首页|PPARγ基因沉默的人骨髓基质细胞对骨髓抑制小鼠造血功能的影响

PPARγ基因沉默的人骨髓基质细胞对骨髓抑制小鼠造血功能的影响

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目的 观察过氧化物酶体增殖激活受体γ(peroxisome proliferator activated receptor-gamma,PPARγ)基因沉默的人骨髓基质细胞HS-5对骨髓抑制小鼠造血功能的影响,并初步探讨其可能的作用机制。方法 用X射线进行全身照射构建骨髓抑制小鼠模型,造模后2 h,将小鼠随机分为3组,分别为实验组(尾静脉注射PPARγ RNAi干扰的HS-5细胞)、对照组(尾静脉注射未行PPARγ RNAi干扰的HS-5细胞)、空白组(尾静脉注射等量的生理盐水),每组5只。各组于放疗前、放疗后24 h、放疗后1周、放疗后2周进行外周血常规检测。对HS-5细胞在体外进行成骨、成脂诱导,分为实验组(PPARγ RNAi干扰的HS-5细胞)、对照组(未干扰PPARγ的HS-5细胞)、空白组(未行成骨/成脂诱导分化的HS-5细胞),观察成骨/成脂染色情况。采用CCK-8实验检测PPARγ基因沉默的HS-5细胞对小鼠骨髓造血干细胞(hemopoietic stem cell,HSC)增殖的影响,分为实验组(PPARγ RNAi干扰的HS-5细胞经成骨诱导分化3 d后,与小鼠HSC共培养)、阳性对照组(50 μmol/L PPARγ抑制剂处理的HS-5细胞经成骨诱导分化3 d后,与小鼠HSC共培养)、阴性对照组(未干扰PPARγ的HS-5细胞经成骨诱导分化3 d后,与小鼠HSC共培养)、空白组(小鼠HSC单独培养,不与HS-5细胞共培养)。结果 放疗后,各组小鼠血常规指标均呈先降低后升高趋势,放疗后1周,三组小鼠血小板、白细胞水平差异显著,且实验组>对照组>空白组(均P<0。05);放疗后2周,三组小鼠脂肪空泡面积百分比差异显著,且实验组<对照组<空白组(均P<0。05),经Pearson相关分析显示,血常规各指标与血清PPARγ表达水平呈负相关(均P<0。05),与脂肪空泡面积百分比呈负相关(均P<0。05)。在体外成骨/成脂诱导分化后,实验组与对照组相比,橙红色的细胞比例明显降低,红色钙结节比例明显增高;成骨分化诱导3 d后,实验组、阳性对照组、阴性对照组人骨髓基质细胞均与小鼠HSC细胞进行共培养,空白组则单纯培养HSC细胞,结果显示共培养24、48、72 h后,实验组、阳性对照组小鼠HSC细胞增殖水平均高于阴性对照组和空白组(均P<0。05)。结论 PPARγ基因沉默的HS-5植入骨髓抑制小鼠后有助于小鼠造血功能增强。PPARγ基因被干扰沉默后,可增强HS-5细胞的成骨分化能力,减弱HS-5细胞的成脂分化能力,而成骨分化诱导的HS-5细胞能进一步增强小鼠HSC的增殖能力。
Analysis on the Effects of PPARγ Gene-silenced Human Bone Marrow Stromal Cells on Hematopoietic Function in Mice with Bone Marrow Suppression
Objective To investigate the effects of peroxisome proliferator activated receptor-gamma(PPARγ)gene silen-cing in human bone marrow stromal cells(HS-5)on hematopoietic function in bone marrow-suppressed mice,and to explore the potential mechanisms involved.Methods A bone marrow-suppressed mouse model was established by whole-body X-ray irradi-ation.Two hours after modeling,the mice were randomly divided into three groups:experimental group(intravenous injection of PPARγ RNAi-interfered HS-5 cells through the tail vein),control group(intravenous injection of PPARγ RNAi-uninterfered HS-5 cells through the tail vein),and blank group(intravenous injection of an equal amount of saline through the tail vein),with 5 mice in each group.Peripheral blood routine tests were performed before,24 hours after,1 week after,and 2 weeks after radio-therapy.In vitro osteogenic and adipogenic induction was performed in cells,and the cells were divided into experimental group(PPARγ RNAi-interfered HS-5 cells),control group(PPARγ-uninterfered HS-5 cells),and blank group(HS-5 cells without os-teogenic/adipogenic induction).Osteogenic/adipogenic staining was observed.The effects of PPARγ gene-silenced HS-5 cells on mouse bone marrow hematopoietic stem cells(HSCs)were detected by CCK-8 proliferation assay.The groups included experi-mental group(PPARγ RNAi-interfered HS-5 cells were co-cultured with mouse HSCs after 3 days of osteogenic induction dif-ferentiation),positive control group(HS-5 cells treated with 50 μmol/L PPARγ inhibitor were co-cultured with mouse HSCs af-ter 3 days of osteogenic induction differentiation),negative control group(PPARγ RNAi-uninterfered HS-5 cells were co-cul-tured with mouse HSCs after 3 days of osteogenic induction differentiation),and blank group(Mouse HSCs were cultured alone without co-culturing with HS-5 cells).Results After radiotherapy,the hematological parameters of mice in each group showed a decreasing trend initially,and then increased.One week after radiotherapy,there were significant differences in platelet and white blood cell levels among the three groups(experimental group>control group>blank group,all P<0.05).Two weeks after radiotherapy,there were significant differences in the percentage of adipocyte vacuole area among the three groups(experi-mental group<control group<blank group,all P<0.05).Pearson correlation analysis showed a negative correlation between hematological parameters and PPARγ expression levels(all P<0.05),as well as a negative correlation between hematological parameters and the percentage of adipocyte vacuole area(all P<0.05).After in vitro osteogenic/adipogenic induction differenti-ation,compared to the control group,the experimental group showed a significantly lower proportion of orange-red cells and a significantly higher proportion of red calcium nodules.After 3 days of osteogenic induction differentiation,the experimental group,positive control group,and negative control group of human bone marrow stromal cells were co-cultured with mouse HSCs,while HSCs were solely cultured in the blank group.The results showed that after 24 h,48 h and 72 h of co-culture,the A values of mouse HSC cells in the experimental group and positive control group were higher than those in the negative control group and blank group(all P<0.05).Conclusion Silencing of the PPARγ gene in HS-5 cells implanted into bone marrow-sup-pressed mice contributes to enhanced hematopoietic function in mice.After interference and silencing of the PPARγ gene,the os-teogenic differentiation ability of HS-5 cells is enhanced,while the adipogenic differentiation ability is weakened.Furthermore,osteogenic-induced HS-5 cells can further enhance the proliferation capacity of mouse HSCs.

peroxisome proliferator activated receptor-gammahuman bone marrow stromal cellmyelosuppression micehematopoietic functionosteogenic/adipogenic differentiation

王雪梅、黄纯兰、周铁军、李玉娇、魏梦宇、陈燕、陈晓敏、王万玥

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西南医科大学附属医院血液内科,泸州 646099

西南医科大学附属医院干细胞实验室,泸州 646099

西南医科大学附属医院病理科,泸州 646099

过氧化物酶体增殖激活受体γ 人骨髓基质细胞 骨髓抑制小鼠 造血功能 成骨/成脂分化

四川省科技计划项目四川省泸州市科技计划项目

2020YJ03392019-SYF-36

2024

华中科技大学学报(医学版)
华中科技大学

华中科技大学学报(医学版)

CSTPCD北大核心
影响因子:1.443
ISSN:1672-0741
年,卷(期):2024.53(1)
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