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血红素加氧酶可促进小鼠严重后肢缺血后的祖细胞动员、新血管形成和功能恢复。

Haeme oxygenase promotes progenitor cell mobilization, neovascularization, and functional recovery after critical hindlimb ischaemia in mice.

作者信息

Tongers Jörn, Knapp Julia-Marie, Korf Mortimer, Kempf Tibor, Limbourg Anne, Limbourg Florian P, Li Zhixiong, Fraccarollo Daniela, Bauersachs Johann, Han Xiaoqiang, Drexler Helmut, Fiedler Beate, Wollert Kai C

机构信息

Department of Cardiology and Angiology, Hannover University Medical School, 30625 Hannover, Germany.

出版信息

Cardiovasc Res. 2008 May 1;78(2):294-300. doi: 10.1093/cvr/cvm107. Epub 2007 Dec 18.

Abstract

AIMS

Neovascularization is an important element of long-term functional recovery during chronic ischaemia. We postulated that haeme oxygenase (HO) is required for progenitor cell recruitment, neovascularization, and blood flow recovery after critical hindlimb ischaemia (HLI).

METHODS AND RESULTS

The femoral artery was ligated in FVB/N mice proximal to its superficial and deep branches. Blood flow in the ischaemic hindlimb was determined by laser Doppler perfusion imaging. Capillary density was measured by isolectin staining, and mobilization of Sca-1(+)/Kdr(+) progenitor cells by FACS analysis. Progenitor cell recruitment to the ischaemic hindlimb was assessed after Tie2-lacZ transgenic bone marrow transplantation. Blood flow recovery after femoral artery ligation was significantly blunted in mice treated with the HO inhibitor tin protoporphyrin-IX (25 mg/kg i.p., every other day). HO-inhibited mice developed more pronounced limb necrosis, associated with impaired hindlimb motor function. Capillary density in the ischaemic hindlimb and mobilization of Sca-1(+)/Kdr(+) progenitor cells were significantly reduced after HO inhibition. After transplantation of Tie2-lacZ transgenic bone marrow cells into lethally irradiated wild-type mice, fewer LacZ(+) cells were detected in the ischaemic hindlimb muscle of HO-inhibited mice. Mechanistically, HO inhibition prevented the establishment of a stromal cell-derived factor-1 gradient for progenitor cell mobilization between the ischaemic hindlimb and bone marrow.

CONCLUSION

HOs are required for progenitor cell recruitment, neovascularization, and functional recovery after HLI.

摘要

目的

新生血管形成是慢性缺血期间长期功能恢复的重要因素。我们推测,血红素加氧酶(HO)是严重后肢缺血(HLI)后祖细胞募集、新生血管形成和血流恢复所必需的。

方法与结果

在FVB/N小鼠股动脉的浅支和深支近端进行结扎。通过激光多普勒灌注成像测定缺血后肢的血流。通过异凝集素染色测量毛细血管密度,并通过流式细胞术分析Sca-1(+)/Kdr(+)祖细胞的动员情况。在Tie2-lacZ转基因骨髓移植后评估祖细胞向缺血后肢的募集情况。用HO抑制剂锡原卟啉-IX(25mg/kg腹腔注射,隔日一次)处理的小鼠,股动脉结扎后的血流恢复明显减弱。HO抑制的小鼠出现更明显的肢体坏死,伴有后肢运动功能受损。HO抑制后,缺血后肢的毛细血管密度和Sca-1(+)/Kdr(+)祖细胞的动员明显减少。将Tie2-lacZ转基因骨髓细胞移植到经致死剂量照射的野生型小鼠后,在HO抑制的小鼠缺血后肢肌肉中检测到的LacZ(+)细胞较少。从机制上讲,HO抑制阻止了在缺血后肢和骨髓之间建立用于祖细胞动员的基质细胞衍生因子-1梯度。

结论

HO是HLI后祖细胞募集、新生血管形成和功能恢复所必需的。

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