Horseshoe Crab Peri-Vitelline Fluid Triggers the Human Bone Marrow Stem Cell Differentiation into Cardiomyocyte In Vitro

H. Alam, Chinnari Sumedha, Siddhartha Pati, B. P. Dash, A. Chatterji
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引用次数: 5

Abstract

In the developing eggs of the horseshoe crab (Tachypleus gigas, Muller), the peri-vitelline fluid (PVF) occurs at the 21st stage of embryogenesis. Besides maintaining the homeostasis balance inside the developing eggs it also helps in organogenesis. Considering PVF assisting cell differentiation and proliferation during embryonic development, we made an attempt to examine its activity in triggering human bone marrow stem cells transforming into cardiomyocyte. Out of ten-peak PVF profile obtained from FPLC analysis, only the eighth fraction (PVF-8) showed highest activity on the differentiation of human bone marrow stem cell into myocyte differentiation. By FACS analysis, the optimum dose of PVF-8 was 0.1 mg/ml where maximum rate of bone marrow stem cells differentiation into myocyte observed. Since PVF-8 was showing the highest myocyte differentiation activity it was further analysed for its purity on SDSPAGE where a single band of 29 kDa molecular weight was obtained. The protein sequencing of the PVF-8 showed the presence of 122 amino acids. In order to identify the myocytes present in the colonies formed after the longtermed culture of bone marrow stem cells, cells expressing myosin were identified both by immunohistochemical and FACS analysis. In immunehistochemical analysis, PVF-8 was found to induce a great expression of myosin in some adherent’s cells incubated with it as compared to control cells cultured in presence of VEGF or b-FGF. Moreover, in presence of PVF-8, peroxidase activity in the exposed cells surpassed those in the control group. These results confirmed that PVF-8 effectively improved the rate of bone marrow stem cell differentiation.
马蹄蟹卵黄周围液触发人骨髓干细胞向心肌细胞的体外分化
马蹄蟹(Tachypleus gigas, Muller)的卵黄周围液(PVF)发生在胚胎发生的第21期。除了维持发育中的卵子内部的平衡外,它还有助于器官发生。考虑到PVF在胚胎发育过程中协助细胞分化和增殖,我们尝试检测其在触发人骨髓干细胞向心肌细胞转化中的活性。在FPLC分析获得的10峰PVF谱中,只有第8部分(PVF-8)对人骨髓干细胞向心肌细胞分化的活性最高。通过流式细胞仪分析,PVF-8的最佳剂量为0.1 mg/ml,此时骨髓干细胞向肌细胞分化的速率最大。由于PVF-8表现出最高的肌细胞分化活性,因此在SDSPAGE上进一步分析其纯度,获得了分子量为29 kDa的单带。PVF-8蛋白测序结果显示存在122个氨基酸。为了鉴定骨髓干细胞长期培养后形成的菌落中存在的肌细胞,通过免疫组织化学和FACS分析鉴定表达肌球蛋白的细胞。在免疫组织化学分析中,与VEGF或b-FGF培养的对照细胞相比,PVF-8在与其孵育的一些贴壁细胞中诱导了大量肌球蛋白的表达。此外,PVF-8存在时,暴露细胞的过氧化物酶活性超过对照组。这些结果证实PVF-8能有效提高骨髓干细胞的分化率。
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