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脂质和胶原基质限制了成年皮质骨多孔腔隙内的水力渗透性。

Lipids and collagen matrix restrict the hydraulic permeability within the porous compartment of adult cortical bone.

机构信息

Department of Biomedical Engineering, Lerner Research Institute, Cleveland Clinic, ND20, Cleveland, OH 44195, USA.

出版信息

Ann Biomed Eng. 2010 Mar;38(3):558-69. doi: 10.1007/s10439-009-9858-z. Epub 2009 Dec 5.

Abstract

In vivo the hydraulic permeability of cortical bone influences the transport of nutrients, waste products and signaling molecules, thus influencing the metabolic functions of osteocytes and osteoblasts. In the current study two hypotheses were tested: the presence of (1) lipids and (2) collagen matrix in the porous compartment of cortical bone restricts its permeability. Our approach was to measure the radial permeability of adult canine cortical bone before and after extracting lipids with acetone-methanol, and before and after digesting collagen with bacterial collagenase. Our results showed that the permeability of adult canine cortical bone was below 4.0x10(-17) m2, a value consistent with prior knowledge. After extracting lipids, permeability increased to a median value of 8.6x10(-16) m2. After further digesting with collagenase, permeability increased to a median value of 1.4x10(-14) m2. We conclude that the presence of both lipids and collagen matrix within the porous compartment of cortical bone restricts its radial permeability. These novel findings suggest that the chemical composition of the tissue matrix within the porous compartment of cortical bone influences the transport and exchange of nutrients and waste products, and possibly influences the metabolic functions of osteocytes and osteoblasts.

摘要

在体内,皮质骨的水力渗透性能影响营养物质、废物产物和信号分子的传输,从而影响破骨细胞和成骨细胞的代谢功能。在本研究中,我们检验了两个假设:(1)皮质骨多孔间隙中存在的脂质和(2)胶原基质会限制其渗透性。我们的方法是测量成年犬皮质骨的径向渗透性,在使用丙酮-甲醇提取脂质前后,以及在使用细菌胶原酶消化胶原前后进行测量。我们的结果表明,成年犬皮质骨的渗透性低于 4.0x10(-17) m2,这一数值与已有知识相符。提取脂质后,渗透性增加到中位数 8.6x10(-16) m2。进一步用胶原酶消化后,渗透性增加到中位数 1.4x10(-14) m2。我们得出结论,脂质和胶原基质都存在于皮质骨多孔间隙中会限制其径向渗透性。这些新发现表明,皮质骨多孔间隙组织基质的化学成分会影响营养物质和废物产物的传输和交换,并可能影响破骨细胞和成骨细胞的代谢功能。

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