Department of Surgery, University of Pittsburgh Medical Center, PA (L.T., B.X., E.A., R.F., R.I.M.A., U.S.).
University of Nebraska Medical Center Department of Surgery and the VA Research Service, VA Nebraska-Western Iowa Health Care System (I.I.P., G.P.C.).
Arterioscler Thromb Vasc Biol. 2023 Oct;43(10):2023-2029. doi: 10.1161/ATVBAHA.123.319518. Epub 2023 Sep 7.
We hypothesized that transcriptomic profiling of muscle satellite cells in peripheral artery disease (PAD) would identify damage-related pathways contributing to skeletal muscle myopathy. We identified a potential role for ferroptosis-a form of programmed lytic cell death by iron-mediated lipid peroxidation-as one such pathway. Ferroptosis promotes myopathy in ischemic cardiac muscle but has an unknown role in PAD.
Muscle satellite cells from donors with PAD were obtained during surgery. cDNA libraries were processed for single-cell RNA sequencing using the 10X Genomics platform. Protein expression was confirmed based on pathways inferred by transcriptomic analysis.
Unsupervised cluster analysis of over 25 000 cells aggregated from 8 donor samples yielded distinct cell populations grouped by a shared unique transcriptional fingerprint. Quiescent cells were diminished in ischemic muscle while myofibroblasts and apoptotic cells were prominent. Differential gene expression demonstrated a surprising increase in genes associated with iron transport and oxidative stress and a decrease in GPX4 (glutathione peroxidase 4) in ischemic PAD-derived cells. Release of the danger signal HMGB1 (high mobility group box-1) correlated with ferroptotic markers including surface transferrin receptor and were higher in ischemia. Furthermore, lipid peroxidation in muscle satellite cells was modulated by ferrostatin, a ferroptosis inhibitor. Histology confirmed iron deposition and lipofuscin, an inducer of ferroptosis in PAD-affected muscle.
This report presents a novel finding that genes known to be involved in ferroptosis are differentially expressed in human skeletal muscle affected by PAD. Targeting ferroptosis may be a novel therapeutic strategy to reduce PAD myopathy.
我们假设,对周围动脉疾病(PAD)中的肌肉卫星细胞进行转录组分析,将鉴定出与导致骨骼肌肌病相关的损伤途径。我们发现铁介导的脂质过氧化程序性裂解细胞死亡形式的铁死亡可能是这样的途径之一。铁死亡促进缺血性心肌肌病,但在 PAD 中的作用尚不清楚。
在手术期间从 PAD 供体中获得肌肉卫星细胞。使用 10X Genomics 平台对 cDNA 文库进行单细胞 RNA 测序处理。根据转录组分析推断的途径,确认蛋白质表达。
对来自 8 个供体样本的超过 25000 个细胞的无监督聚类分析聚集为不同的细胞群,这些细胞群由共同的独特转录特征分组。缺血性肌肉中的静止细胞减少,而肌成纤维细胞和凋亡细胞明显增多。差异基因表达显示与铁转运和氧化应激相关的基因显著增加,而缺血性 PAD 衍生细胞中的 GPX4(谷胱甘肽过氧化物酶 4)减少。危险信号 HMGB1(高迁移率族蛋白 B1)的释放与铁死亡标记物相关,包括表面转铁蛋白受体,在缺血时更高。此外,肌肉卫星细胞中的脂质过氧化作用可通过铁死亡抑制剂 ferrostatin 调节。组织学证实铁沉积和脂褐素(铁死亡的诱导剂)在 PAD 相关肌肉中。
本报告提出了一个新的发现,即已知参与铁死亡的基因在受 PAD 影响的人类骨骼肌中表达存在差异。靶向铁死亡可能是减少 PAD 肌病的一种新的治疗策略。