Formulation development and evaluation of drug-in-adhesive-type transdermal patch of metoclopramide HCl

2021 ◽  
Author(s):  
Muhammad Suleman Imtiaz ◽  
Muhammad Harris Shoaib ◽  
Rabia Ismail Yousuf ◽  
Fatima Ramzan Ali ◽  
Muhammad Talha Saleem ◽  
...  
Author(s):  
Nani Tadhi ◽  
Himansu Chopra ◽  
Gyanendra Kumar Sharma

Transdermal patch is a drug delivery device in which the drugs are incorporated and is design in such a way that it releases the drug in sustained and at predetermined rate to deliver the drug through the skin to the systemic circulation painlessly. The aim of this research study was to formulate a controlled and sustained release transdermal matrix type patch of Methimazole. The matrix patch was prepared by solvent casting method using a various polymer in different concentration, HPMC (hydrophilic), Eudragit RL100 and Ethyl cellulose (hydrophobic) polymer. Total 9 prototype formulation were prepared and it was subjected for various evaluation test; weight uniformity, Folding endurance, thickness, Drug content, percent moisture content, percent Moisture uptake and In-vitro drug release study using Franz diffusion cell. The in-vitro CDR% data was fit into kinetics model to see the release kinetics from the patches. The Formulation F5 was choosen as a best formulation according to in-vitro drug release study. The in-vitro release was found 81.12 % in 12 hours, it followed zero order kinetics. The nature of polymer and concentration ratio of polymers plays a crucial role for obtaining a good transdermal patch design; therefore optimisation is very important step to formulate a desired TDDS. Therefore the result of the study encourages a further study and is hopeful that the present study would contribute to the recent pharmaceutical research for formulation development.


Author(s):  
Dhaval J. Patel ◽  
Ajay M. Vyas ◽  
Sanjesh G. Rathi ◽  
Shrenik K. Shah

The aim of the present investigation was to develop and evaluate transdermal patch of Apixaban. Formulation development of Apixaban Transdermal patch was initiated using Eudragit S 100 and HPMC E50 LV as matrix controlling polymer for matrix type Transdermal Patch. PEG 400 was selected as plasticizer. Glycerin was selected as permeability enhancer. Preformulation study was performed to check the drug excipient compatibility. The IR spectra of Drug and final formulation found satisfactory. There are no any interaction between drug and excipients. Further the linearity curve was developed in UV for method of analysis. Trials A1-A14 was initiated using different concentration of polymers in the formulation. The prepared patches were transparent and smooth in surface. The weight variation was found well within acceptable range. The thickness of patches was found uniform in nature and the variation is found satisfactory. Further, the surface pH of the patches was found between 6.8 to 7.1 and it is acceptable. The drug content, folding endurance and %elongation results of A1-A14 batches were found well within acceptable range. Initially the trial batches were taken with a single polymer like HPMC and EudragitS100. The drug release was not achieved as per the target drug release profile for 8hours. Hence the combination of these two polymers are taken and found better results than the single polymers. Based on the drug release data, it was observed that the A8 batch was the most satisfactory batch with respect to drug release and other parameters. Hence, the A8 batch selected as optimized batch and Stability study of the same batch initiated.


INDIAN DRUGS ◽  
2020 ◽  
Vol 57 (09) ◽  
pp. 60-66
Author(s):  
Aadesh Kumar ◽  
Mahendra Rana ◽  
Madan Bisht ◽  
Amita Rana

Peristrophe bicalyculata posses expectorant, analgesic, anti-inflamatory, antipyretic and antibacterial properties and has been traditionally used for the management of pain, sprain, and bone fracture. In this study we have tried to incorporate bioactive components of P. bicalyculata in transdermal patches which were developed by solvent casting method. Formulated patches were further evaluated for thickness, folding endurance, moisture content and moisture reuptake. Formulations showing good folding endurance were selected for estimation of the drug content and in-vitro drug release. The patches showing drug content more than 90% and drug release 85% were selected and fitted for Zero-order kinetics. This study will help in the development of transdermal patch for the treatment of bone fracture.


2009 ◽  
Vol 00 (00) ◽  
pp. 090630072328049-11
Author(s):  
Miriam López-Cervantes ◽  
José Juan Escobar-Chávez ◽  
Norma Casas-Alancaster ◽  
David Quintanar-Guerrero ◽  
Adriana Ganem-Quintanar
Keyword(s):  

2009 ◽  
Vol 36 (S 02) ◽  
Author(s):  
A Brennan ◽  
B Nagy ◽  
A Brandtmüller ◽  
SK Thomas ◽  
M Gallagher ◽  
...  

Sign in / Sign up

Export Citation Format

Share Document