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Avani F. Amin

Researcher at Nirma University of Science and Technology

Publications -  21
Citations -  1661

Avani F. Amin is an academic researcher from Nirma University of Science and Technology. The author has contributed to research in topics: Drug delivery & Dissolution testing. The author has an hindex of 15, co-authored 21 publications receiving 1550 citations.

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Getting into the brain: approaches to enhance brain drug delivery.

TL;DR: The use of polymers for local drug delivery has greatly expanded the spectrum of drugs available for the treatment of brain diseases, such as malignant tumours and Alzheimer’s disease and the present review provides an insight into some of the recent advances made.
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Gastroretentive drug delivery system of ranitidine hydrochloride: Formulation and in vitro evaluation

TL;DR: The results of the full factorial design indicated that a low amount of citric acid and a high amount of stearic acid favors sustained release of ranitidine hydrochloride from a gastroretentive formulation, indicating that the proper balance between a release rate enhancer and aRelease rate retardant can produce a drug dissolution profile similar to a theoretical dissolution profile.
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Formulation design and optimization of mouth dissolve tablets of nimesulide using vacuum drying technique.

TL;DR: Results of multiple linear regression analysis revealed that for obtaining a rapidly disintegrating dosage form, tablets should be prepared using an optimum concentration of camphor and a higher percentage of crospovidone.
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Formulation and evaluation of mucoadhesive glipizide microspheres.

TL;DR: In vivo testing of the mucoadhesive microspheres to albino Wistar rats demonstrated significant hypoglycemic effect of glipizide, and results of preliminary trials indicate that volume of cross-linking agent, time for cross- linking, polymer-to-drug ratio, and speed of rotation affected characteristics of micro Spheres.
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Process optimization and characterization of poloxamer solid dispersions of a poorly water-soluble drug.

TL;DR: D dissolution enhancement of RXB was obtained by preparing its solid dispersions in PXM using melting technique and the use of a factorial design approach helped in identifying the critical factors in the preparation and formulation of solid dispersion.