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探索脂联素1作为治疗杜氏肌营养不良症的一个有前景的治疗靶点。

Exploring lipin1 as a promising therapeutic target for the treatment of Duchenne muscular dystrophy.

作者信息

Jama Abdulrahman, Alshudukhi Abdullah A, Burke Steve, Dong Lixin, Kamau John Karanja, Morris Brooklyn, Alkhomsi Ibrahim A, Finck Brian N, Voss Andrew Alvin, Ren Hongmei

机构信息

Department of Biochemistry and Molecular Biology, Wright State University, 3640 Colonel Glenn Hwy., Dayton, OH, 45435-0001, USA.

Department of Medical Laboratories, College of Applied Medical Sciences, Qassim University, Buraydah, Saudi Arabia.

出版信息

J Transl Med. 2024 Jul 16;22(1):664. doi: 10.1186/s12967-024-05494-z.

Abstract

BACKGROUND

Duchenne muscular dystrophy (DMD) is a progressive and devastating muscle disease, resulting from the absence of dystrophin. This leads to cell membrane instability, susceptibility to contraction-induced muscle damage, subsequent muscle degeneration, and eventually disability and early death of patients. Currently, there is no cure for DMD. Our recent studies identified that lipin1 plays a critical role in maintaining myofiber stability and integrity. However, lipin1 gene expression levels are dramatically reduced in the skeletal muscles of DMD patients and mdx mice.

METHODS

To identify whether increased lipin1 expression could prevent dystrophic pathology, we employed unique muscle-specific mdx:lipin1 transgenic (mdx:lipin1) mice in which lipin1 was restored in the dystrophic muscle of mdx mice, intramuscular gene delivery, as well as cell culture system.

RESULTS

We found that increased lipin1 expression suppressed muscle degeneration and inflammation, reduced fibrosis, strengthened membrane integrity, and resulted in improved muscle contractile and lengthening force, and muscle performance in mdx:lipin1 compared to mdx mice. To confirm the role of lipin1 in dystrophic muscle, we then administered AAV1-lipin1 via intramuscular injection in mdx mice. Consistently, lipin1 restoration inhibited myofiber necroptosis and lessened muscle degeneration. Using a cell culture system, we further found that differentiated primary mdx myoblasts had elevated expression levels of necroptotic markers and medium creatine kinase (CK), which could be a result of sarcolemmal damage. Most importantly, increased lipin1 expression levels in differentiated myoblasts from mdx:lipin1 mice substantially inhibited the elevation of necroptotic markers and medium CK levels.

CONCLUSIONS

Overall, our data suggest that lipin1 is a promising therapeutic target for the treatment of dystrophic muscles.

摘要

背景

杜氏肌营养不良症(DMD)是一种进行性且具有毁灭性的肌肉疾病,由肌营养不良蛋白缺失所致。这会导致细胞膜不稳定、易受收缩诱导的肌肉损伤、随后的肌肉退化,最终导致患者残疾和早亡。目前,DMD尚无治愈方法。我们最近的研究发现,脂联素1在维持肌纤维稳定性和完整性方面起着关键作用。然而,在DMD患者和mdx小鼠的骨骼肌中,脂联素1基因表达水平显著降低。

方法

为了确定增加脂联素1表达是否能预防营养不良性病理变化,我们使用了独特的肌肉特异性mdx:脂联素1转基因(mdx:脂联素1)小鼠,其中脂联素1在mdx小鼠的营养不良性肌肉中得以恢复,采用了肌肉内基因递送以及细胞培养系统。

结果

我们发现,与mdx小鼠相比,增加脂联素1表达可抑制mdx:脂联素1小鼠的肌肉退化和炎症,减少纤维化,增强膜完整性,并改善肌肉收缩力和伸展力以及肌肉性能。为了证实脂联素1在营养不良性肌肉中的作用,我们随后通过肌肉内注射向mdx小鼠施用腺相关病毒1-脂联素1。一致的是,脂联素1的恢复抑制了肌纤维坏死性凋亡并减轻了肌肉退化。使用细胞培养系统,我们进一步发现,分化的原代mdx成肌细胞中坏死性凋亡标志物和培养基肌酸激酶(CK)的表达水平升高,这可能是肌膜损伤的结果。最重要的是,mdx:脂联素1小鼠分化的成肌细胞中脂联素1表达水平的增加显著抑制了坏死性凋亡标志物和培养基CK水平的升高。

结论

总体而言,我们的数据表明脂联素1是治疗营养不良性肌肉的一个有前景的治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a4d/11253568/c8d1fefc8bf1/12967_2024_5494_Fig1_HTML.jpg

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