Direct-acting antivirals improve endothelial function in patients with chronic hepatitis: a prospective cohort study

Matteo Nicola Dario Di Minno1, Pasquale Ambrosino2, Antonio Riccardo Buonomo2

  • 1Department of Translational Medical Sciences, Federico II University, Via S. Pansini 5, 80131, Naples, Italy. dario.diminno@hotmail.it.

Insights

Direct-acting antiviral agents (DAAs) significantly improve endothelial function in Hepatitis C virus (HCV) patients by enhancing flow-mediated dilation and post-ischemic hyperemia. This suggests DAAs may reduce cardiovascular risk in individuals with HCV infection.

Area of Science:

  • Cardiovascular Medicine
  • Hepatology
  • Virology

Background:

  • Hepatitis C virus (HCV) infection is linked to elevated cardiovascular risk.
  • Endothelial dysfunction, measured by flow-mediated dilation (FMD), is a key indicator of cardiovascular risk.

Purpose of the Study:

  • To assess the impact of direct-acting antiviral agents (DAAs) on endothelial function in HCV patients.
  • To evaluate changes in FMD and post-ischemic hyperemia (PIH) following DAA treatment.

Main Methods:

  • FMD and PIH were measured in 22 HCV outpatients before, during (end of treatment), and after DAA therapy.
  • Hepatitis C virus RNA levels were monitored throughout the study.

Main Results:

  • DAA treatment led to a significant increase in FMD (from 4.52% to 9.39% at end of treatment, and 10.9% at 12 weeks post-treatment).
  • Post-ischemic hyperemia (PIH) also significantly improved after DAA treatment.
  • Improvements in FMD correlated with baseline HCV RNA levels and were observed regardless of other cardiovascular risk factors, though not significant in cirrhotic patients.

Conclusions:

  • Viral eradication with DAAs results in sustained improvement of endothelial function in HCV patients.
  • DAA therapy may offer a beneficial effect on the cardiovascular risk profile of individuals with HCV infection.

Related Concept Videos

Direct-Acting Cholinergic Agonists: Pharmacokinetics01:31

Direct-Acting Cholinergic Agonists: Pharmacokinetics

Direct-acting cholinergic agonists, such as synthetic choline esters and naturally occurring alkaloids, exert their effects by enhancing the actions of acetylcholine and stimulating the parasympathetic nervous system. Synthetic choline esters share structural similarities with acetylcholine. For example, they have a positively charged quaternary ammonium or onium group, contributing to their hydrophilic characteristics. As a result, they are poorly absorbed in the body through oral...
1.8K
Direct-Acting Cholinergic Agonists: Therapeutic Uses01:11

Direct-Acting Cholinergic Agonists: Therapeutic Uses

Direct-acting cholinergic agonists have many therapeutic uses in various medical fields. Choline esters, including acetylcholine, have limited clinical utility due to their non-selectivity and short duration of action. Still, acetylcholine and carbachol are applied topically during ophthalmologic surgery to induce miosis. Pilocarpine, a muscarinic and ganglionic stimulator, effectively treats open-angle glaucoma and alleviates xerostomia and dry mouth caused by radiotherapy or Sjögren...
1.6K
Adrenergic Agonists: Direct-Acting Agents01:30

Adrenergic Agonists: Direct-Acting Agents

Drugs that mimic the action of endogenous catecholamines like noradrenaline and adrenaline are called adrenergic agonists or sympathomimetics. Based on their mechanism of action, sympathomimetics can be classified as direct-, indirect-, or mixed-acting sympathomimetics. Direct-acting adrenergic agonists activate adrenoceptors without affecting presynaptic neurons, making them independent of neuronal catecholamine-depleting agents like reserpine and guanethidine.
These agents can be classified...
2.7K
Direct-Acting Cholinergic Agonists: Pharmacological Actions00:59

Direct-Acting Cholinergic Agonists: Pharmacological Actions

Direct-acting cholinergic agonists exert their pharmacological actions by mimicking the effects of acetylcholine on postsynaptic muscarinic receptors to generate parasympathetic responses. These agents elicit a range of physiological responses, including cardiovascular effects. For example, activation of muscarinic receptors induces bradycardia, decreased cardiac output, reduced peripheral resistance, and consequent hypotension. In the eye, stimulation of M3 receptors leads to smooth muscle...
2.3K
Direct-Acting Cholinergic Agonists: Chemistry and Structure-Activity Relationship01:22

Direct-Acting Cholinergic Agonists: Chemistry and Structure-Activity Relationship

Cholinergic agonists or cholinomimetics mimic the action of acetylcholine to stimulate the parasympathetic nervous system. They are categorized into direct-acting and indirect-acting agents. The direct-acting cholinergic drugs induce the parasympathetic response by directly binding to the muscarinic or nicotine receptors. In comparison, the indirect-acting cholinergic drugs prevent acetylcholine hydrolysis, indirectly contributing to the extended parasympathetic response.
The direct-acting...
2.0K
Forces Acting on Chromosomes02:11

Forces Acting on Chromosomes

During mitosis, chromosome movements occur through the interplay of multiple piconewton level forces. In prometaphase, these forces help in chromosome assembly or congression at the equatorial plane, eventually leading to their alignment at the metaphase plate. The forces acting on the chromosomes are space and time-dependent; therefore, they vary with the position of the chromosomes as the cell progresses through mitosis. 
Microtubules and motor proteins exert two types of forces on...
3.9K