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Regulating fibrocyte differentiation in fibrosis

Regulating fibrocyte differentiation in fibrosis
调节纤维化中的纤维细胞分化
批准号:
7147275
负责人:
Richard H Gomer
金额:
$37.3万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-08-07 至 2010-07-31

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中文摘要
翻译
描述(由申请人提供):纤维性疾病,如硬皮病、严重慢性哮喘、肺纤维化和心脏纤维化,每年仅在美国就导致数万人死亡。越来越多的证据表明,在纤维化病变中,血液单核细胞亚群进入组织并分化成成纤维细胞样细胞,称为纤维细胞,导致组织功能障碍。我们发现一种叫做血清淀粉样蛋白P (SAP)的血液蛋白在体外抑制这种分化。注射SAP可预防博莱霉素诱导的大鼠和小鼠肺纤维化,以及小鼠缺血再灌注诱导的心脏纤维化。一些患有肺纤维化的儿童血清中SAP的水平较低,一个令人兴奋的可能性是SAP可能在人类中作为抗纤维化药物有用。一个关键的需求是能够识别纤维细胞前体、早期纤维细胞和成熟纤维细胞,以便在治疗患者的早期阶段进行活组织检查,确定治疗是否影响纤维细胞分化。虽然有几种抗原可作为成熟纤维细胞的标记物,但对早期纤维细胞的表型知之甚少,单核细胞亚群的身份也未知。我们提出了阐明纤维细胞分化的三个具体目标。首先,我们将确定在人、大鼠和小鼠纤维细胞体外分化过程中已知纤维细胞标记物出现的时间进程,以确定最早可能的标记物。然后我们将使用这些信息来确定SAP抑制纤维细胞分化的阶段。其次,我们将确定是否只有一个或几个已知的单核细胞亚群可以分化为纤维细胞,因此是否已知的标记物可以作为纤维细胞前体的生物标记物。第三,我们将在小鼠中诱导肺纤维化,并确定标志物在体内出现的时间过程,并利用这一信息验证SAP抑制纤维细胞分化抑制纤维化的假设。把语言:我们预计,对循环纤维细胞祖细胞的标记物的识别可能会导致对有纤维化疾病风险的患者进行诊断分析,确定纤维细胞在其发育的不同时期表达的标记物将使人们能够在抗纤维化药物的临床试验早期监测临床疗效。阐明SAP在哪个阶段抑制组织中的纤维细胞分化将有助于我们了解如何使用SAP来调节患者的纤维化。
英文摘要
DESCRIPTION (provided by applicant): Fibrotic diseases such as scleroderma, severe chronic asthma, pulmonary fibrosis, and cardiac fibrosis kill tens of thousands of people each year in the US alone. Growing evidence suggests that in a fibrotic lesion a subset of blood monocytes enters the tissue and differentiates into fibroblast-like cells called fibrocytes, causing tissue dysfunction. We found that a blood protein called serum amyloid P (SAP) inhibits this differentiation in vitro. Injections of SAP prevent bleomycin-induced lung fibrosis in rats and mice, and ischemia-reperfusion induced cardiac fibrosis in mice. Some children with pulmonary fibrosis have low serum levels of SAP, and an exciting possibility is that SAP might be useful as an anti-fibrotic in humans. A critical need is to be able to identify fibrocyte precursors, early fibrocytes, and mature fibrocytes, so that in the early stages of treating a patient one could take a biopsy and determine if the treatment is affecting fibrocyte differentiation. Although there are several antigens that serve as markers for mature fibrocytes, little is known about the phenotype of early fibrocytes and the identity of the monocyte subset is unknown. We propose three specific aims to elucidate fibrocyte differentiation. First, we will determine the time course of appearance of known fibrocyte markers during human, rat, and mouse fibrocyte differentiation in vitro, to identify the earliest possible markers. We will then use this information to determine the stage at which SAP inhibits fibrocyte differentiation. Second, we will determine whether just one or several known subsets of monocytes can differentiate into fibrocytes, and thus whether known markers can serve as biomarkers of fibrocyte precursors. Third, we will induce pulmonary fibrosis in mice, and determine the timecourse of marker appearance in vivo, and use this information to test the hypothesis that SAP inhibits fibrocyte differentiation to inhibit fibrosis. Lay Language: We anticipate that identification of the markers for the circulating fibrocyte progenitor cells might lead to diagnostic assays for patients at risk for fibrosing diseases, determining what markers are expressed by fibrocytes at different times during their development will allow one to monitor clinical efficacy early in a clinical trial of an anti-fibrotic drug, and that elucidating at what stage SAP inhibits fibrocyte differentiation in a tissue will help us understand how we might use SAP to regulate fibrosis in patients.
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会议论文
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