hindlimb ischemia (HLI) model.

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