Mitochondrial Transfer Regulates Bioenergetics in Healthy and Chronic Obstructive Pulmonary Disease Airway Smooth Muscle

被引:8
|
作者
Garcia, Julia Frankenberg [1 ]
Rogers, Andrew, V [2 ]
Mak, Judith C. W. [3 ,4 ]
Halayko, Andrew J. [5 ]
Hui, Christopher K. M. [6 ]
Xu, Bingling [6 ]
Chung, Kian Fan [1 ]
Rodriguez, Tristan [1 ]
Michaeloudes, Charalambos [1 ]
Bhavsar, Pankaj K. [1 ]
机构
[1] Imperial Coll London, Natl Heart & Lung Inst, Dovehouse St, London SW3 6LY, England
[2] Guys & St Thomas NHS Trust, Royal Brompton Hosp, London, England
[3] Univ Hong Kong, Dept Med, Hong Kong, Peoples R China
[4] Univ Hong Kong, Dept Pharmacol & Pharm, Hong Kong, Peoples R China
[5] Univ Manitoba, Dept Physiol & Pathophysiol, Winnipeg, MB, Canada
[6] Univ Hong Kong, Shenzhen Hosp, Resp Med, Shenzhen, Peoples R China
基金
英国生物技术与生命科学研究理事会;
关键词
mitochondrial transfer; bioenergetics; COPD; extracellular vesicles; airway smooth muscle cells; STROMAL CELLS; TUNNELING NANOTUBES; TNF-ALPHA; MACROPHAGES; DYSFUNCTION; MODELS; MIRO1;
D O I
10.1165/rcmb.2022-0041OC
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Mitochondrial dysfunction has been reported in chronic obstructive pulmonary disease (COPD). Transfer of mitochondria from mesenchymal stem cells to airway smooth muscle cells (ASMCs) can attenuate oxidative stress-induced mitochondrial damage. It is not known whether mitochondrial transfer can occur between structural cells in the lungs or what role this may have in modulating bioenergetics and cellular function in healthy and COPD airways. Here, we show that ASMCs from both healthy ex-smokers and subjects with COPD can exchange mitochondria, a process that happens, at least partly, via extracellular vesicles. Exposure to cigarette smoke induces mitochondrial dysfunction and leads to an increase in the donation of mitochondria by ASMCs, suggesting that the latter may be a stress response mechanism. Healthy ex-smoker ASMCs that receive mitochondria show increases in mitochondrial biogenesis and respiration and a reduction in cell proliferation, irrespective of whether the mitochondria are transferred from healthy ex-smoker or COPD ASMCs. Our data indicate that mitochondrial transfer between structural cells is a homeostatic mechanism for the regulation of bioenergetics and cellular function within the airways and may represent an endogenous mechanism for reversing the functional consequences of mitochondrial dysfunction in diseases such as COPD.
引用
收藏
页码:471 / 481
页数:11
相关论文
共 50 条
  • [1] Roles of airway smooth muscle dysfunction in chronic obstructive pulmonary disease
    Yan, Furong
    Gao, Hongzhi
    Zhao, Hong
    Bhatia, Madhav
    Zeng, Yiming
    JOURNAL OF TRANSLATIONAL MEDICINE, 2018, 16
  • [2] Roles of airway smooth muscle dysfunction in chronic obstructive pulmonary disease
    Furong Yan
    Hongzhi Gao
    Hong Zhao
    Madhav Bhatia
    Yiming Zeng
    Journal of Translational Medicine, 16
  • [3] Piezo expression and function in airway smooth muscle in chronic obstructive pulmonary disease.
    Migulina, Nataliya
    Borghuis, Theo
    Roos, Ben
    Timens, Wim
    Pabelick, Christina
    Brandsma, Corry-Anke
    Burgess, Janette
    Prakash, Y. S.
    EUROPEAN RESPIRATORY JOURNAL, 2023, 62
  • [4] PHARMACOLOGY OF AIRWAY SMOOTH-MUSCLE IN CHRONIC OBSTRUCTIVE PULMONARY-DISEASE IN ASTHMA
    BLACK, JL
    AMERICAN REVIEW OF RESPIRATORY DISEASE, 1991, 143 (05): : 1177 - 1181
  • [5] Primary Ciliated Airway Smooth Muscle Cells Profile in Chronic Obstructive Pulmonary Disease Patients
    Hatoum, S.
    Belgacemi, R.
    Deslee, G.
    Polette, M.
    Perotin, J.
    Danopoulos, S.
    Al Alam, D.
    Dormoy, V.
    AMERICAN JOURNAL OF RESPIRATORY AND CRITICAL CARE MEDICINE, 2024, 209
  • [6] Oxidative stress-induced mitochondrial dysfunction drives inflammation and airway smooth muscle remodeling in patients with chronic obstructive pulmonary disease
    Wiegman, Coen H.
    Michaeloudes, Charalambos
    Haji, Gulammehdi
    Narang, Priyanka
    Clarke, Colin J.
    Russell, Kirsty E.
    Bao, Wuping
    Pavlidis, Stelios
    Barnes, Peter J.
    Kanerva, Justin
    Bittner, Anton
    Rao, Navin
    Murphy, Michael P.
    Kirkham, Paul A.
    Chung, Kian Fan
    Adcock, Ian M.
    JOURNAL OF ALLERGY AND CLINICAL IMMUNOLOGY, 2015, 136 (03) : 769 - 780
  • [7] Effects of endurance training on skeletal muscle bioenergetics in chronic obstructive pulmonary disease
    Sala, E
    Roca, J
    Marrades, RM
    Alonso, J
    de Suso, JMG
    Moreno, A
    Barberà, JA
    Nadal, J
    de Jover, L
    Rodriguez-Roisin, R
    Wagner, PD
    AMERICAN JOURNAL OF RESPIRATORY AND CRITICAL CARE MEDICINE, 1999, 159 (06) : 1726 - 1734
  • [8] Extracellular Matrix Subtypes Are Altered Within the Airway Smooth Muscle Layer in Chronic Obstructive Pulmonary Disease
    James, A. L.
    Cairncross, A.
    Sanai, F.
    McParland, B. E.
    King, G. G.
    Noble, P. B.
    Elliot, J. G.
    AMERICAN JOURNAL OF RESPIRATORY AND CRITICAL CARE MEDICINE, 2019, 199
  • [9] Reduced heat shock protein 70 in airway smooth muscle in patients with chronic obstructive pulmonary disease
    Xie, Jungang
    Zhao, Jianping
    Xiao, Chengfeng
    Xu, Yongjian
    Yang, Shifang
    Ni, Wang
    EXPERIMENTAL LUNG RESEARCH, 2010, 36 (04) : 219 - 226
  • [10] EXTRACELLULAR MATRIX SUBTYPES ARE ALTERED WITHIN THE AIRWAY SMOOTH MUSCLE LAYER IN CHRONIC OBSTRUCTIVE PULMONARY DISEASE
    Cairncross, A.
    Elliot, J.
    Sannai, F.
    Mcparland, B.
    King, G.
    Noble, P.
    James, A.
    RESPIROLOGY, 2019, 24 : 88 - 88