High molecular weight kininogen contributes to early mortality and kidney dysfunction in a mouse model of sickle cell disease

高分子量激肽原导致镰状细胞病小鼠模型的早期死亡和肾功能障碍

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作者:Erica M Sparkenbaugh, Malgorzata Kasztan, Michael W Henderson, Patrick Ellsworth, Parker Ross Davis, Kathryn J Wilson, Brandi Reeves, Nigel S Key, Sidney Strickland, Keith McCrae, David M Pollock, Rafal Pawlinski

Background

Sickle cell disease (SCD) is characterized by chronic hemolytic anemia, vaso-occlusive crises, chronic inflammation, and activation of coagulation. The clinical complications such as painful crisis, stroke, pulmonary hypertension, nephropathy and venous thromboembolism lead to cumulative organ damage and premature death. High molecular weight kininogen (HK) is a central cofactor for the kallikrein-kinin and intrinsic coagulation pathways, which contributes to both coagulation and inflammation.

Conclusions

We found elevated plasma levels of cleaved HK in sickle patients compared to healthy controls, suggesting ongoing HK activation in SCD. We used bone marrow transplantation to generate wild type and sickle cell mice on a HK-deficient background. We found that short-term HK deficiency attenuated thrombin generation and inflammation in sickle mice at steady state, which was independent of bradykinin signaling. Moreover, long-term HK deficiency attenuates kidney injury, reduces chronic inflammation, and ultimately improves survival of sickle mice.

Methods

We evaluated the role of HK in the Townes mouse model of SCD.

Objective

We hypothesize that HK contributes to the hypercoagulable and pro-inflammatory state that causes end-organ damage and early mortality in sickle mice.

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