Virtual screening of functional foods and dissecting their roles in modulating gene functions to support post

Sharmin Afroz1, Shadreen Fairuz2, Jahanara Alam Joty3

  • 1Department of Theoretical and Computational Chemistry, University of Dhaka, Dhaka, Bangladesh.

Insights

Functional foods like black cumin and turmeric may help manage long-term post-COVID-19 cardiovascular, diabetic, and respiratory issues by modulating key genes. This research explored their bioactive compounds and underlying mechanisms for potential therapeutic benefits.

Area of Science:

  • Integrative biology and computational pharmacology.
  • Exploration of nutraceuticals for post-viral sequelae.

Background:

  • COVID-19 (coronavirus disease) has led to significant global health challenges.
  • Long-term complications affecting cardiovascular, diabetic, and respiratory systems are a growing concern.
  • Functional foods are increasingly recognized for their therapeutic potential beyond nutrition.

Purpose of the Study:

  • To investigate the mechanisms by which functional foods and their bioactive compounds may mitigate post-COVID-19 complications.
  • To identify specific functional foods and their molecular targets for managing cardiovascular, diabetic, and respiratory sequelae.
  • To utilize computational approaches for predicting the efficacy of functional foods.

Main Methods:

  • Literature review to identify 266 bioactive compounds from nine functional foods.
  • Computational screening and docking to identify compounds targeting key proteins (TNNI3K, DPP-4, TGF-β1).
  • Network pharmacology analysis to explore interactions with complication-related genes (MAPK1, HSP90AA1, PPARG, TNF-alpha, AKT-1).

Main Results:

  • Seventy-one compounds were identified through network pharmacology, associated with 169 Gene Ontology terms and 99 Kyoto Encyclopedia of Genes and Genomes pathways.
  • Key pathways modulated include AKT, MAPK, ACE2 receptor, insulin, and PPAR signaling.
  • Black cumin, fenugreek, garlic, ginger, turmeric, bitter melon, and Indian pennywort showed potential in modulating these pathways.

Conclusions:

  • Functional foods possess bioactive compounds that can modulate molecular targets and pathways implicated in post-COVID-19 complications.
  • These identified functional foods demonstrate a potential role in attenuating cardiovascular, diabetic, and respiratory sequelae.
  • Further scientific validation of these functional foods is recommended for clinical application in managing long-term COVID-19 effects.

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