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Volume 13 | Issue 9 |

Volume 13 | Issue 9 | Month  
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  Paper Title: To Design Famotine And Clindamycin Gastro Retentive Floating Tablet

  Author Name(s): Ms. Monali B Parbhane, Dr.Amjadkhan A. Pathan

  Published Paper ID: - IJCRT21X0359

  Register Paper ID - 291905

  Publisher Journal Name: IJPUBLICATION, IJCRT

  DOI Member ID: 10.6084/m9.doi.one.IJCRT21X0359 and DOI :

  Author Country : Indian Author, India, 333010 , JHUNJHUNU, 333010 , | Research Area: Pharmacy All

Published Paper URL: http://ijcrt.org/viewfull.php?&p_id=IJCRT21X0359
Published Paper PDF: download.php?file=IJCRT21X0359
Published Paper PDF: http://www.ijcrt.org/papers/IJCRT21X0359.pdf

  Your Paper Publication Details:

  Title: TO DESIGN FAMOTINE AND CLINDAMYCIN GASTRO RETENTIVE FLOATING TABLET

 DOI (Digital Object Identifier) :

 Pubished in Volume: 13  | Issue: 9  | Year: September 2025

 Publisher Name : IJCRT | www.ijcrt.org | ISSN : 2320-2882

 Subject Area: Pharmacy All

 Author type: Indian Author

 Pubished in Volume: 13

 Issue: 9

 Pages: t886-t935

 Year: September 2025

 Downloads: 136

  E-ISSN Number: 2320-2882

 Abstract

HPMC K4M, HPMC K15M, and HPMC K100M polymers are used in this study to make floating tablets of famotidine hydrochloride. Drug Delivery systems that are floating in the stomach have a lower bulk density than gastric fluids, therefore they stay buoyant in the stomach for a lengthy period of time without impacting gastric emptying rate. In the treatment of gastroesophageal reflex disease (GERD) and peptic ulcer (PUD). Famotidine is a histamine H2 receptor antagonist (GERD). Famotidine is an excellent option for a floating drug delivery system because of its short half-life, brief time in the stomach, and repeated doses. Melt granulation technique was used to make famotidine floating tablets using HPMC K4M, HPMC K15M, and HPMC K100M. In vitro buoyancy, drug polymer compatibility (IR Research), weight fluctuation, hardness, friability, thickness, drug content and invitro dissolution experiments were all performed on the floating tablets. Using in vitro buoyancy and dissolvability experiments, we were able to establish that the micromeritic characteristic were excellent. HPMC K100M-based formulation F4 has an excellent in vitro buoyancy lag time and floating time, and in vitro dissolution investigations demonstrate a 96.78 percent release for 12 hours. As a result of the findings of this research, it can be concluded that famotidine floating tablets provide the potential for longest- term drug delivery and a consequent reduction in dosage frequency


Licence: creative commons attribution 4.0

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Creative Commons Attribution 4.0 and The Open Definition

 Keywords

HPMC K4M, HPMC K15M, and HPMC K100M polymers, Famotidine Hydrochloride , Famotidine,

  License

Creative Commons Attribution 4.0 and The Open Definition



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ISSN: 2320-2882
Impact Factor: 7.97 and ISSN APPROVED
Journal Starting Year (ESTD) : 2013
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ISSN and 7.97 Impact Factor Details


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ISSN: 2320-2882
Impact Factor: 7.97 and ISSN APPROVED
Journal Starting Year (ESTD) : 2013
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