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Rahul Rama Hegde

Researcher at IFTM University

Publications -  14
Citations -  286

Rahul Rama Hegde is an academic researcher from IFTM University. The author has contributed to research in topics: Acetamide & Controlled release. The author has an hindex of 8, co-authored 13 publications receiving 210 citations.

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Microemulsion: New Insights into the Ocular Drug Delivery

TL;DR: This review will provide an insight into previous studies on microemulsions for ocular delivery of drugs using various nonionic surfactants, cosurfactants, and associated irritation potential on the ocular surface.
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Tailored-interpenetrating polymer network beads of κ-carrageenan and sodium carboxymethyl cellulose for controlled drug delivery

TL;DR: The impact of different formulation variables like polymer ratio, gelation time, concentration of crosslinker on physico-chemical parameters and in-vitro drug release were studied in this article.
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Anticancer, anti-inflammatory, and analgesic activities of synthesized 2-(substituted phenoxy) acetamide derivatives.

TL;DR: Investigations revealed that synthesized products 3a–j with halogens on the aromatic ring favors as the anticancer and anti-inflammatory activity, and compound 3c N-(1-chlorophenyl)ethyl)-2-(4-nitrophenoxy)acetamide may have potential to be developed into a therapeutic agent.
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Physicochemical and Pharmacological Investigation of Water/Oil Microemulsion of Non-Selective Beta Blocker for Treatment of Glaucoma

TL;DR: In vivo reduction of intraocular pressure revealed a similar efficacy for once daily dosed Timolol maleate in microemulsion formulation compared to 0.5% concentration in bothmicroemulsion as well as aqueous formulation and the possible outcome of dose reduction will reduce the cardiovascular side effects generally reported with TimolOL maleate eye drops.
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Helicobacter pylori: past, current and future treatment strategies with gastroretentive drug delivery systems

TL;DR: D dosage forms, popularly known as gastro retentive drug delivery systems (GRDDS), have the immense potential to effectively counter the problem of high bacterial load; prevent induction of coccoid bacteria thereby improving treatment outcome and compliance.