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Updated: May 7, 2026

Quantitative Structure-Activity Relationship, Activity Prediction, and Molecular Dynamics of Non-nucleotide Reverse Transcriptase Inhibitors
Published on: May 9, 2025
Cardio-metabolic effectsof HIV protease inhibitors (lopinavir/ritonavir)
Kathleen M S E Reyskens1, Tarryn-Lee Fisher, Jonathan C Schisler
1Cardio-Metabolic Research Group, Department of Physiological Sciences, Stellenbosch University, Stellenbosch, South Africa.
Insights
Highly active antiretroviral therapy (HAART) using protease inhibitors (PIs) can impair cardiac function and elevate LDL-cholesterol. This study shows PIs inhibit the ubiquitin proteasome system (UPS) in the heart, potentially leading to future cardiac dysfunction.
Area of Science:
- Cardiovascular Science
- Molecular Biology
- Pharmacology
Background:
- Antiretroviral therapy reduces HIV-AIDS mortality but can cause long-term side effects like cardiovascular diseases.
- The molecular mechanisms behind highly active antiretroviral therapy (HAART)-induced cardio-metabolic effects remain unclear.
Purpose of the Study:
- To investigate if HIV protease inhibitor (PI) treatment elevates myocardial oxidative stress and inhibits the ubiquitin proteasome system (UPS), leading to impaired cardiac function.
- To elucidate the molecular pathways involved in PI-induced cardiac dysfunction.
Main Methods:
- Wistar rats were treated with Lopinavir/Ritonavir (PI) or vehicle for 8 weeks.
- Evaluated metabolic parameters, cardiac function (Langendorff perfusion), and myocardial gene/protein expression.
- Assessed oxidative stress, UPS activity, and markers of calcium handling and cardiac remodeling.
Main Results:
- PI treatment increased serum LDL-cholesterol and tissue triglycerides but did not induce insulin resistance.
- Hearts from PI-treated rats showed impaired contractile function and attenuated UPS activity.
- No significant cardiac remodeling, fibrosis, or oxidative stress was observed; however, elevated calcineurin and connexin 43 were noted.
Conclusions:
- Chronic PI administration leads to increased LDL-cholesterol and impaired cardiac function in rats.
- PI exposure inhibits myocardial UPS and alters expression of key proteins, potentially contributing to future cardiac contractile dysfunction.
Abstract:
Although antiretroviral treatment decreases HIV-AIDS morbidity/mortality, long-term side effects may include the onset of insulin resistance and cardiovascular diseases. However, the underlying molecular mechanisms responsible for highly active antiretroviral therapy (HAART)-induced cardio-metabolic effects are poorly understood. In light of this, we hypothesized that HIV protease inhibitor (PI) treatment (Lopinavir/Ritonavir) elevates myocardial oxidative stress and concomitantly inhibits the ubiquitin proteasome system (UPS), thereby attenuating cardiac function. Lopinavir/Ritonavir was dissolved in 1% ethanol (vehicle) and injected into mini-osmotic pumps that were surgically implanted into Wistar rats for 8 weeks vs. vehicle and sham controls. We subsequently evaluated metabolic parameters, gene/protein markers and heart function (ex vivo Langendorff perfusions). PI-treated rats exhibited increased serum LDL-cholesterol, higher tissue triglycerides (heart, liver), but no evidence of insulin resistance. In parallel, there was upregulation of hepatic gene expression, i.e. acetyl-CoA carboxylase b and 3-hydroxy-3-methylglutaryl-CoA-reductase, key regulators of fatty acid oxidation and cholesterol synthesis, respectively. PI-treated hearts displayed impaired cardiac contractile function together with attenuated UPS activity. However, there was no significant remodeling of hearts exposed to PIs, i.e. lack of ultrastructural changes, fibrosis, cardiac hypertrophic response, and oxidative stress. Western blot analysis of PI-treated hearts revealed that perturbed calcium handling may contribute to the PI-mediated contractile dysfunction. Here chronic PI administration led to elevated myocardial calcineurin, nuclear factor of activated T-cells 3 (NFAT3), connexin 43, and phosphorylated phospholamban, together with decreased calmodulin expression levels. This study demonstrates that early changes triggered by PI treatment include increased serum LDL-cholesterol levels together with attenuated cardiac function. Furthermore, PI exposure inhibits the myocardial UPS and leads to elevated calcineurin and connexin 43 expression that may be associated with the future onset of cardiac contractile dysfunction.
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