Ameliorative effects of hempseed (Cannabis sativa) against hypercholesterolemia associated cardiovascular changes

Naveen Kaushal1, Shallu Dhadwal1, Parminder Kaur2

  • 1Department of Biophysics, Panjab University, Chandigarh, 160014, India.

Insights

Hempseed (HS) effectively reduces hypercholesterolemia (HC) and associated cardiovascular risks by combating oxidative stress and inflammation. This natural approach offers a promising alternative to synthetic drugs for managing HC.

Area of Science:

  • Biochemistry
  • Pharmacology
  • Nutritional Science

Background:

  • Hypercholesterolemia (HC) is a primary risk factor for cardiovascular (CV) diseases, the leading global cause of mortality.
  • Oxidative stress driven by free radicals significantly contributes to HC-related pathologies like atherosclerosis.
  • Current synthetic drugs for HC have limitations due to side effects, necessitating exploration of natural alternatives.

Purpose of the Study:

  • To investigate the anti-inflammatory and antioxidant potential of Hempseed (HS) in ameliorating HC-associated cardiovascular effects.
  • To evaluate HS as a "green pharmaceutical" approach for managing HC and its complications.

Main Methods:

  • In vitro antioxidant assays (ABTS, DPPH) were performed on HS protein and lipid fractions.
  • HS was administered to high-fat diet-induced hypercholesterolemic wistar rats.
  • Evaluated lipid profiles, aortic tissue histology, ultrastructure, inflammatory markers, oxidative stress markers, ECG, and aortic impedance/conductance.

Main Results:

  • HS demonstrated in vitro free radical scavenging activity.
  • HS supplementation improved lipid profiles and reduced aortic tissue damage in hypercholesterolemic rats.
  • HS administration mitigated COX-2 mediated inflammation and improved the tissue's redox status, correlating with better ECG patterns.

Conclusions:

  • Hempseed exhibits significant anti-hypercholesterolemic effects.
  • These effects are primarily mediated through the modulation of inflammatory pathways via redox mechanisms.
  • HS presents a viable natural strategy for managing hypercholesterolemia and reducing cardiovascular risk.
Abstract

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