Suppr超能文献

超声靶向破坏载 Sirt3 阳离子微泡对病理性心肌肥厚大动物模型的心脏保护作用。

Cardioprotective effect of ultrasound-targeted destruction of Sirt3-loaded cationic microbubbles in a large animal model of pathological cardiac hypertrophy.

机构信息

Department of Cardiovascular Surgery, The Second Affiliated Hospital of Harbin Medical University, Harbin 150081, China; Future Medical Laboratory, The Second Affiliated Hospital of Harbin Medical University, Harbin 150081, China.

Future Medical Laboratory, The Second Affiliated Hospital of Harbin Medical University, Harbin 150081, China.

出版信息

Acta Biomater. 2023 Jul 1;164:604-625. doi: 10.1016/j.actbio.2023.04.020. Epub 2023 Apr 18.

Abstract

Pathological cardiac hypertrophy occurs in response to numerous increased afterload stimuli and precedes irreversible heart failure (HF). Therefore, therapies that ameliorate pathological cardiac hypertrophy are urgently required. Sirtuin 3 (Sirt3) is a main member of histone deacetylase class III and is a crucial anti-oxidative stress agent. Therapeutically enhancing the Sirt3 transfection efficiency in the heart would broaden the potential clinical application of Sirt3. Ultrasound-targeted microbubble destruction (UTMD) is a prospective, noninvasive, repeatable, and targeted gene delivery technique. In the present study, we explored the potential and safety of UTMD as a delivery tool for Sirt3 in hypertrophic heart tissues using adult male Bama miniature pigs. Pigs were subjected to ear vein delivery of human Sirt3 together with UTMD of cationic microbubbles (CMBs). Fluorescence imaging, western blotting, and quantitative real-time PCR revealed that the targeted destruction of ultrasonic CMBs in cardiac tissues greatly boosted Sirt3 delivery. Overexpression of Sirt3 ameliorated oxidative stress and partially improved the diastolic function and prevented the apoptosis and profibrotic response. Lastly, our data revealed that Sirt3 may regulate the potential transcription of catalase and MnSOD through Foxo3a. Combining the advantages of ultrasound CMBs with preclinical hypertrophy large animal models for gene delivery, we established a classical hypertrophy model as well as a strategy for the targeted delivery of genes to hypertrophic heart tissues. Since oxidative stress, fibrosis and apoptosis are indispensable in the evolution of cardiac hypertrophy and heart failure, our findings suggest that Sirt3 is a promising therapeutic option for these diseases. STATEMENT OF SIGNIFICANCE: Pathological cardiac hypertrophy is a central prepathology of heart failure and is seen to eventually precede it. Feasible targets that may prevent or reverse disease progression are scarce and urgently needed. In this study, we developed surface-filled lipid octafluoropropane gas core cationic microbubbles that could target the release of human Sirt3 reactivating the endogenous Sirt3 in hypertrophic hearts and protect against oxidative stress in a pig model of cardiac hypertrophy induced by aortic banding. Sirt3-CMBs may enhance cardiac diastolic function and ameliorate fibrosis and apoptosis. Our work provides a classical cationic lipid-based, UTMD-mediated Sirt3 delivery system for the treatment of Sirt3 in patients with established cardiac hypertrophy, as well as a promising therapeutic target to combat pathological cardiac hypertrophy.

摘要

病理性心肌肥厚是对多种后负荷刺激的反应,发生在不可逆性心力衰竭(HF)之前。因此,迫切需要治疗可以改善病理性心肌肥厚的药物。Sirtuin 3(Sirt3)是组蛋白去乙酰化酶 III 类的主要成员,是一种重要的抗氧化应激因子。在心脏中治疗性地增强 Sirt3 的转染效率将拓宽 Sirt3 的潜在临床应用。超声靶向微泡破坏(UTMD)是一种有前途的、非侵入性的、可重复的和靶向的基因传递技术。在本研究中,我们使用成年雄性巴马小型猪探索了 UTMD 作为肥厚心肌组织中 Sirt3 传递工具的潜力和安全性。猪通过耳静脉给予人 Sirt3 并进行阳离子微泡(CMB)的 UTMD。荧光成像、western blot 和实时定量 PCR 显示,超声 CMB 在心脏组织中的靶向破坏极大地促进了 Sirt3 的传递。Sirt3 的过表达减轻了氧化应激,部分改善了舒张功能,并防止了细胞凋亡和促纤维化反应。最后,我们的数据表明,Sirt3 可能通过 Foxo3a 调节过氧化氢酶和 MnSOD 的潜在转录。将超声 CMB 的优势与临床前肥厚大型动物模型的基因传递相结合,我们建立了经典的肥厚模型和靶向肥厚心肌组织基因传递的策略。由于氧化应激、纤维化和细胞凋亡在心肌肥厚和心力衰竭的演变中不可或缺,我们的研究结果表明,Sirt3 是这些疾病的一种很有前途的治疗选择。

意义声明

病理性心肌肥厚是心力衰竭的中心前病理学,并且最终会先于心力衰竭发生。预防或逆转疾病进展的可行靶点稀缺,迫切需要。在这项研究中,我们开发了表面填充脂质八氟丙烷气体内核阳离子微泡,可以靶向释放人 Sirt3,从而在由主动脉缩窄诱导的猪心肌肥厚模型中激活内源性 Sirt3,抵抗氧化应激。Sirt3-CMB 可能增强心脏舒张功能,并改善纤维化和细胞凋亡。我们的工作为治疗已建立的心肌肥厚患者提供了一种经典的阳离子脂质体、UTMD 介导的 Sirt3 传递系统,以及一种有前途的治疗病理性心肌肥厚的治疗靶点。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验