Ayurveda-based phytochemical composition attenuates lung inflammation and precipitates pharmacokinetic interaction with favipiravir: an in vivo investigation using disease-state of acute lung injury.
Abhishek GourAshish DograMahendra K VermaMahir BhardwajDilpreet KourAshiya JamwalBapi GorainMukesh KumarBhavna VijAjay KumarUtpal NandiPublished in: Natural product research (2022)
Acute respiratory distress syndrome (ARDS) is a critical form of acute lung injury (ALI). Here, we investigated the effect of a defined combination of ten pure phytochemicals in equal proportions of weight (NPM) from plants, recommended by Ayurveda for any protective action against lipopolysaccharide (LPS)-induced ALI. Results indicate that NPM markedly improved protein and neutrophil contents, myeloperoxidase and hydroxyproline levels, oxidative stress markers (glutathione and malonaldehyde), inflammatory cytokines, and genes (IL-6, TNF-α, TGF-β, and NF-κB/IκBα) in BALF/lung tissue. The histopathological examination of the lung revealed the shielding effect of NPM against ALI. NPM exhibited a protective effect on the lung by reducing oxidative stress and inhibiting inflammation. A substantial drop in favipiravir's oral exposure was observed in ALI-state compared to normal-state, but oral exposure upon NPM treatment in ALI-state followed similar behaviour of favipiravir alike normal-state without NPM treatment. Overall, results offer potential insight into Ayurvedic recommendations for immunity boosting during ALI situations.
Keyphrases
- lps induced
- acute myeloid leukemia
- oxidative stress
- acute respiratory distress syndrome
- inflammatory response
- extracorporeal membrane oxygenation
- mechanical ventilation
- signaling pathway
- ischemia reperfusion injury
- physical activity
- body mass index
- diabetic rats
- genome wide
- risk assessment
- gene expression
- combination therapy
- high resolution
- clinical practice
- climate change
- heat stress
- replacement therapy
- protein protein
- endoplasmic reticulum stress
- human health