| Literature DB >> 35498032 |
Kamal Awad1,2, Ahmed Sayed3, Maciej Banach4,5,6.
Abstract
Objective: Effective interventions that might limit myocardial ischemia-reperfusion (I/R) injury are still lacking. Coenzyme Q10 (CoQ10) may exert cardioprotective actions that reduce myocardial I/R injury. We conducted this meta-analysis to assess the potential cardioprotective effect of CoQ10 in animal models of myocardial I/R injury.Entities:
Keywords: animals; coenzyme Q10; myocardial reperfusion injury; pre-clinical; rats; ubiquinone
Year: 2022 PMID: 35498032 PMCID: PMC9053645 DOI: 10.3389/fcvm.2022.857364
Source DB: PubMed Journal: Front Cardiovasc Med ISSN: 2297-055X
Figure 1PRISMA flow diagram of study screening and selection process. MI, myocardial infarction.
Characteristics of the included studies.
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| Birnbaum et al. ( | USA | NZW rabbits (M) | 2 to 3.6 kg |
| Ketamine/xylazine | Blockage of LCX or anterolateral branch of it | 30 min/4 h | Coenzyme Q10 30 mg ( | After 13 min of ischemia | IV infusion |
| Placebo 12 ml ( | ||||||||||
| Coenzyme Q10 30 mg ( | 60 min before ischemia | |||||||||
| Placebo 12 ml ( | ||||||||||
| Khan et al. ( | India | Wistar rats (M) | 200 to 250 gm |
| NR | LCA blockage | 30 min/ 45 min | Coenzyme Q10 1 mg/kg ( | Before I/R injury induction (for 7 days) | NR |
| Lekli et al. ( | USA | Hartley guinea pigs (M) | 350 to 400 gm |
| Sodium pentobarbital | Clamping of atrial and aortic cannulas | 30 min/ 120 min | Coenzyme Q10 5 mg/kg ( | Before I/R injury induction (for 30 days) | Gavaging |
| Liang et al. ( | China | SD rats (M) | 250 (10) gm |
| Sodium pentobarbital | LAD ligation | 45 min/ 72, 24 and 2h | Coenzyme Q10 6 mg/kg/mL ( | 3 days Before I/R induction | IP |
| Soybean oil solvent ( | ||||||||||
| Maulik et al. ( | USA | Yorkshire pigs (M) | 18 to 25 kg |
| Sodium pentobarbital | LAD ligation | 15 min/ 120 min | Coenzyme Q10 5 mg/kg ( | Before I/R injury induction (for 30 days) | NR |
| Verma et al. ( | USA | NZW rabbits | 2.5 to 3.5 kg |
| Ketamine/xylazine | LCA blockage | 30 min/3 h | Coenzyme Q10 liposomes 36 mg ( | Before I/R induction | Intracoronary infusion |
| Empty liposomes ( |
I/R, ischemia reperfusion; NZW, New Zealand White; SD, Sprague Dawley; IV, intravenous; IP, intraperitoneal; NR, not reported; M, males; LCX, left circumflex artery; LCA, left coronary artery; LAD, left anterior descending artery.
In each group according to the different durations of reperfusion.
Summary of the risk of bias assessment of the included studies.
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| Birnbaum et al. ( | Unclear | Low | Unclear | Unclear | Unclear | Unclear | Unclear | Low | Low | Low |
| Khan et al. ( | Unclear | Low | Unclear | Unclear | Unclear | Unclear | Unclear | High | Low | Low |
| Lekli et al. ( | Unclear | Low | Unclear | Unclear | Unclear | Unclear | Unclear | Low | Low | Low |
| Liang et al. ( | Unclear | Low | Unclear | Unclear | Unclear | Unclear | Low | Low | Low | Low |
| Maulik et al. ( | Unclear | Low | Unclear | Unclear | Unclear | Unclear | Unclear | Low | Low | Low |
| Verma et al. ( | Unclear | Low | Unclear | Unclear | Unclear | Unclear | Unclear | Low | Low | Low |
Figure 2Forest plot displaying the results of meta-analysis of coenzyme Q10 effect on myocardial infarct size in models of myocardial ischemia-reperfusion injury compared with the control group. CI, confidence interval; df, degrees of freedom; SD, standard deviation; IV, inverse variance.
Summary of subgroup analyses results.
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| 0.737 | ||||
| Rats | 4 | −12.05 (−18.98 to −5.12) | 97% | <0.0001 | |
| Rabbits | 3 | – | 87% | <0.0001 | |
| Hartley guinea pigs | 1 | −16.9 (−29.57 to −4.23) | NA | NA | |
| Yorkshire pigs | 1 | −15.5 (−22.25 to −8.75) | NA | NA | |
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| 0.192 | ||||
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| 7 | −10.14 (−16.22 to −4.07) | 95% | <0.0001 | |
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| 2 | −15.81 (−21.76 to −9.85) | 0 | 0.848 | |
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| 0.196 | ||||
| ≤ 4 h | 7 | −13.43 (−26 to −0.85) | 95% | <0.0001 | |
| >4 h | 2 | −4.93 (−7.78 to −2.08) | 70% | 0.07 |
MD, mean difference; NA, not applicable. Bold values indicates that the result became insignificant.
Summary of results on cardiac function parameters.
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| LVEF (%) | NR | NR | 67.12 (6.18) | 59.12 (5.81) | ||
| LVDP (mmHg) | 64 (3) | 45 (3) | 131 (4.2) | 92 (3.9) | NR | |
| LV dP/dtmax (mmHg/ms) | NR | 1.976 (0.085) | 1.11 (0.098) | 2.25 (0.12) | 1.84 (0.08) | |
LVEF, left ventricular ejection fraction; LVDP, left ventricular developed pressure; NR, not reported.
All data are presented as mean (standard error) except for data by Liang et al. are presented as mean (standard deviation).
After 120 min of reperfusion.
After 72 h of reperfusion.
p <0.05 compared with the control group.
Figure 3Corrected funnel plot showing publication bias in animal studies that compared the effect of coenzyme Q10 with vehicle treatment or no treatment on myocardial infarct size in models of myocardial ischemia-reperfusion injury.
Figure 4Summary of involved potential mechanisms of action of coenzyme Q10 reducing effect on myocardial infarct size in models of myocardial ischemia-reperfusion injury. SOD, superoxide dismutase; GSH, glutathione; CK, creatine kinase; UPS, ubiquitin-proteasome system; ACE, angiotensin-converting enzyme; NO, nitric oxide; VD, vasodilatation; ATP, adenosine triphosphate; PCr, phosphocreatine; CoQ10, coenzyme Q10; IS, infarct size; CI, confidence interval. This figure was produced on diagrams.net, using SMART materials (Servier Medical Art; smart.servier.com) that are approved under a Creative Commons Attribution 3.0 Unported License.