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用于研究血液透析通路相关肢体病理生理学的小鼠髂动静脉内瘘模型的建立。

Development of a murine iliac arteriovenous fistula model for examination of hemodialysis access-related limb pathophysiology.

作者信息

Kim Kyoungrae, Anderson Erik M, Martin Andrew J, Hu Qiongyao, Cort Tomas A, Harland Kenneth C, O'Malley Kerri A, Lu Guanyi, Berceli Scott A, Ryan Terence E, Scali Salvatore T

机构信息

Department of Applied Physiology and Kinesiology, University of Florida, Gainesville, Fla.

Division of Vascular Surgery and Endovascular Therapy, University of Florida, Gainesville, Fla.

出版信息

JVS Vasc Sci. 2021 Oct 6;2:247-259. doi: 10.1016/j.jvssci.2021.09.022. eCollection 2021.

Abstract

OBJECTIVE

Hemodialysis access-related hand dysfunction is a common clinical feature of patients with chronic kidney disease (CKD) after arteriovenous fistula (AVF) placement. The heterogeneity in symptoms and the lack of a predictive association with changes in hemodynamic alterations precipitated by the AVF suggest that other factors are involved in the mechanisms responsible for causing hand and limb dysfunction postoperatively. To the best of our knowledge, no suitable animal models have provided a platform for performing preclinical experiments designed to elucidate the biologic drivers of access-related hand dysfunction. Therefore, our objective was to develop a novel murine AVF model that could be used to study dialysis access-related limb dysfunction.

METHODS

Male 8-week-old C57BL/6J mice (n = 15/group) were exposed to either an adenine-supplemented diet to induce CKD or casein-based chow (control). Four weeks after the diet intervention, the mice were randomly assigned to receive an iliac AVF (n = 10/group) or sham surgery (n = 5/group) on the left hindlimb. The mice were sacrificed 2 weeks after surgery, and AVF specimens and hindlimb skeletal muscles were collected for further analysis.

RESULTS

Before AVF or sham surgery, the glomerular filtration rates were significantly reduced and the blood urea nitrogen levels were significantly elevated in the CKD groups compared with the controls ( < .05). AVF surgery was associated with an ∼80% patency rate among the survivors (four control and three CKD mice died postoperatively). Patency was verified by changes in hemodynamics using Doppler ultrasound imaging and altered histologic morphology. Compared with sham surgery, AVF surgery reduced ipsilateral hindlimb perfusion to the tibialis anterior muscle (20%-40%) and paw (40%-50%), which remained stable until euthanasia. Analysis of gastrocnemius muscle mitochondrial respiratory function uncovered a significant decrease (40%-50%) in mitochondrial function in the AVF mice. No changes were found in the muscle mass, myofiber cross-sectional area, or centrally nucleated fiber proportion in the extensor digitorum longus and soleus muscles between the sham and AVF mice.

CONCLUSIONS

The results from the present study have demonstrated that iliac AVF formation is a practical animal model that facilitates examination of hemodialysis access-related limb dysfunction. AVF surgery produced the expected hemodynamic changes, and evaluation of the limb muscle revealed a substantial mitochondrial impairment that was present without changes in muscle size.

摘要

目的

血液透析通路相关手部功能障碍是慢性肾脏病(CKD)患者动静脉内瘘(AVF)置入术后常见的临床特征。症状的异质性以及与AVF引起的血流动力学改变缺乏预测性关联,提示其他因素参与了术后手部和肢体功能障碍的发病机制。据我们所知,尚无合适的动物模型为开展旨在阐明通路相关手部功能障碍生物学驱动因素的临床前实验提供平台。因此,我们的目标是建立一种新型小鼠AVF模型,用于研究透析通路相关肢体功能障碍。

方法

将8周龄雄性C57BL/6J小鼠(每组n = 15只)分为两组,分别给予含腺嘌呤饮食以诱导CKD或酪蛋白饲料(对照组)。饮食干预4周后,将小鼠随机分为两组,分别接受左后肢髂动静脉内瘘手术(每组n = 10只)或假手术(每组n = 5只)。术后2周处死小鼠,收集AVF标本和后肢骨骼肌进行进一步分析。

结果

与对照组相比,CKD组在AVF或假手术前肾小球滤过率显著降低,血尿素氮水平显著升高(P <.05)。AVF手术幸存者的通畅率约为80%(4只对照小鼠和3只CKD小鼠术后死亡)。通过多普勒超声成像检测血流动力学变化及组织形态学改变证实了内瘘通畅。与假手术相比,AVF手术使同侧后肢胫前肌灌注减少20% - 40%,爪部灌注减少40% - 50%,直至安乐死时保持稳定。对腓肠肌线粒体呼吸功能分析发现,AVF小鼠线粒体功能显著降低(40% - 50%)。假手术组和AVF组小鼠的趾长伸肌和比目鱼肌的肌肉质量、肌纤维横截面积或中心核纤维比例均无变化。

结论

本研究结果表明,髂动静脉内瘘形成是一种实用的动物模型,有助于研究血液透析通路相关肢体功能障碍。AVF手术产生了预期的血流动力学变化,对肢体肌肉的评估显示存在明显的线粒体损伤,而肌肉大小无变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14f7/8591416/992e88c404c5/fx1.jpg

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