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FGF-1 in human adipogenesis

FGF-1 in human adipogenesis
FGF-1 在人类脂肪形成中的作用
批准号:
nhmrc : 401528
负责人:
Dr Louise Hutley
金额:
$29.21万
依托单位国家:
澳大利亚
项目类别:
NHMRC Project Grants
财政年份:
2007
资助国家:
澳大利亚
项目状态:
已结题
起止时间:
2007-01-01 至 2008-12-31
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项目摘要

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中文摘要
翻译
肥胖在澳大利亚成年人和儿童中变得越来越普遍,并且是许多疾病的主要原因,包括2型糖尿病、心血管疾病和一些癌症。目前使用改变生活方式(饮食和运动)或药物的减肥策略对大多数肥胖者来说相对无效。这部分是由于我们对调节人类体重的因素知之甚少。在实验室研究中,我们已经证明成纤维细胞生长因子-1 (FGF-1)可以显著加速人类脂肪细胞的发育。这种生长因子是由人体内皮细胞产生的,这些细胞排列在脂肪组织的血管上。当人类脂肪细胞前体(前脂肪细胞)在FGF-1的存在下培养时,前脂肪细胞比正常情况下分裂得快得多,并且比正常情况下更快地发育成成熟的脂肪细胞。这些过程涉及到新脂肪细胞的发展,形成了体内脂肪组织扩张的基础。FGF-1对人类脂肪细胞发育的影响远远大于其他已知的促进脂肪细胞生长的因素。该项目的目的是确定介导FGF-1在促进脂肪细胞生长和发育中的作用的实际生化途径。获得的结果将提供洞察细胞和分子机制调节脂肪组织团块在人类的扩张。旨在确定这些潜在机制,或潜在的促成或加剧因素的研究,对于开发新的和更有效的预防和治疗肥胖的方法至关重要。
英文摘要
Obesity is becoming more common in Australian adults and children, and is a major contributor to a number of diseases including type 2 diabetes, cardiovascular disease and some cancers. Current weight loss strategies using either lifestyle modification (diet and exercise) or drugs are relatively ineffective in the majority of obese individuals. This is partly due to the fact that we have an incomplete knowledge of the factors that regulate weight in humans. In laboratory studies we have shown that human fat cell development can be dramatically accelerated by fibroblast growth factor-1 (FGF-1). This growth factor is produced by human endothelial cells, which are cells that line the blood vessels in fat tissue. When human fat cell precursors (preadipocytes) are cultured in the presence of FGF-1 the preadipocytes divide much more rapidly than normal and, additionally, then develop into mature fat cells much more rapidly than normal. These processes involved in development of new fat cells form the basis of fat tissue expansion in the body. The effect of FGF-1 on human fat cell development is far greater in magnitude than that of other known factors that promote fat cell growth. The aim of this project is to determine the actual biochemical pathways that mediate the effect of FGF-1 in promoting fat cell growth and development. Results obtained will provide insight into the cellular and molecular mechanisms regulating expansion of fat tissue mass in humans. Research aimed at identifying these underlying mechanisms, or at potentially contributing or exacerbating factors, is critically important in development of novel and more effective approaches to prevention and treatment of obesity.
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