Ischemic and pharmacological preconditioning in Girardi cells and C2C12 myotubes induce mitochondrial uncoupling

Citation
J. Minners et al., Ischemic and pharmacological preconditioning in Girardi cells and C2C12 myotubes induce mitochondrial uncoupling, CIRCUL RES, 89(9), 2001, pp. 787-792
Citations number
38
Categorie Soggetti
Cardiovascular & Hematology Research
Journal title
CIRCULATION RESEARCH
ISSN journal
00097330 → ACNP
Volume
89
Issue
9
Year of publication
2001
Pages
787 - 792
Database
ISI
SICI code
0009-7330(20011026)89:9<787:IAPPIG>2.0.ZU;2-I
Abstract
Pharmacological uncoupling of mitochondrial oxidation from phosphorylation promotes preconditioning-like cardioprotection in the isolated rat heart. W e hypothesized that modest mitochondrial uncoupling may be a critical cellu lar event in orchestrating preconditioning. Human-derived Girardi cells and murine C2C12 skeletal myotubes were preconditioned using simulated ischemi a, adenosine, and diazoxide. Cell viability after 6 hours of simulated isch emia was measured using lactate dehydrogenase release and propidium iodide uptake. Mitochondrial inner membrane potential (Delta Psim) was investigate d by flow cytometry, cellular ATP by recombinant firefly-luciferase biolumi nescence, and cellular oxygen consumption using oximetry. Preconditioning e nhanced cell viability with attenuation of lactate dehydrogenase release (g reater than or equal to 30%, P <0.05 versus ischemic controls) and a reduct ion in propidium iodide uptake by greater than or equal to 26% versus ische mic controls after simulated ischemia in both cell lines. In Girardi cells, preconditioning induced the following phenotype immediately before index i schemia: (1) decreased Delta Psim (JC-1: simulated ischemia 90 +/-3%, adeno sine 82 +/-7%, diazoxide 87 +/-4%, versus control 100%, P <0.05); (2) atten uation in cellular ATP levels (CTL 0.21 +/-0.03 nmol/L ATP/mug protein, sim ulated ischemia 0.12 +/-0.02, adenosine 0.15 +/-0.02, diazoxide 0.11 +/-0.0 2, P <0.05); and (3) enhanced cellular oxygen consumption (control 2.3 +/-0 .1 nmol/L oxygen/min/1X10(6) cells, simulated ischemia 3.1 +/-0.1, adenosin e 3.1 +/-0.3, diazoxide 2.6 +/-0.2, P <0.05). Cytoprotection, mitochondrial depolarization, and enhanced oxygen consumption were attenuated by the put ative mitochondrial K-ATP-channel antagonist 5-hydroxydecanoate. The uncoup led phenotype in response to preconditioning was similarly observed in C2C1 2 myotubes. The present study suggests that modest mitochondrial uncoupling represents a unifying cellular response which may be important in directin g preconditioning-mediated cytoprotection.