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Mice lacking Smad3 are protected against cutaneous injury induced by ionizing radiation.缺乏Smad3的小鼠对电离辐射引起的皮肤损伤具有抵抗力。
Am J Pathol. 2002 Mar;160(3):1057-68. doi: 10.1016/S0002-9440(10)64926-7.
2
Interference with transforming growth factor-beta/ Smad3 signaling results in accelerated healing of wounds in previously irradiated skin.干扰转化生长因子-β/ Smad3信号传导可加速先前受辐照皮肤伤口的愈合。
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Smad3: a key player in pathogenetic mechanisms dependent on TGF-beta.Smad3:依赖转化生长因子-β的致病机制中的关键因子。
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Absence of Smad3 induces neutrophil migration after cutaneous irradiation: possible contribution to subsequent radioprotection.Smad3缺失在皮肤照射后诱导中性粒细胞迁移:对后续辐射防护的可能作用。
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Alteration of transforming growth factor-beta1 response involves down-regulation of Smad3 signaling in myofibroblasts from skin fibrosis.转化生长因子-β1反应的改变涉及皮肤纤维化肌成纤维细胞中Smad3信号的下调。
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Mice lacking Smad3 show accelerated wound healing and an impaired local inflammatory response.缺乏Smad3的小鼠伤口愈合加速且局部炎症反应受损。
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本文引用的文献

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Is Smad3 a major player in signal transduction pathways leading to fibrogenesis?Smad3是导致纤维化的信号转导通路中的主要参与者吗?
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2
Alteration of transforming growth factor-beta1 response involves down-regulation of Smad3 signaling in myofibroblasts from skin fibrosis.转化生长因子-β1反应的改变涉及皮肤纤维化肌成纤维细胞中Smad3信号的下调。
Am J Pathol. 2001 Jul;159(1):263-72. doi: 10.1016/s0002-9440(10)61692-6.
3
Smad3/AP-1 interactions control transcriptional responses to TGF-beta in a promoter-specific manner.Smad3与AP-1的相互作用以启动子特异性方式控制对转化生长因子-β的转录反应。
Oncogene. 2001 Jun 7;20(26):3332-40. doi: 10.1038/sj.onc.1204448.
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Expression of Smads during in vitro transdifferentiation of hepatic stellate cells to myofibroblasts.肝星状细胞体外转分化为肌成纤维细胞过程中Smads的表达
Biochem Biophys Res Commun. 2001 May 11;283(3):554-62. doi: 10.1006/bbrc.2001.4811.
5
Ultraviolet irradiation blocks cellular responses to transforming growth factor-beta by down-regulating its type-II receptor and inducing Smad7.紫外线照射通过下调转化生长因子-β的II型受体并诱导Smad7来阻断细胞对转化生长因子-β的反应。
J Biol Chem. 2001 Jul 13;276(28):26349-56. doi: 10.1074/jbc.M010835200. Epub 2001 Apr 24.
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Identification of novel TGF-beta /Smad gene targets in dermal fibroblasts using a combined cDNA microarray/promoter transactivation approach.采用cDNA微阵列与启动子反式激活相结合的方法鉴定真皮成纤维细胞中新型转化生长因子-β/Smad基因靶点。
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Functional characterization of transforming growth factor beta signaling in Smad2- and Smad3-deficient fibroblasts.Smad2和Smad3缺陷型成纤维细胞中转化生长因子β信号传导的功能特性
J Biol Chem. 2001 Jun 8;276(23):19945-53. doi: 10.1074/jbc.M102382200. Epub 2001 Mar 21.
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Regulation of Smad signaling by protein kinase C.蛋白激酶C对Smad信号通路的调控
FASEB J. 2001 Mar;15(3):553-5. doi: 10.1096/fj.00-0474fje. Epub 2001 Jan 5.
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How cells read TGF-beta signals.细胞如何解读转化生长因子-β信号。
Nat Rev Mol Cell Biol. 2000 Dec;1(3):169-78. doi: 10.1038/35043051.
10
Synergistic cooperation between Sp1 and Smad3/Smad4 mediates transforming growth factor beta1 stimulation of alpha 2(I)-collagen (COL1A2) transcription.Sp1与Smad3/Smad4之间的协同合作介导了转化生长因子β1对α2(I)-胶原(COL1A2)转录的刺激作用。
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缺乏Smad3的小鼠对电离辐射引起的皮肤损伤具有抵抗力。

