Perivascular adipose tissue-derived stromal cells contribute to vascular remodeling during aging

被引:48
|
作者
Pan, Xiao-Xi [1 ]
Ruan, Cheng-Chao [1 ]
Liu, Xiu-Ying [2 ]
Kong, Ling-Ran [1 ]
Ma, Yu [1 ]
Wu, Qi-Hong [1 ]
Li, Hai-Qing [3 ]
Sun, Yan-Jun [3 ]
Chen, An-Qing [3 ]
Zhao, Qiang [3 ]
Wu, Fang [4 ]
Wang, Xiu-Jie [2 ]
Wang, Ji-Guang [1 ]
Zhu, Ding-Liang [1 ]
Gao, Ping-Jin [1 ]
机构
[1] Shanghai Jiao Tong Univ, Sch Med, Dept Hypertens,State Key Lab Med Genom,Ruijin Hos, Shanghai Key Lab Hypertens,Shanghai Inst Hyperten, Shanghai, Peoples R China
[2] Chinese Acad Sci, Inst Genet & Dev Biol, Key Lab Genet Network Biol, Beijing, Peoples R China
[3] Shanghai Jiao Tong Univ, Sch Med, Ruijin Hosp, Dept Cardiac Surg, Shanghai, Peoples R China
[4] Shanghai Jiao Tong Univ, Sch Med, Ruijin Hosp, Dept Geriatr, Shanghai, Peoples R China
基金
中国国家自然科学基金;
关键词
adipocytes; aging; neointimal hyperplasia; perivascular adipose tissue; perivascular adipose tissue-derived stromal cells; peroxisome proliferator-activated receptor-gamma coactivator-1 alpha; PROGENITOR CELLS; FAT; ADIPONECTIN; ARTERIAL; MECHANISMS; DISEASE; WALL;
D O I
10.1111/acel.12969
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Aging is an independent risk factor for vascular diseases. Perivascular adipose tissue (PVAT), an active component of the vasculature, contributes to vascular dysfunction during aging. Identification of underlying cell types and their changes during aging may provide meaningful insights regarding the clinical relevance of aging-related vascular diseases. Here, we take advantage of single-cell RNA sequence to characterize the resident stromal cells in the PVAT (PVASCs) and identified different clusters between young and aged PVASCs. Bioinformatics analysis revealed decreased endothelial and brown adipogenic differentiation capacities of PVASCs during aging, which contributed to neointimal hyperplasia after perivascular delivery to ligated carotid arteries. Mechanistically, in vitro and in vivo studies both suggested that aging-induced loss of peroxisome proliferator-activated receptor-gamma coactivator-1 alpha (PGC1 alpha) was a key regulator of decreased brown adipogenic differentiation in senescent PVASCs. We further demonstrated the existence of human PVASCs (hPVASCs) and overexpression of PGC1 alpha improved hPVASC delivery-induced vascular remodeling. Our finding emphasizes that differentiation capacities of PVASCs alter during aging and loss of PGC1 alpha in aged PVASCs contributes to vascular remodeling via decreased brown adipogenic differentiation.
引用
收藏
页数:13
相关论文
共 50 条
  • [1] Perivascular Adipose Tissue and Perivascular Adipose Tissue-Derived Extracellular Vesicles: New Insights in Vascular Disease
    Sigdel, Smara
    Udoh, Gideon
    Albalawy, Rakan
    Wang, Jinju
    CELLS, 2024, 13 (16)
  • [2] Role of Perivascular Adipose Tissue-Derived Adiponectin in Vascular Homeostasis
    Sowka, Adrian
    Dobrzyn, Pawel
    CELLS, 2021, 10 (06)
  • [3] Adipose Tissue-Derived Stromal Cells for Wound Healing
    Goodarzi, Parisa
    Alavi-Moghadam, Sepideh
    Sarvari, Masoumeh
    Beik, Akram Tayanloo
    Falahzadeh, Khadijeh
    Aghayan, Hamidreza
    Payab, Moloud
    Larijani, Bagher
    Gilany, Kambiz
    Rahim, Fakher
    Adibi, Hossein
    Arjmand, Babak
    CELL BIOLOGY AND TRANSLATIONAL MEDICINE, VOL 4: STEM CELLS AND CELL BASED STRATEGIES IN REGENERATION, 2018, 1119 : 133 - 149
  • [4] Perivascular adipose tissue-derived extracellular vesicle miR-221-3p mediates vascular remodeling
    Li, Xinzhi
    Ballantyne, Laurel L.
    Yu, Ying
    Funk, Colin D.
    FASEB JOURNAL, 2019, 33 (11): : 12704 - 12722
  • [5] The adipose tissue-derived stromal vascular fraction cells from lipedema patients: Are they different?
    Priglinger, Eleni
    Wurzer, Christoph
    Steffenhagen, Carolin
    Maier, Julia
    Hofer, Victoria
    Peterbauer, Anja
    Nuernberger, Sylvia
    Redl, Heinz
    Wolbank, Susanne
    Sandhofer, Matthias
    CYTOTHERAPY, 2017, 19 (07) : 849 - 860
  • [6] The Role of Perivascular Adipose Tissue-Derived Hydrogen Sulfide in the Control of Vascular Homeostasis
    Mitidieri, Emma
    Turnaturi, Carlotta
    Vanacore, Domenico
    Sorrentino, Raffaella
    Bianca, Roberta d'Emmanuele di Villa
    ANTIOXIDANTS & REDOX SIGNALING, 2022, 37 (1-3) : 84 - 97
  • [7] The role of perivascular adipose tissue-derived sensory nerves in influencing vascular regulation
    Thakore, Pratish
    Brain, Susan D.
    CARDIOVASCULAR RESEARCH, 2017, 113 (08) : 847 - 848
  • [8] ISOLATION AND CULTURE OF ADIPOSE TISSUE-DERIVED STROMAL CELLS FOR TISSUE ENGINEERING
    Kinasiewicz, A.
    Gutowska, M.
    Smietanka, A.
    Noszczyk, B.
    Kawiak, J.
    INTERNATIONAL JOURNAL OF ARTIFICIAL ORGANS, 2008, 31 (07): : 634 - 634
  • [9] Adipose tissue-derived stromal cells express neuronal phenotypes
    杨立业
    刘相名
    孙兵
    惠国桢
    费俭
    郭礼和
    Chinese Medical Journal, 2004, (03)
  • [10] Research progress in Human Adipose Tissue-derived Stromal Cells
    Sun Jianhua
    中国输血杂志, 2010, (S1) : 103 - 104