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Factorial Design Based Multivariate Modeling and Optimization of Tunable Bioresponsive Arginine Grafted Poly(cystaminebis(acrylamide)-diaminohexane) Polymeric Matrix Based Nanocarriers

Authors :
Rongbing Yang
Mahavir B. Chougule
Ye Zou
Rahul V. Haware
Kihoon Nam
Sung Wan Kim
Yi Y. Zuo
James Turkson
Source :
Molecular Pharmaceutics. 14:252-263
Publication Year :
2016
Publisher :
American Chemical Society (ACS), 2016.

Abstract

Desired characteristics of nanocarriers are crucial to explore its therapeutic potential. This investigation aimed to develop tunable bioresponsive newly synthesized unique arginine grafted poly(cystaminebis(acrylamide)-diaminohexane) [ABP] polymeric matrix based nanocarriers by using L9 Taguchi factorial design, desirability function, and multivariate method. The selected formulation and process parameters were ABP concentration, acetone concentration, the volume ratio of acetone to ABP solution, and drug concentration. The measured nanocarrier characteristics were particle size, polydispersity index, zeta potential, and percentage drug loading. Experimental validation of nanocarrier characteristics computed from initially developed predictive model showed nonsignificant differences (p0.05). The multivariate modeling based optimized cationic nanocarrier formulation of100 nm loaded with hydrophilic acetaminophen was readapted for a hydrophobic etoposide loading without significant changes (p0.05) except for improved loading percentage. This is the first study focusing on ABP polymeric matrix based nanocarrier development. Nanocarrier particle size was stable in PBS 7.4 for 48 h. The increase of zeta potential at lower pH 6.4, compared to the physiological pH, showed possible endosomal escape capability. The glutathione triggered release at the physiological conditions indicated the competence of cytosolic targeting delivery of the loaded drug from bioresponsive nanocarriers. In conclusion, this unique systematic approach provides rational evaluation and prediction of a tunable bioresponsive ABP based matrix nanocarrier, which was built on selected limited number of smart experimentation.

Details

ISSN :
15438392 and 15438384
Volume :
14
Database :
OpenAIRE
Journal :
Molecular Pharmaceutics
Accession number :
edsair.doi.dedup.....38ece40e62a64c87e8e1779241c890c1
Full Text :
https://doi.org/10.1021/acs.molpharmaceut.6b00861