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用于体外骨膜软骨生成的无血清培养基。

Serum-free media for periosteal chondrogenesis in vitro.

作者信息

Fitzsimmons James S, Sanyal Arunik, Gonzalez Carlos, Fukumoto Takumi, Clemens Victoria R, O'Driscoll Shawn W, Reinholz Gregory G

机构信息

The Cartilage and Connective Tissue Research Laboratory, Mayo Clinic College of Medicine, Mayo Foundation, Rochester, MN 55905, USA.

出版信息

J Orthop Res. 2004 Jul;22(4):716-25. doi: 10.1016/j.orthres.2003.10.020.

Abstract

Organ culture studies involving whole explants of periosteum have been useful for studying chondrogenesis, but to date the standard culture model for these explants has required the addition of fetal bovine serum to the media. Numerous investigators have succeeded in culturing chondrocytes and embryonic cells in serum-free conditions but there have been no studies focused on achieving a defined, serum-free media for culturing periosteal explants. The purpose of the present investigation was to determine if whole periosteal explants can be grown and produce cartilage in serum-free conditions, and to define the minimum media supplements that would be conducive to chondrogenesis. 321 periosteal explants were obtained from the medial proximal tibiae of 31 two month-old NZ white rabbits and cultured using a published agarose suspension organ culture model and DMEM for six weeks. The explants were cultured with and without fetal bovine serum or bovine serum albumin and exposed to transforming growth factor beta alone, a combination of growth factors we call ChondroMix (10 ng/ml transforming growth factor beta, 50 ng/ml basic fibroblast growth factor, and 5 microg/ml growth hormone), and/or ITS+ (2.08 microg/ml each of insulin, transferrin, and selenious acid, plus 1.78 microg/ml linoleic acid and 0.42 mg/ml BSA). Maximal chondrogenic stimulation in this study was observed with the combination of ChondroMix and ITS+. However, the minimal requirement to match or exceed the level of chondrogenic stimulation seen in the standard model (TGF-1 in 10% FBS) was achieved simply by the addition of 2.0 microg/ml insulin in 0.1% BSA-containing medium (p < 0.05). Therefore, based on our results, it would be reasonable to assume that insulin is the component in ITS+ responsible for the observed increase in total cartilage growth. Lower concentrations of insulin were not effective, suggesting that the observed effect of insulin requires activation of the IGF-1 receptor.

摘要

涉及骨膜全外植体的器官培养研究对于软骨形成的研究很有用,但迄今为止,这些外植体的标准培养模型需要在培养基中添加胎牛血清。许多研究人员已成功在无血清条件下培养软骨细胞和胚胎细胞,但尚未有研究专注于实现用于培养骨膜外植体的明确无血清培养基。本研究的目的是确定骨膜全外植体是否能在无血清条件下生长并产生软骨,并确定有助于软骨形成的最低培养基补充成分。从31只两个月大的新西兰白兔的内侧胫骨近端获取321个骨膜外植体,并使用已发表的琼脂糖悬浮器官培养模型和DMEM培养六周。外植体在有或无胎牛血清或牛血清白蛋白的情况下进行培养,并单独暴露于转化生长因子β、我们称为ChondroMix的生长因子组合(10 ng/ml转化生长因子β、50 ng/ml碱性成纤维细胞生长因子和5 μg/ml生长激素)和/或ITS +(胰岛素、转铁蛋白和亚硒酸各2.08 μg/ml,加上1.78 μg/ml亚油酸和0.42 mg/ml BSA)。本研究中观察到ChondroMix和ITS +组合具有最大的软骨形成刺激作用。然而,仅通过在含0.1% BSA的培养基中添加2.0 μg/ml胰岛素就达到了与标准模型(10% FBS中的TGF - 1)中所见软骨形成刺激水平相匹配或超过该水平的最低要求(p < 0.05)。因此,根据我们的结果,可以合理地假设胰岛素是ITS +中导致观察到的总软骨生长增加的成分。较低浓度的胰岛素无效,这表明胰岛素的观察到的作用需要激活IGF - 1受体。

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