scholarly journals In-vitro and In-vivo Characterizations of Novel Modified Starch Transdermal Drug Delivery System

2017 ◽  
Vol 5 (4) ◽  
Author(s):  
Mohammadreza Saboktakin
2015 ◽  
Vol 73 (5) ◽  
pp. 1229-1245 ◽  
Author(s):  
Sayed H. Auda ◽  
Dina Fathalla ◽  
Gihan Fetih ◽  
Mahmoud El-Badry ◽  
Faiyaz Shakeel

2019 ◽  
Vol 11 (1) ◽  
pp. 55
Author(s):  
Shikha Baghel Chauhan ◽  
Tanveer Naved ◽  
Nayyar Parvez

Objective: The combination therapy of ethinylestradiol and testosterone in post-menopausal females has shown improved sexual response and libido. The present studies were designed to develop a suitable matrix-type transdermal drug delivery system (TDDS) of ethinylestradiol and testosterone using the polymer chitosan.Methods: Five formulations (ET1 to ET5) were developed by varying the concentration of polymer and keeping the drug load constant. Physical parameters and drug excipient interaction studies were evaluated in all the formulations. In vitro skin permeation profiles of ethinylestradiol and testosterone from various formulations were simultaneously characterized in a thermostatically controlled modified Franz Diffusion cell using HPLC. Based on the physical parameters and in vitro skin permeation profile formulation ET3 containing 30 mg/ml of chitosan was found to be the best and chosen for further studies. Optimized formulation was subjected to in vivo pharmacokinetic analysis in rats using ELISA.Results: Stability profile of patch formulation ET3 depicted stability up to 3 mo. One week skin irritation evaluation in rats indicated that formulation ET3 was nonirritating. Combination transdermal patch across rat skin showed a maximum release of 92.936 and 95.03 % in 60 h with a flux of 2.088 and 21.398 µg/cm2h for ethinylestradiol and testosterone respectively.Conclusion: The net result of this study is the formulation of a stable, non-irritating transdermal patch of ethinylestradiol and testosterone, with good bioavailability and can be used as Estrogen Replacement Therapy (ERT) in postmenopausal women.


2012 ◽  
Vol 42 (1) ◽  
pp. 1-7 ◽  
Author(s):  
Robhash Kusam Subedi ◽  
Je-Phil Ryoo ◽  
Cheol Moon ◽  
Myung-Kwan Chun ◽  
Hoo-Kyun Choi

2018 ◽  
Vol 6 (3) ◽  
pp. 81-87
Author(s):  
Yashashri Mohan Inamdar ◽  
Bhushan Rane ◽  
Ashish Jain

Transdermal drug delivery system is promising but challenging system available for local as well as systemic effect of the drug. The prolonged residence of drug formulation in the skin is important for transdermal drug delivery. Nanogel drug delivery has remained as one of the most challenging task. The objective of the investigation was to develop a nanogel with reduced particle size in order to improve the bioavailability of the hydrophobic drug. The objective of the controlled and sustained delivery is to provide and maintained adequate concentration of drugs at the site of action. Nanogels based materials have high drug loading capacity, biocompatibility and biodegradability which are key points to design the drug delivery system effectively. Drug molecules loaded into the nanogel need to be retained and not to be transported out or leak prematurely while circulating in order to provide maximum therapeutic effects and minimum toxicity or side effects. The present study is to formulate nanosizes dispersion of Beta sitosterol by nanoprecipitation method and incorporating it into the gelling agent to produce nanogel by dispersion method. 1% of carbopol 934 shows better in-vitro drug release than the other concentrations of carbopol 934.


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