Single-Cell Mapping of Large and Small Arteries During Hypertensive Aging.

IF 4.3 2区 医学 Q1 GERIATRICS & GERONTOLOGY
Jun Cheng, Hong Wu, Cheng Xie, Yangyan He, Rong Mou, Hongkun Zhang, Yan Yang, Qingbo Xu
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Abstract

Vascular aging is directly related to several major diseases including clinical primary hypertension. Conversely, elevated blood pressure itself accelerates vascular senescence. However, the interaction between vascular aging and hypertension has not been characterized during hypertensive aging. To depict the interconnectedness of complex mechanisms between hypertension and aging, we performed single-cell RNA sequencing of aorta, femoral and mesentery arteries, respectively, from male Wistar Kyoto rats and male spontaneously hypertensive rats aging 16 or 72 weeks. We integrated 12 data sets to map the blood vessels of senile hypertension from 3 perspective: vascular aging, hypertension, and vascular type. We found that aging and hypertension independently exerted a significant impact on the alteration of cellular composition and artery remodeling, even greater when superimposed. Consistently, smooth muscle cells (SMCs) underwent phenotypic switching from contractile toward synthetic, apoptotic, and senescent SMCs with aging/hypertension. Furthermore, we identified 3 subclusters of Spp1high, encoding protein osteopontin (OPN), synthetic SMCs, Spp1high matrix activated fibroblasts, and Spp1high scar-associated macrophage involved in hypertensive aging. Spp1high scar-associated macrophage enriched for reactive oxygen species metabolic process and cell migration-associated function. Cell-cell communication analysis revealed Spp1-Cd44 receptor pairing was markedly aggravated in the hypertensive aging condition. Importantly, the concentration of serum OPN significantly potentiated in aged hypertensive patients compared with the normal group. Thus, we provide a comprehensive cell atlas to systematically resolve the cellular diversity and dynamic cellular communication changes of the vessel wall during hypertensive aging, identifying a protein marker OPN as a potential regulator of vascular remodeling during hypertensive aging.

单细胞绘制高血压衰老过程中的大小动脉图谱
血管衰老与包括临床原发性高血压在内的几种主要疾病直接相关。相反,血压升高本身也会加速血管衰老。然而,在高血压衰老过程中,血管衰老与高血压之间的相互作用还没有定性。为了描绘高血压与衰老之间复杂机制的相互联系,我们分别对雄性 Wistar Kyoto 大鼠和雄性自发性高血压大鼠 16 或 72 周的主动脉、股动脉和肠系膜动脉进行了单细胞 RNA 测序。我们整合了 12 组数据,从血管老化、高血压和血管类型 3 个角度绘制了老年高血压的血管图谱。我们发现,衰老和高血压分别对细胞组成的改变和动脉重塑产生重大影响,当两者叠加时影响更大。一致的是,平滑肌细胞(SMC)的表型随着老化/高血压从收缩型向合成型、凋亡型和衰老型SMC转变。此外,我们还发现了编码蛋白骨生成素(OPN)的 Spp1high、合成 SMC、Spp1high 基质激活成纤维细胞和 Spp1high 疤痕相关巨噬细胞这 3 个亚群参与了高血压衰老。Spp1高的瘢痕相关巨噬细胞富含活性氧代谢过程和细胞迁移相关功能。细胞-细胞通讯分析表明,Spp1-Cd44受体配对在高血压衰老状态下明显加剧。重要的是,与正常组相比,老年高血压患者血清 OPN 的浓度明显增高。因此,我们提供了一个全面的细胞图谱,系统地解析了高血压衰老过程中血管壁的细胞多样性和动态细胞通讯变化,并确定了蛋白标志物 OPN 是高血压衰老过程中血管重塑的潜在调节因子。
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来源期刊
CiteScore
10.00
自引率
5.90%
发文量
233
审稿时长
3-8 weeks
期刊介绍: Publishes articles representing the full range of medical sciences pertaining to aging. Appropriate areas include, but are not limited to, basic medical science, clinical epidemiology, clinical research, and health services research for professions such as medicine, dentistry, allied health sciences, and nursing. It publishes articles on research pertinent to human biology and disease.
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