大豆、椰子水和糙米多草药提取物(EMSA erittin)对辐射小鼠基质细胞衍生因子1产生的保护作用

Mansur Ibrahim , M. Aris Widodo , Sutiman B. Sumitro , Edi Widjajanto
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摘要

本研究的目的是为大豆、糙米和椰子水的多草药组合(EMSA叶黄素)的潜在功能提供第一个证据,因为它被认为是一种治疗剂,因为它至少在一定程度上增加了辐照后功能性造血干细胞的产生。研究对象为24只雄性小鼠(小家鼠),分为6组,每组4只。本研究采用三种EMSA鸡毛素剂量:1.04 mg/kg体重、3.125 mg/kg体重和9.375 mg/kg体重。除正常对照组外,所有处理组均接受亚致死剂量照射,然后给予EMSA鸡毛素治疗15天。流式细胞术分析胸腺CD4和CD8 t淋巴细胞的生长和分化以及脾脏、骨髓和肝脏中表达基质细胞衍生因子1 (SDF1)的细胞数量。结果表明,EMSA erittin能够显著诱导淋巴细胞增殖和分化,并增加脾脏、骨髓和肝脏中表达sdf1的细胞数量。SDF1是淋巴细胞迁移和造血细胞发育所必需的趋化因子;综上所述,EMSA erittin是一种很好的恢复照射后造血细胞数量的治疗药物。
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The protective effects of polyherbal extracts of soybeans, coconut water, and brown rice (EMSA eritin) on stromal cell-derived factor 1 production in radiated mice

The purpose of the present study was to provide the first evidence of the potential function of the polyherbal combination of soybeans, brown rice, and coconut water (EMSA eritin), as it has been suggested as a therapeutic agent because it, at least in part, increases the production of functional hematopoietic stem cells after irradiation. The study was conducted with 24 male mice (Mus musculus), which were divided into six groups consisting of four mice each. This study used three EMSA eritin doses: 1.04 mg/kg body weight (B.W.), 3.125 mg/kg B.W., and 9.375 mg/kg B.W. All treatment groups, except for normal controls, were exposed to sublethal doses of irradiation and then given EMSA eritin therapy for 15 days. Growth and differentiation of CD4 and CD8 T-lymphocytes in the thymus and the number of stromal cell-derived factor 1 (SDF1)-expressing cells in the spleen, bone marrow, and liver were analyzed using flow cytometry. Results showed that administration of EMSA eritin was capable of significantly inducing lymphocytic proliferation and differentiation and increased the number of SDF1-expressing cells in the spleen, bone marrow, and liver. SDF1 is a chemokine essential to lymphocyte migration and hematopoietic cell development; thus, it can be concluded that EMSA eritin is a good candidate as a therapeutic agent to restore the number of hematopoietic cells after irradiation.

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