Title of article :
Development of Nanoemulsion Based Gel Loaded with Phytoconstituents for the Treatment of Urinary Tract Infection and in Vivo Biodistribution Studies
Author/Authors :
Kaur ، Atinderpal - Jaypee Institute of Information Tehnology , Gupta ، Sonal - Jaypee Institute of Information Tehnology , Tyagi ، Amit - Institute of Nuclear Medicine and Allied Sciences , Sharma ، Rakesh Kumar - Institute of Nuclear Medicine and Allied Sciences , Ali ، Javed - Jamia Hamdard , Gabrani ، Reema - Jaypee Institute of Information Tehnology , Dang ، Shweta - Jaypee Institute of Information Tehnology
Pages :
9
From page :
611
To page :
619
Abstract :
Purpose: A nanoemulsion based gel containing Polyphenon 60 (P60) and cranberry (CRB) has been developed to deliver via intravaginal route for the treatment of urinary tract infection. Methods: Polyphenon 60 and cranberry were loaded in a single nanoemulsion gel (NBG) by ultra-sonication method and characterized for particle size, rheological properties, in vitro release and growth curve analysis. P60+CRB NBG were radiolabelled using technetium pertechnetate (99mTc) to perform in vivo pharmacokinetic studies in animals. Results: The finalized NE had a droplet size of 58±1 nm. In vitro release of 90.92 ± 0.6% in 8 hr for P60 and 99.39 ± 0.5% in 6 hr for CRB was observed in simulated vaginal fluid. Growth curve of E. coli indicated the inhibitory action of nanoemulsion based gel at the fifth hour of inoculation. Gamma scintigraphy studies on female Sprague-Dawley rats showed transport of nanoemulsion based gel from the vaginal cavity into the systemic circulation. Further, biodistribution studies with radiolabelled P60+CRB NBG showed significant higher uptake of radiolabelled actives by kidney (3.20±0.16) and urinary bladder (3.64±0.29), when administered intravaginally. Conclusion: The findings suggested 99mTc-P60+CRB NBG can potentially be transported through vaginal cavity and reach the target organs and showed effective distribution in organs affected in urinary tract infection
Keywords :
Cranberry , Gamma scintigraphy , Intravaginal drug delivery , Polyphenon 60 , Radiolabelling , Urinary tract infection
Journal title :
Advanced Pharmaceutical Bulletin
Serial Year :
2017
Journal title :
Advanced Pharmaceutical Bulletin
Record number :
2448382
Link To Document :
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