Department of Biomedical Engineering, College of Engineering, University of Arkansas, Fayetteville, AR, USA.
Ralph E. Martin Department of Chemical Engineering, College of Engineering, University of Arkansas, Fayetteville, AR, USA.
Sci Rep. 2023 Feb 3;13(1):1983. doi: 10.1038/s41598-023-27981-x.
This study was designed to test the hypothesis that in addition to repairing the architectural and cellular cues via regenerative medicine, the delivery of immune cues (immunotherapy) may be needed to enhance regeneration following volumetric muscle loss (VML) injury. We identified IL-10 signaling as a promising immunotherapeutic target. To explore the impact of targeting IL-10 signaling, tibialis anterior (TA) VML injuries were created and then treated in rats using autologous minced muscle (MM). Animals received either recombinant rat IL-10 or phosphate buffered saline (PBS) controls injections at the site of VML repair beginning 7 days post injury (DPI) and continuing every other day (4 injections total) until 14 DPI. At 56 DPI (study endpoint), significant improvements to TA contractile torque (82% of uninjured values & 170% of PBS values), TA mass, and myofiber size in response to IL-10 treatment were detected. Whole transcriptome analysis at 14 DPI revealed activation of IL-10 signaling, muscle hypertrophy, and lymphocytes signaling pathways. Expression of ST2, a regulatory T (T) cell receptor, was dramatically increased at the VML repair site in response to IL-10 treatment when compared to PBS controls. The findings suggest that the positive effect of delayed IL-10 delivery might be due to immuno-suppressive T cell recruitment.
这项研究旨在验证一个假设,即在通过再生医学修复结构和细胞线索之外,可能还需要传递免疫线索(免疫疗法)来增强容积性肌肉损失(VML)损伤后的再生。我们确定了 IL-10 信号作为一种有前途的免疫治疗靶标。为了探索靶向 IL-10 信号的影响,在前胫骨(TA)处创建 VML 损伤,然后在大鼠中使用自体碎肌肉(MM)进行治疗。动物在 VML 修复部位接受重组大鼠 IL-10 或磷酸盐缓冲盐水(PBS)对照注射,从损伤后 7 天(DPI)开始,每隔一天(共 4 次注射)持续到 14 DPI。在 56 DPI(研究终点)时,检测到 IL-10 治疗对 TA 收缩扭矩(未受伤值的 82%和 PBS 值的 170%)、TA 质量和肌纤维大小的显著改善。14 DPI 的全转录组分析显示 IL-10 信号、肌肉肥大和淋巴细胞信号通路的激活。与 PBS 对照相比,IL-10 治疗后,在 VML 修复部位 ST2(调节性 T(T)细胞受体)的表达显著增加。这些发现表明,延迟 IL-10 传递的积极影响可能是由于免疫抑制性 T 细胞的募集。