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Mitochondrial Transplantation

医学 移植 体内 肝移植 线粒体 炎症 再灌注损伤 转基因小鼠 缺血 病理 同种异体移植 药理学 转基因 免疫学 内科学 生物 细胞生物学 生物化学 生物技术 基因
作者
Avinash Naraiah Mukkala,Bruna Araújo David,Menachem Ailenberg,Jady Liang,Chirag M. Vaswani,Danielle Karakas,Rachel Goldfarb,William Barbour,Avishai Gasner,Ruoxian Scarlet Wu,Raluca Petrut,Mirjana Jerkić,Ana C. Andreazza,Claúdia C. dos Santos,Heyu Ni,Haibo Zhang,András Kapùs,Paul Kubes,Ori D. Rotstein
出处
期刊:Annals of Surgery [Lippincott Williams & Wilkins]
卷期号:281 (6): 1032-1047 被引量:11
标识
DOI:10.1097/sla.0000000000006655
摘要

OBJECTIVE: To investigate the hepatoprotective effects of mitochondrial transplantation (MTx) in a murine liver ischemia/reperfusion (I/R) model. BACKGROUND: Sequential liver ischemia, followed by reperfusion (I/R), is a pathophysiological process underlying hepatocellular injury in a number of clinical contexts, such as hemorrhagic shock/resuscitation, major elective liver surgery, and organ transplantation. A unifying pathogenic consequence of I/R is mitochondrial dysfunction. Restoration of mitochondria through transplantation (MTx) has emerged as a potential therapeutic in I/R. However, its role in liver I/R and its mechanisms of action remain poorly defined. METHODS: We investigated the hepatoprotective effects of MTx in an in vivo mouse model of liver I/R and used in vivo imaging and various knockout and transgenic mouse models to determine the mechanism of protection. RESULTS: We found that I/R-induced hepatocellular injury was prevented by MTx, as measured by plasma ALT, AST, and liver histology. In addition, I/R-induced pro-inflammatory cytokine release (IL-6, TNFα) was dampened by MTx, and anti-inflammatory IL-10 was enhanced. Moreover, MTx lowered neutrophil infiltration into both the liver sinusoids and lung bronchoalveolar lavage fluid, suggesting a local and distant reduction in inflammation. Using in vivo intravital imaging, we found that I/R-subjected Kupffer cells (KCs), rapidly sequestered transplanted mitochondria, and acidified mitochondria within lysosomal compartments. To specifically interrogate the role of KCs, we depleted KCs using the diphtheria toxin-inducible Clec4f/iDTR transgenic mouse, then induced I/R, and discovered that KCs are necessary for the beneficial effects of MTx. Finally, we induced I/R in the complement receptor of the immunoglobulin (CRIg) superfamily knockout mice and found that CRIg was required for mitochondria capture by KCs and mitochondria-mediated hepatoprotection. CONCLUSIONS: In this study, we demonstrated that CRIg-dependent capture of mitochondria by I/R-subjected KCs is a hepatoprotective mechanism in vivo . These data progress knowledge on the mechanisms of MTx and open new avenues for clinical translation.
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