Zhang Guo-Kun, Ren Jing, Li Ji-Ping, Wang Dong-Xu, Wang Sheng-Nan, Shi Li-Yan, Li Chun-Yi
Institute of Antler Science and Product Technology, Changchun Sci-Tech University, Changchun 130600, Jilin Province, China.
College of Chinese Medicinal Materials, Jilin Agricultural University, Changchun 130118, Jilin Province, China.
World J Stem Cells. 2023 Jul 26;15(7):768-780. doi: 10.4252/wjsc.v15.i7.768.
Scar formation and loss of cutaneous appendages are the greatest challenges in cutaneous wound healing. Previous studies have indicated that antler reserve mesenchyme (RM) cells and their conditioned medium improved regenerative wound healing with partial recovery of cutaneous appendages.
To develop hydrogels from the antler RM matrix (HARM) and evaluate the effect on wound healing.
We prepared the hydrogels from the HARM enzymatic solubilization with pepsin. Then we investigated the therapeutic effects of HARM on a full-thickness cutaneous wound healing rat model using both local injections surrounding the wound and topical wound application.
The results showed that HARM accelerated wound healing rate and reduced scar formation. Also, HARM stimulated the regeneration of cutaneous appendages and blood vessels, and reduced collagen fiber aggregation. Further study showed that these functions might be achieved creating a fetal-like niche at the wound site. The levels of fetal wound healing-related genes, including Collagen III and TGFβ3 treated with HARM were all increased, while the expression levels of Collagen I, TGFβ1, and Engrailed 1 were decreased in the healing. Moreover, the number of stem cells was increased in the fetal-like niche created by HARM, which may contribute to the regeneration of cutaneous appendages.
Overall, we successfully developed an injectable hydrogel made from antler RM matrix for the regenerative repair of full-thickness cutaneous wounds. We uncovered the molecular mechanism of the hydrogels in promoting regenerative wound healing, and thus pave the way for HARM to be developed for the clinic use.
瘢痕形成和皮肤附属器缺失是皮肤伤口愈合中最大的挑战。先前的研究表明,鹿茸储备间充质(RM)细胞及其条件培养基可改善再生性伤口愈合,并使皮肤附属器部分恢复。
从鹿茸RM基质(HARM)制备水凝胶,并评估其对伤口愈合的影响。
我们用胃蛋白酶酶解HARM制备水凝胶。然后,我们通过在伤口周围局部注射和在伤口表面应用,研究了HARM对全层皮肤伤口愈合大鼠模型的治疗效果。
结果表明,HARM加速了伤口愈合速度,减少了瘢痕形成。此外,HARM刺激了皮肤附属器和血管的再生,并减少了胶原纤维聚集。进一步研究表明,这些功能可能是通过在伤口部位创造一个类似胎儿的微环境来实现的。用HARM处理后,包括胶原蛋白III和转化生长因子β3在内的胎儿伤口愈合相关基因的水平均升高,而愈合过程中胶原蛋白I、转化生长因子β1和 engrailed 1的表达水平降低。此外,在由HARM创造的类似胎儿的微环境中,干细胞数量增加,这可能有助于皮肤附属器的再生。
总体而言,我们成功开发了一种由鹿茸RM基质制成的可注射水凝胶,用于全层皮肤伤口的再生修复。我们揭示了水凝胶促进再生性伤口愈合的分子机制,从而为HARM的临床应用开发铺平了道路。