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首页> 外文期刊>Cell transplantation >Transplanted fibroblasts prevents dysfunctional repair in a murine CXCR3-deficient scarring model
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Transplanted fibroblasts prevents dysfunctional repair in a murine CXCR3-deficient scarring model

机译:移植的成纤维细胞可防止小鼠CXCR3缺陷疤痕模型的功能障碍修复

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摘要

In skin, the regeneration of the ontogenically distinct mesenchymal and epithelial compartments must proceed in a coordinated manner orchestrated by extracellular signaling networks. We have recently found that the switch from regeneration to remodeling during repair is modulated by chemokines that bind CXCR3 receptor. If this signaling is disrupted wounds continue to be active, resulting in a chronic hypercellular and hypertrophic state characterized by an immature matrix composition. As healing is masterminded in large part by fibroblasts and their synthesis of the extracellular matrix, the question arose as to whether this ongoing scarring can be modulated by transplanted fibroblasts. We examined wounds in the CXCR3-/- mouse scarring model. These wounds exhibited a significant delay in healing in all areas compared to young and aged wild-type mice. Full-thickness wounds were transplanted with fibroblasts derived from newborn CXCR3/ or wild-type mice. The transplanted fibroblasts were labeled with fluorescent dye (CM-DiI) and suspended in hyaluronic acid gel; by 30 days, these transplanted cells comprised some 30% of the dermal stromal cells regardless of the host or source of transplanted cells. Wild-type fibroblasts transplanted into CXCR3-/- mice wounds reversed the delay and dysfunction previously seen in CXCR3-/- wounds; this correction was not noted with transplanted CXCR3-/- fibroblasts. Additionally, transplant of CXCR3-/- cells into wounds in wild-type animals did not adversely affect those wounds. The transplanted fibroblasts exhibited strong survival and migration patterns and led to an increase in tensile strength. Expression of matrix proteins and collagen in CXCR3-/- wounds transplanted with wild-type fibroblasts resembled normal wild-type healing, and the wound matrix in wild-type mice transplanted with CXCR3-/- cells also presented a mature matrix. These suggest that the major determinant of healing versus scarring lies with the nature of the matrix. These findings have intriguing implications for rational cellular interventions aimed at promoting wound healing via cell therapy.
机译:在皮肤中,本体上不同的间质和上皮区室的再生必须以细胞外信号网络协调的方式进行。我们最近发现,修复过程中从再生到重塑的转换受结合CXCR3受体的趋化因子的调控。如果该信号被破坏,伤口将继续活跃,导致以基质成分不成熟为特征的慢性肥大和肥大状态。由于愈合在很大程度上由成纤维细胞及其细胞外基质的合成决定,因此出现了有关这种持续的瘢痕形成是否可以由移植的成纤维细胞调节的问题。我们在CXCR3-/-小鼠瘢痕形成模型中检查了伤口。与年轻和衰老的野生型小鼠相比,这些伤口在所有部位的愈合均显着延迟。全层伤口移植有新生CXCR3 /或野生型小鼠的成纤维细胞。移植的成纤维细胞用荧光染料(CM-DiI)标记并悬浮在透明质酸凝胶中。到30天时,这些移植细胞约占真皮基质细胞的30​​%,而与移植细胞的宿主或来源无关。移植到CXCR3-/-小鼠伤口中的野生型成纤维细胞逆转了以前在CXCR3-/-伤口中所见的延迟和功能障碍。移植的CXCR3-/-成纤维细胞未发现这种纠正。另外,将CXCR3-/-细胞移植到野生型动物的伤口中不会对那些伤口产生不利影响。移植的成纤维细胞表现出强大的存活和迁移模式,并导致抗张强度的提高。在野生型成纤维细胞移植的CXCR3-/-伤口中基质蛋白和胶原蛋白的表达类似于正常的野生型愈合,在移植了CXCR3-/-细胞的野生型小鼠中伤口基质也呈现出成熟的基质。这些表明愈合与瘢痕形成的主要决定因素在于基质的性质。这些发现对旨在通过细胞疗法促进伤口愈合的合理的细胞干预具有有趣的意义。

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