Mitochondrial transfer between cells: Methodological constraints in cell culture and animal models

被引:27
作者
Berridge, M. V. [1 ]
Herst, P. M. [1 ,2 ]
Rowe, M. R. [2 ,3 ]
Schneider, R. [2 ,3 ]
McConnell, M. J. [3 ]
机构
[1] Malaghan Inst Med Res, Canc Cell Biol, POB 7060, Wellington 6242, New Zealand
[2] Univ Otago, Dept Radiat Therapy, POB 7343, Wellington 6242, New Zealand
[3] Victoria Univ, Sch Biol Sci, POB 600, Wellington 6140, New Zealand
关键词
Intercellular mitochondrial transfer; MitoTracker dyes; Fluorescent mitochondrial proteins; Mitochondrial DNA polymorphisms; rho(0) tumour models; MESENCHYMAL STEM-CELLS; MULTIPOTENT STROMAL CELLS; TUNNELING NANOTUBES; MEMBRANE NANOTUBES; LIVING CELLS; IN-VIVO; DISEASE; MUSCLE; CANCER; PERMEABILITY;
D O I
10.1016/j.ab.2017.11.008
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Interest in the recently discovered phenomenon of mitochondrial transfer between mammalian cells has gained momentum since it was first described in cell culture systems more than a decade ago. Mitochondria-targeting fluorescent dyes have been repurposed and are now widely used in these studies and in acute disease models, sometimes without due consideration of their limitations, while vectors containing mitochondrially-imported fluorescent proteins have complemented the use of mitochondria-targeting dyes. Genetic approaches that use mitochondrial DNA polymorphisms have also been used in some in vitro studies and in tumor models and are particularly useful where mtDNA is damaged or deleted. These approaches can also be used to study the longterm consequences of mitochondrial transfer such as in bone marrow and organ transplantation and in tumour biology where inherent mitochondrial damage is often a key feature. As research on intercellular mitochondrial transfer moves from cell culture into animal models and human diseases it will be important to understand the limitations of the various techniques in order to apply appropriate methodologies to address physiological and pathophysiological conditions.
引用
收藏
页码:75 / 80
页数:6
相关论文
共 72 条
[1]   Miro1 regulates intercellular mitochondrial transport & enhances mesenchymal stem cell rescue efficacy [J].
Ahmad, Tanveer ;
Mukherjee, Shravani ;
Pattnaik, Bijay ;
Kumar, Manish ;
Singh, Suchita ;
Kumar, Manish ;
Rehman, Rakhshinda ;
Tiwari, Brijendra K. ;
Jha, Kumar A. ;
Barhanpurkar, Amruta P. ;
Wani, Mohan R. ;
Roy, Soumya S. ;
Mabalirajan, Ulaganathan ;
Ghosh, Balaram ;
Agrawal, Anurag .
EMBO JOURNAL, 2014, 33 (09) :994-1010
[2]  
Ahn CS, 2015, CANCER METAB, V3, DOI 10.1186/s40170-015-0128-2
[3]   Cellular GFP Toxicity and Immunogenicity: Potential Confounders in in Vivo Cell Tracking Experiments [J].
Ansari, Amir Mehdi ;
Ahmed, A. Karim ;
Matsangos, Aerielle E. ;
Lay, Frank ;
Born, Louis J. ;
Marti, Guy ;
Harmon, John W. ;
Sun, Zhaoli .
STEM CELL REVIEWS AND REPORTS, 2016, 12 (05) :553-559
[4]   Long-Distance Communication between Laryngeal Carcinoma Cells [J].
Antanaviciute, Ieva ;
Rysevaite, Kristina ;
Liutkevicius, Vykintas ;
Marandykina, Alina ;
Rimkute, Lina ;
Sveikatiene, Renata ;
Uloza, Virgilijus ;
Skeberdis, Vytenis Arvydas .
PLOS ONE, 2014, 9 (06)
[5]   Mitochondria Retrograde Signaling and the UPRmt: Where Are We in Mammals? [J].
Arnould, Thierry ;
Michel, Sebastien ;
Renard, Patricia .
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2015, 16 (08) :18224-18251
[6]   Improving the Post-Stroke Therapeutic Potency of Mesenchymal Multipotent Stromal Cells by Cocultivation With Cortical Neurons: The Role of Crosstalk Between Cells [J].
Babenko, Valentina A. ;
Silachev, Denis N. ;
Zorova, Liubava D. ;
Pevzner, Irina B. ;
Khutornenko, Anastasia A. ;
Plotnikov, Egor Y. ;
Sukhikh, Gennady T. ;
Zorov, Dmitry B. .
STEM CELLS TRANSLATIONAL MEDICINE, 2015, 4 (09) :1011-1020
[7]   Horizontal transfer of mitochondria between mammalian cells: beyond co-culture approaches [J].
Berridge, Michael V. ;
McConnell, Melanie J. ;
Grasso, Carole ;
Bajzikova, Martina ;
Kovarova, Jaromira ;
Neuzil, Jiri .
CURRENT OPINION IN GENETICS & DEVELOPMENT, 2016, 38 :75-82
[8]   Targeting mitochondrial permeability in cancer drug development [J].
Berridge, Michael V. ;
Herst, Patries M. ;
Lawen, Alfons .
MOLECULAR NUTRITION & FOOD RESEARCH, 2009, 53 (01) :76-86
[9]   MitoTracker labeling in primary neuronal and astrocytic cultures:: influence of mitochondrial membrane potential and oxidants [J].
Buckman, JF ;
Hernández, H ;
Kress, GJ ;
Votyakova, TV ;
Pal, S ;
Reynolds, IJ .
JOURNAL OF NEUROSCIENCE METHODS, 2001, 104 (02) :165-176
[10]   MitoCeption as a new tool to assess the effects of mesenchymal stem/stromal cell mitochondria on cancer cell metabolism and function [J].
Caicedo, Andres ;
Fritz, Vanessa ;
Brondello, Jean-Marc ;
Ayala, Mickael ;
Dennemont, Indira ;
Abdellaoui, Naoill ;
de Fraipont, Florence ;
Moisan, Anaick ;
Prouteau, Claire Angebault ;
Boukhaddaoui, Hassan ;
Jorgensen, Christian ;
Vignais, Marie-Luce .
SCIENTIFIC REPORTS, 2015, 5