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Dive into the research topics where Viness Pillay is active.

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Featured researches published by Viness Pillay.


Aaps Pharmscitech | 2004

Experimental design for the formulation and optimization of novel cross-linked oilispheres developed for in vitro site-specific release ofMentha piperita oil

Wilbert Sibanda; Viness Pillay; Michael P. Danckwerts; A.M. Viljoen; Sandy van Vuuren; Riaz A Khan

A Plackett-Burman design was employed to develop and optimize a novel crosslinked calcium-aluminum-alginatepectinate oilisphere complex as a potential system for the in vitro site-specific release ofMentha piperita, an essential oil used for the treatment of irritable bowel syndrome. The physicochemical and textural properties (dependent variables) of this complex were found to be highly sensitive to changes in the concentration of the polymers (0%–1.5% wt/vol), crosslinkers (0%–4% wt/vol) and crosslinking reaction times (0.5–6 hours) (independent variables). Particle size analysis indicated both unimodal and bimodal populations with the highest frequency of 2 mm oilispheres. Oil encapsulation ranged from 6 to 35 mg/100 mg oilispheres. Gravimetric changes of the crosslinked matrix indicated significant ion sequestration and loss in an exponential manner, while matrix erosion followed Higuchis cube root law. Among the various measured responses, the total fracture energy was the most suitable optimization objective (R2 =0.88, Durbin-Watson Index=1.21%, Coefficient of Variation (CV)=33.21%). The Lagrangian technique produced no significant differences (P>.05) between the experimental and predicted total fracture energy values (0.0150 vs 0.0107 J). Artificial Neural Networks, as an alternative predictive tool of the total fracture energy, was highly accurate (final mean square error of optimal network epoch≈0.02). Fused-coated optimized oilispheres produced a 4-hour lag phase followed by zero-order kinetics (n>0.99), whereby analysis of release data indicated that diffusion (Fickian constantk1=0.74 vs relaxation constantk2=0.02) was the predominant release mechanism.


Archive | 2009

RATE MODULATED DELIVERY OF DRUGS FROM A COMPOSITE DELIVERY SYSTEM

Kim Melissa Hobbs; Viness Pillay; Yahya E. Choonara; Bradley Ryan Parsons


Archive | 2009

TOPICAL REVIEW: Stimuli-responsive polymers and their applications in drug delivery

Priya Bawa; Viness Pillay; Yahya E. Choonara; Lisa C. du Toit


Archive | 2009

A controlled release intravaginal polymeric pharmaceutical dosage form

Valence M. K. Ndesendo; Viness Pillay; Yahya E. Choonara


Archive | 2016

Frontiers in Biomaterials

Viness Pillay; Yahya E. Choonara; Pradeep Kumar


Archive | 2015

pH RESPONSIVE ORAL POLYMERIC PHARMACEUTICAL DOSAGE FORM

Pierre P.D. Kondiah; Viness Pillay; Yahya E. Choonara; Girish Modi; Pradeep Kumar; Lisa C. du Toit; Lomas K. Tomar; Charu Tyagi


Archive | 2019

Nanoengineered biomaterials for vascular tissue engineering

Pradeep Kumar; Lisa C. du Toit; Priyamvada Pradeep; Yahya E. Choonara; Viness Pillay


Archive | 2017

Transbarrier Trafficking of Nanoparticles: Perspectives for Cancer Therapeutics

Lisa C. du Toit; Priyamvada Pradeep; Thashree Marimuthu; Yahya E. Choonara; Pradeep Kumar; Viness Pillay


Archive | 2017

Biopolymeric archetypes for the oral delivery of nutraceuticals

Mershen Govender; Miles C. Braithwaite; Pradeep Kumar; Yahya E. Choonara; Viness Pillay


Archive | 2016

Système d'administration par voie orale reposant sur un complexe polyélectrolyte

Viness Pillay; Toit Lisa Claire Du; Yahya E. Choonara; Margaret Siyawamwaya; Pradeep Kumar

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Yahya E. Choonara

University of the Witwatersrand

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Pradeep Kumar

University of the Witwatersrand

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Toit Lisa Claire Du

University of the Witwatersrand

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Girish Modi

University of the Witwatersrand

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Lisa C. du Toit

University of the Witwatersrand

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Pierre P.D. Kondiah

University of the Witwatersrand

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Charu Tyagi

University of the Witwatersrand

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Lomas K. Tomar

University of the Witwatersrand

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Michael P. Danckwerts

University of the Witwatersrand

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Priya Bawa

University of the Witwatersrand

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