R
Ritu Karwasra
Researcher at All India Institute of Medical Sciences
Publications - 34
Citations - 254
Ritu Karwasra is an academic researcher from All India Institute of Medical Sciences. The author has contributed to research in topics: Medicine & Chemistry. The author has an hindex of 5, co-authored 22 publications receiving 105 citations. Previous affiliations of Ritu Karwasra include Safdarjang Hospital & Defence Research and Development Organisation.
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Intranasal delivery of Naloxone-loaded solid lipid nanoparticles as a promising simple and non-invasive approach for the management of opioid overdose.
Nazeer Hasan,Nazeer Hasan,Nazeer Hasan,Mohammad Imran,Prashant Kesharwani,Kushagra Khanna,Kushagra Khanna,Ritu Karwasra,Nitin Sharma,Sonalika Rawat,Deeksha Sharma,Farhan Jalees Ahmad,Gaurav K. Jain,Aseem Bhatnagar,Sushama Talegaonkar +14 more
TL;DR: In this paper, the authors developed intranasal solid-lipid nanoparticles in which naloxone was incorporated for the higher brain disposition of Noxone with superior therapeutic effects for the reversal of toxicity of opioid overdose.
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Antioxidant and anti-inflammatory potential of pomegranate rind extract to ameliorate cisplatin-induced acute kidney injury
TL;DR: It is suggested that pomegranate can be used as a dietary supplement in the treatment of cisplatin-induced kidney injury by reducing apoptosis, oxidative stress and inflammation.
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Pomegranate supplementation attenuates inflammation, joint dysfunction via inhibition of NF-κB signaling pathway in experimental models of rheumatoid arthritis.
TL;DR: The research work represents the first report on inhibitory mechanism of NF-κB by pomegranate rind extract, enriched in tannins and flavanoids, in amelioration of adjuvant-induced arthritis.
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Terminalia chebula supplementation attenuates cisplatin-induced nephrotoxicity in Wistar rats through modulation of apoptotic pathway.
TL;DR: It was discovered that T. chebula ameliorated oxidative and histological damage caused by cisplatin and significantly inhibited the elevation of serum creatinine, blood urea nitrogen and oxidant stress markers.
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Intranasal solid lipid nanoparticles for management of pain: A full factorial design approach, characterization & Gamma Scintigraphy.
Kushagra Khanna,Nitin Sharma,Sonalika Rawat,Nazia Khan,Ritu Karwasra,Nazeer Hasan,Abhishek Kumar,Gaurav Kumar Jain,Dhruv Kumar Nishad,Sakshum Khanna,Harvinder Popli,Aseem Bhatnagar +11 more
TL;DR: In this article, a formulation of NLB loaded solid lipid nanoparticles (SLNs) using solvent injection technology was presented, which achieved an average particle size of 170.07 ± 25.1 nm, encapsulation efficiency (93.6 ± 1.5%) and loading capacity of 26.67%.