| Literature DB >> 36012137 |
Vlad Florian Avram1,2, Adrian Petru Merce3,4, Iasmina Maria Hâncu3,4, Alina Doruța Bătrân3,4, Gabrielle Kennedy5, Mariana Georgeta Rosca5, Danina Mirela Muntean4,6.
Abstract
Mitochondrial dysfunction has emerged as a central pathomechanism in the setting of obesity and diabetes mellitus, linking these intertwined pathologies that share insulin resistance as a common denominator. High-resolution respirometry (HRR) is a state-of-the-art research method currently used to study mitochondrial respiration and its impairment in health and disease. Tissue samples, cells or isolated mitochondria are exposed to various substrate-uncoupler-inhibitor-titration protocols, which allows the measurement and calculation of several parameters of mitochondrial respiration. In this review, we discuss the alterations of mitochondrial bioenergetics in the main dysfunctional organs that contribute to the development of the obese and diabetic phenotypes in both animal models and human subjects. Herein we review data regarding the impairment of oxidative phosphorylation as integrated mitochondrial function assessed by means of HRR. We acknowledge the critical role of this method in determining the alterations in oxidative phosphorylation occurring in the early stages of metabolic pathologies. We conclude that there is a mutual two-way relationship between mitochondrial dysfunction and insulin insensitivity that characterizes these diseases.Entities:
Keywords: diabetes mellitus; high-resolution respirometry; insulin resistance; mitochondrial respiration; obesity
Mesh:
Year: 2022 PMID: 36012137 PMCID: PMC9408127 DOI: 10.3390/ijms23168852
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 6.208
Respirometry parameters and some control ratios assessed by HRR [28].
| Parameter | Definition |
|---|---|
| ROUTINE respiration | Mitochondrial respiration at non-saturating levels of ADP |
| OXPHOS capacity | Respiratory capacity of mitochondria in an ADP-stimulated state at saturating levels of ADP |
| ET capacity | Mitochondrial respiration in the non-coupled state, achieved by titrating an optimum concentration of uncouplers (protonophores) |
| LEAK respiration | Non-phosphorylating state when oxygen flux is minimized by the backpressure of a high protonmotive force generated by ATP synthase inhibition |
| RCR | Respiratory control ratio. Calculated as OXPHOS capacity/LEAK respiration |
| UCR | Uncoupling control ratio. Calculated as ET capacity/Routine respiration |
| P/E control ratio | Phosphorylation system control ratio. Calculated as OXPHOS capacity/ET capacity |
| L/E coupling-control ratio | Flux ratio. Calculated as LEAK respiration/ET capacity |
Figure 1A representative trace of HRR in permeabilized cells (platelets) displaying the oxygen concentration in the chamber over time (blue trace) and the oxygen flux (red trace) according to the SUIT protocol. The additions are provided in the upper part of the chart. The respiratory parameters are provided in the lower part: ROUTINE respiration; OXPHOS capacity (the maximal active respiration in the presence of CI and CII substrates plus ADP); LEAK (the non-phosphorylating respiration in the presence of oligomycin); ET capacity (the maximal uncoupled respiration in the presence of FCCP); and ROX (residual oxygen consumption). See the explanations in the text above.
High-resolution respirometry findings in animal obesity studies.
| Animal Model | Tissue Type | Main Effects | Normalization | Ref. |
|---|---|---|---|---|
| Zucker rats | Skeletal muscle | Decreased OXPHOS capacity in adult | Citrate | [ |
| Wistar rats | Skeletal muscle | No change in ROUTINE respiration | Tissue mass | [ |
| SPF male B6 and D2 mice | Liver tissue | Decreased OXPHOS capacity | Tissue mass | [ |
| C57BL/6J male mice | Heart muscle | Decreased ROUTINE respiration | Tissue protein | [ |
| Zucker rats | Heart muscle | Decreased OXPHOS capacity | Tissue mass | [ |
High-resolution respirometry findings in animal diabetes studies.