Mice lacking Smad3 are protected against cutaneous injury induced by ionizing radiation.

作者信息

Flanders Kathleen C, Sullivan Catherine D, Fujii Makiko, Sowers Anastasia, Anzano Mario A, Arabshahi Alidad, Major Christopher, Deng Chuxia, Russo Angelo, Mitchell James B, Roberts Anita B

机构信息

Laboratory of Cell Regulation and Carcinogenesis and Radiation Biology Branch, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892-5055, USA.

出版信息

Am J Pathol. 2002 Mar;160(3):1057-68. doi: 10.1016/S0002-9440(10)64926-7.

DOI:10.1016/S0002-9440(10)64926-7
PMID:11891202
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1867194/
Abstract

Transforming growth factor-beta (TGF-beta) plays a central role in the pathogenesis of inflammatory and fibrotic diseases, including radiation-induced fibrosis. We previously reported that mice null for Smad3, a key downstream mediator of TGF-beta, show accelerated healing of cutaneous incisional wounds with reduced inflammation and accumulation of matrix. To determine if loss of Smad3 decreases radiation-induced injury, skin of Smad3+/+ [wild-type (WT)] and -/- [knockout (KO)] mice was exposed to a single dose of 30 to 50 Gy of gamma-irradiation. Six weeks later, skin from KO mice showed significantly less epidermal acanthosis and dermal influx of mast cells, macrophages, and neutrophils than skin from WT littermates. Skin from irradiated KO mice exhibited less immunoreactive TGF-beta and fewer myofibroblasts, suggesting that these mice will have a significantly reduced fibrotic response. Although irradiation induced no change in the immunohistochemical expression of the TGF-beta type I receptor, the epidermal expression of the type II receptor was lost after irradiation whereas its dermal expression remained high. Primary keratinocytes and dermal fibroblasts prepared from WT and KO mice showed similar survival when irradiated, as did mice exposed to whole-body irradiation. These results suggest that inhibition of Smad3 might decrease tissue damage and reduce fibrosis after exposure to ionizing irradiation.

摘要

转化生长因子-β(TGF-β)在包括放射性纤维化在内的炎症性和纤维化疾病的发病机制中起核心作用。我们之前报道过,Smad3基因缺失的小鼠(Smad3是TGF-β的关键下游介质),其皮肤切口伤口愈合加速,炎症减轻,基质积聚减少。为了确定Smad3缺失是否会减轻辐射诱导的损伤,将野生型(WT)Smad3+/+和基因敲除(KO)Smad3-/-小鼠的皮肤暴露于30至50 Gy的单次γ射线照射下。六周后,与野生型同窝小鼠的皮肤相比,基因敲除小鼠的皮肤表皮棘皮症明显减轻,肥大细胞、巨噬细胞和中性粒细胞的真皮浸润也减少。照射后的基因敲除小鼠皮肤中免疫反应性TGF-β较少,肌成纤维细胞也较少,这表明这些小鼠的纤维化反应将显著降低。虽然照射未引起TGF-β I型受体免疫组化表达的变化,但照射后II型受体的表皮表达丧失,而其真皮表达仍保持较高水平。从野生型和基因敲除小鼠制备的原代角质形成细胞和真皮成纤维细胞在照射后的存活率相似,全身照射的小鼠也是如此。这些结果表明,抑制Smad3可能会减少电离辐射暴露后的组织损伤并减轻纤维化。