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通过bcl-2过表达和细胞因子选择策略实现的β细胞抵御细胞因子诱导损伤和氧化损伤的离散且互补的保护机制。

Discrete and complementary mechanisms of protection of beta-cells against cytokine-induced and oxidative damage achieved by bcl-2 overexpression and a cytokine selection strategy.

作者信息

Tran Veronique Vien, Chen Guoxun, Newgard Christopher B, Hohmeier Hans E

机构信息

Touchstone Center for Diabetes Research, Department of Biochemistry and Biomedical Engineering Program, University of Texas Southwestern Medical Center, Dallas, TX, USA.

出版信息

Diabetes. 2003 Jun;52(6):1423-32. doi: 10.2337/diabetes.52.6.1423.

Abstract

We have been investigating the potential utility of engineered cell lines as surrogates for primary islet cells in treatment of type 1 diabetes. To this end, two strategies that have emerged for procuring cell lines with resistance to immune-mediated damage are 1) selection of cytokine-resistant cell lines by growth of INS-1 insulinoma cells in iteratively increasing concentrations of interleukin (IL)-1beta + gamma-interferon (IFN-gamma), and 2) stable overexpression of the anti-apoptotic gene bcl-2 in INS-1 cells. Herein, we show that bcl-2-overexpressing cells are resistant to the cytotoxic effects of reactive oxygen and nitrogen species (ROS/RNS), but are only modestly protected against high concentrations of IL-1beta + INF-gamma, whereas the converse is true in cytokine selected cells. We also found that the combination of bcl-2 expression and cytokine selection confers a broader spectrum of resistance than either procedure alone, such that the resultant cells are highly resistant to cytokines and ROS/RNS, with no impairment in glucose-stimulated insulin secretion. INS-1-derived cells with combined bcl-2 expression and cytokine selection are also more resistant to damage induced by coculture with mitogen-activated peripheral blood mononuclear cells. Surprisingly, application of the cytokine selection procedure to bcl-2-overexpressing cells does not result in impairment of nuclear factor-kappaB translocation, iNOS expression, and NO production, as clearly occurs upon application of the selection procedure to cells without bcl-2 overexpression. Further investigation of the diverse pathways involved in the development of cytokine and ROS/RNS resistance may define simplified and specific strategies for preservation of beta-cell mass.

摘要

我们一直在研究工程细胞系作为原代胰岛细胞替代物用于治疗1型糖尿病的潜在效用。为此,出现了两种获取具有抗免疫介导损伤能力的细胞系的策略:1)通过在不断增加浓度的白细胞介素(IL)-1β + γ-干扰素(IFN-γ)中培养INS-1胰岛素瘤细胞来选择抗细胞因子的细胞系,以及2)在INS-1细胞中稳定过表达抗凋亡基因bcl-2。在此,我们表明,过表达bcl-2的细胞对活性氧和氮物种(ROS/RNS)的细胞毒性作用具有抗性,但仅能适度抵抗高浓度的IL-1β + INF-γ,而在细胞因子选择的细胞中情况则相反。我们还发现,bcl-2表达与细胞因子选择相结合赋予的抗性谱比单独的任何一种方法都更广泛,因此所得细胞对细胞因子和ROS/RNS具有高度抗性,且葡萄糖刺激的胰岛素分泌不受损害。具有bcl-2表达与细胞因子选择相结合的INS-1衍生细胞对与丝裂原活化的外周血单核细胞共培养诱导的损伤也更具抗性。令人惊讶的是,将细胞因子选择程序应用于过表达bcl-2的细胞不会导致核因子-κB易位、诱导型一氧化氮合酶(iNOS)表达和一氧化氮(NO)产生受损,而将选择程序应用于未过表达bcl-2的细胞时显然会出现这种情况。对参与细胞因子和ROS/RNS抗性发展的多种途径的进一步研究可能会确定保留β细胞量的简化和特定策略。

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