| Animal Model | Tissue Type | Main Effects | Normalization | Ref. |
|---|---|---|---|---|
| C57BL/6J mice | Skeletal muscle | Peak respiration by the diabetic mitochondria required a higher level of ADP (right shift in the curve of O2 flux vs. ADP) | Tissue mass | [ |
| db/db mice bred on a C57BL/6J background | Skeletal muscle | Tissue mass | [ | |
| C57BL/6J mice | Skeletal muscle | Tissue mass | [ | |
| ZDF rats | Skeletal muscle | No difference in NADH-linked OXPHOS | Tissue mass | [ |
| db/db mice bred on a C57BL/6J background | Liver tissue | No change NADH-linked OXPHOS | Tissue mass | [ |
| C57BL/6J mice | Liver tissue | Tissue mass | [ | |
| IR/IRS-1+/− | Liver tissue | Tissue protein | [ | |
| Psammomys obesus | Liver tissue | Decreased NADH-linked ROUTINE respiration | Tissue protein | [ |
| C57BLKS/J db/db and db/m mice | Liver tissue | Decreased NADH-linked OXPHOS | Mitochondrial mass | [ |
| FVB/N mice | Heart muscle | No change in NADH-linked OXPHOS | Tissue mass | [ |
| Ldlr−/− and C57BL/6J mice | Heart muscle | Increased NADH-linked OXPHOS | To controls | [ |
| C57/BL6J mice | Heart muscle | Decreased NADH-linked OXPHOS | Tissue mass | [ |
| Wistar rats | Heart muscle | Decreased RCR | No information | [ |
| Wistar rats | Heart muscle | Decreased NADH-linked OXPHOS | Tissue mass | [ |
| Wistar rats | Heart muscle | Decreased NADH-linked OXPHOS | Volume | [ |
| C57BL/6 mice | Heart muscle | Mitochondrial protein content | [ | |
| NOD/ShiLtJ mice and NOR/Lt mice | Heart muscle | No changes OXPHOS capacity | Tissue mass | [ |
| db/+ and db/db C57BL/Ks mice | Heart muscle | Decreased NADH-linked OXPHOS | Tissue protein | [ |
| wild type C57BL/6J mice and CLS mice | Heart muscle | Decreased NADH-linked OXPHOS | Tissue protein | [ |
| Nile rats | Retina homogenate | Decreased FCR for NADH pathway | Tissue mass | [ |
| TRPC6 global knockout mice and wild type mice | Hippocampal neuron homogenate | Decreased NADH-linked OXPHOS | Tissue mass | [ |
| Wistar rats | Kidney homogenate | Decreased ROUTINE respiration in the presence of CI substrates | Tissue mass | [ |
| Sprague-Dawley rats | Kidney homogenate | Decreased NADH-linked OXPHOS | Mitochondrial protein content | [ |
High-resolution respirometry findings in human obesity studies.
| Cell Type | Main Effects | Normalization | Ref. |
|---|---|---|---|
| Skeletal muscle | Reduced NADH-linked OXPHOS | Tissue mass | [ |
| Skeletal muscle | No change in NADH-linked OXPHOS | Tissue mass | [ |
| Skeletal muscle | Decreased OXPHOS capacity | Tissue mass | [ |
| Liver tissue | Increased NADH-linked OXPHOS | Tissue protein | [ |
| Liver tissue | No change in NADH-linked OXPHOS | Tissue mass | [ |
| Adipose tissue | No change in RCR | Number of cells | [ |
| Myometrial biopsies | No change in NADH-linked OXPHOS | No information | [ |
High-resolution respirometry findings in prediabetes.
| Cell Type | Main Effects | Normalization | Ref. |
|---|---|---|---|
| Skeletal muscle | No changes in NADH-linked OXPHOS | Tissue mass | [ |
| Adipose tissue | No changes in NADH-linked OXPHOS | Tissue mass | [ |
High-resolution respirometry findings in human diabetes studies.
| Cell Type | Main Effects | Normalization | Ref. |
|---|---|---|---|
| Skeletal muscle | Decreased OXPHOS capacity | Citrate synthase | [ |
| Skeletal muscle | Decreased NADH-linked OXPHOS | Tissue mass | [ |
| Skeletal muscle | Tissue mass | [ | |
| Skeletal muscle | Decreased OXPHOS capacity | Citrate synthase | [ |
| Skeletal muscle | Citrate synthase | [ | |
| Skeletal muscle | Decreased NADH-linked OXPHOS | Tissue mass | [ |
| Skeletal muscle | Decreased NADH-linked OXPHOS | Tissue mass | [ |
| Skeletal muscle | Citrate synthase | [ | |
| Skeletal muscle | Decreased NADH-linked OXPHOS | Tissue mass | [ |
| Skeletal muscle | Decreased NADH-linked OXPHOS | mtDNA content | [ |
| Skeletal muscle | No change in OXPHOS capacity | Citrate synthase | [ |
| Adipose tissue | No change in NADH-linked OXPHOS | Citrate synthase | [ |
| Adipose tissue | No change in RCR | Tissue mass | [ |
| Heart muscle | Decreased NADH-linked OXPHOS | Citrate synthase | [ |
| Heart muscle | Decreased NADH-linked OXPHOS | Volume | [ |
| Platelets | No change in NADH- and succinate linked OXPHOS | Number of cells | [ |
| Platelets | No change in NADH-linked OXPHOS | Number of cells | [ |