Literature DB >> 10723768

Polysaccharide coated niosomes for oral drug delivery: formulation and in vitro stability studies.

V Sihorkar1, S P Vyas.   

Abstract

Non-ionic surfactant vesicles (niosomes) were prepared and appended with a polysaccharide cap using hydrophobic anchors. Hydrophobized polysaccharides, O-palmitoyl pullulan (OPPu) and cholesteroyl pullulan (CHPu) were anchored onto propranolol.HCL containing preformed niosomes. The coated niosomes were characterized for average vesicle size, size distribution, shape, encapsulation efficiency and in vitro release profile and were compared with their uncoated counterparts. No significant difference was observed in % encapsulation (P > 0.05 in a rank sum test) of polysaccharide coated and uncoated vesicles. In vitro release studies however, revealed a significant lowering (P < 0.01) of drug release for the coated systems in simulated gastric and intestinal fluids with a biphasic release profile. The influence of the hydrophobized polysaccharide cap on niosomal membrane integrity and stabilization against harsh bio-environment conditions was also investigated. The parameters investigated include detergent and bile (bile salts and fresh-pooled rat bile) challenge, freeze-thaw cycling, osmotic stress, and long term and shelf stability studies. It was seen that at higher bile salt concentrations and detergent content, uncoated niosomes underwent bilayer solubilization into intermediate micellar structures, whereas coated niosomes were able to maintain their structural integrity as reflected from their higher % latency for the entrapped water soluble agent. Similarly, freeze-thaw cycling could not bring any fusion or collapse of the niosomal membrane (unlike uncoated ones). Furthermore, the exceptional shelf stability of the coated vesicles both at 37 +/- 1 degrees and at 4 +/- 1 degrees C establishes the potential of polysaccharide coated niosomes as an oral delivery system for water-soluble agents. Results from OPPu and CHPu coated niosomal systems for their oral stability potential are compared.

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Year:  2000        PMID: 10723768

Source DB:  PubMed          Journal:  Pharmazie        ISSN: 0031-7144            Impact factor:   1.267


  4 in total

1.  Maltodextrin-based proniosomes.

Authors:  A I Blazek-Welsh; D G Rhodes
Journal:  AAPS PharmSci       Date:  2001

2.  PEGylated synthetic surfactant vesicles (Niosomes): novel carriers for oligonucleotides.

Authors:  Yongzhuo Huang; Jinliang Chen; Xiaojin Chen; Jianqing Gao; Wenquan Liang
Journal:  J Mater Sci Mater Med       Date:  2007-07-10       Impact factor: 3.896

3.  Development and characterization of mixed niosomes for oral delivery using candesartan cilexetil as a model poorly water-soluble drug.

Authors:  Zerrin Sezgin-Bayindir; Mustafa Naim Antep; Nilufer Yuksel
Journal:  AAPS PharmSciTech       Date:  2014-09-10       Impact factor: 3.246

4.  Metformin loaded non-ionic surfactant vesicles: optimization of formulation, effect of process variables and characterization.

Authors:  Anchal Sankhyan; Pravin K Pawar
Journal:  Daru       Date:  2013-01-11       Impact factor: 3.117

  4 in total

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