Department of Biomaterials and Tissue Engineering, Institute of Physiology of the Czech Academy of Sciences, Prague, Czech Republic.
Second Faculty of Medicine, Charles University, Prague, Czech Republic.
Connect Tissue Res. 2021 Sep;62(5):554-569. doi: 10.1080/03008207.2020.1816992. Epub 2020 Sep 20.
Clubfoot is a congenital deformity affecting the musculoskeletal system, resulting in contracted and stiff tissue in the medial part of the foot. Minoxidil (MXD) has an inhibitory effect on lysyl hydroxylase, which influences the quality of extracellular matrix crosslinking, and could therefore be used to reduce the stiffness and to improve the flexibility of the tissue. We assessed the antifibrotic effects of minoxidil on clubfoot-derived cells.
Cell viability and proliferation were quantified by xCELLigence, MTS, and LIVE/DEAD assays. The amount of collagen I deposited into the extracellular matrix was quantified using immunofluorescence with subsequent image segmentation analysis, hydroxyproline assay, and Second Harmonic Generation imaging. Extracellular matrix contraction was studied in a 3D model of cell-populated collagen gel lattices.
MXD concentrations of 0.25, 0.5, and 0.75 mM inhibited the cell proliferation in a concentration-dependent manner without causing a cytotoxic effect. Exposure to ≥0.5 mM MXD resulted in a decrease in collagen type I accumulation after 8 and 21 days in culture. Changes in collagen fiber assembly were observed by immunofluorescence microscopy and nonlinear optical microscopy (second harmonic generation). MXD also inhibited the contraction of cell-populated collagen lattices (0.5 mM by 22%; 0.75 mM by 28%).
Minoxidil exerts an inhibitory effect on the cell proliferation, collagen accumulation, and extracellular matrix contraction processes that are associated with clubfoot fibrosis. This study provides important preliminary results demonstrating the potential relevance of MXD for adjuvant pharmacological therapy in standard treatment of relapsed clubfoot.
马蹄足是一种影响骨骼肌肉系统的先天性畸形,导致足部内侧的组织挛缩和僵硬。米诺地尔(MXD)对赖氨酰羟化酶有抑制作用,影响细胞外基质交联的质量,因此可用于降低组织的僵硬度并提高其柔韧性。我们评估了米诺地尔对马蹄足衍生细胞的抗纤维化作用。
通过 xCELLigence、MTS 和 LIVE/DEAD 检测法来定量细胞活力和增殖。通过免疫荧光与后续的图像分割分析、羟脯氨酸测定和二次谐波产生成像来定量细胞外基质中胶原蛋白 I 的沉积量。在细胞填充胶原凝胶格子的 3D 模型中研究细胞外基质收缩。
0.25、0.5 和 0.75 mM 的 MXD 浓度以浓度依赖性方式抑制细胞增殖,而不会产生细胞毒性作用。暴露于≥0.5 mM 的 MXD 会导致培养 8 天和 21 天后胶原蛋白 I 积累减少。通过免疫荧光显微镜和非线性光学显微镜(二次谐波产生)观察到胶原蛋白纤维组装的变化。米诺地尔还抑制细胞填充胶原格子的收缩(0.5 mM 收缩 22%;0.75 mM 收缩 28%)。
米诺地尔对与马蹄足纤维化相关的细胞增殖、胶原蛋白积累和细胞外基质收缩过程具有抑制作用。这项研究提供了重要的初步结果,表明 MXD 对复发马蹄足的标准治疗中辅助药物治疗具有潜在的相关性。