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Preferential secretion of collagen type 3 versus type 1 from adventitial fibroblasts stimulated by TGF-β/Smad3-treated medial smooth muscle cells

机译:由TGF-β/ SMAD3处理的内侧平滑肌细胞刺激的过滤成纤维细胞的胶原蛋白3型的优先分泌。

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摘要

Restenosis, or arterial lumen re-narrowing, occurs in 30–50% of the patients undergoing angioplasty. Adaptive remodeling is the compensatory enlargement of the vessel size, and has been reported to prevent the deleterious effects of restenosis. Our previous studies have shown that elevated transforming growth factor (TGF-β) and its signaling protein Smad3 in the media layer induce adaptive remodeling of angioplastied rat carotid artery accompanying an increase of total collagen in the adventitia. In order to gain insights into a possible role of collagen in Smad3-induced adaptive remodeling, here we have investigated a mechanism of cell–cell communication between medial smooth muscle cells (SMCs) and adventitial fibroblasts in regulating the secretion of two major collagen subtypes. We have identified a preferential collagen-3 versus collagen-1 secretion by adventitial fibroblasts following stimulation by the conditioned medium from the TGF-β1-treated/Smad3-expressing medial smooth muscle cells (SMCs), which contained higher levels of CTGF and IGF2 as compared to control medium. Treating the TGF-β/ Smad3-stimulated SMCs with an siRNA to either CTGF or IGF2 reversed the effect of conditioned media on preferential collagen-3 secretion from fibroblasts. Moreover, recombinant CTGF and IGF2 together stimulated adventitial fibroblasts to preferentially secrete collagen-3 versus collagen-1. This is the first study to identify a preferential secretion of collagen-3 versus collagen-1 from adventitial fibroblasts as a result of TGF-β/Smad3 stimulation of medial SMCs, and that CTGF and IGF2 function together to mediate this signaling communication between the two cell types.
机译:在进行血管成形术的患者中,有30–50%发生再狭窄或动脉腔狭窄。适应性重塑是血管尺寸的补偿性扩大,据报道可预防再狭窄的有害作用。我们以前的研究表明,在培养基层中升高的转化生长因子(TGF-β)及其信号蛋白Smad3诱导血管成形大鼠颈动脉的适应性重塑,伴随着外膜中总胶原蛋白的增加。为了深入了解胶原蛋白在Smad3诱导的适应性重塑中的可能作用,在这里我们研究了内侧平滑肌细胞(SMCs)和外膜成纤维细胞之间的细胞间通讯调节两种主要胶原亚型分泌的机制。我们确定了条件培养基刺激TGF-β1处理/表达Smad3的内侧平滑肌细胞(SMC)刺激后,外膜成纤维细胞分泌的胶原3与胶原1的优先分泌,其中CTGF和IGF2含量较高与对照培养基相比。用siRNA对TGF-β/ Smad3刺激的SMC进行CTGF或IGF2处理可逆转条件培养基对成纤维细胞优先分泌胶原3的作用。此外,重组CTGF和IGF2共同刺激外膜成纤维细胞相对于胶原蛋白1优先分泌胶原蛋白3。这是第一个研究确定TGF-β/ Smad3刺激内侧SMCs导致外膜成纤维细胞优先分泌胶原蛋白3与胶原蛋白1的关系,并且CTGF和IGF2共同起作用以介导两者之间的这种信号传导单元格类型。

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