Development and Evaluation of Sodium Alginate-Polyacrylamide Graft-Co-polymer-Based Stomach Targeted Hydrogels of Famotidine

被引:67
作者
Tripathi, Rahul [1 ]
Mishra, Brahmeshwar [1 ]
机构
[1] Banaras Hindu Univ, Inst Technol, Dept Pharmaceut, Varanasi 221005, Uttar Pradesh, India
关键词
crosslinking; grafting; hydrogel beads; mechanical strength; polyacrylamide; DRUG-DELIVERY SYSTEMS; IN-VITRO; RELEASE CHARACTERISTICS; MODEL-DRUGS; PH; WATER; ACID; GUM; BEHAVIORS; TRANSPORT;
D O I
10.1208/s12249-012-9824-1
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
In the present study, grafting technology has been used to develop novel grafted hydrogel beads as controlled drug delivery carriers. The chemical crosslinking and grafting of polyacrylamide onto sodium alginate has been found to be efficient method for the development of new polymeric carrier. The successful crosslinking has been confirmed by Fourier transformed infrared spectroscopy, thermogravimetric analysis, and elemental analysis. The polymeric network of sodium alginate-co-polyacrylamide (NaAlg-g-PAM) has been interlinked by covalent and hydrogen bonds which also strength the gel network. Simple ionotropic gelation method has been used for the preparation of NaAlg-g-PAM hydrogel beads. Its swelling and gelation were dependent on monomer and crosslinker concentrations. Entrapment of the drug moiety (famotidine; an antiulcer drug) within the grafted beads has been confirmed by X-ray powder diffraction and differential scanning calorimetry. More than 75% of drug loading in beads occurred with the increase of monomer and crosslinker concentration. In vitro drug release was found to be sustained up to the 12 h with 80% drug release.
引用
收藏
页码:1091 / 1102
页数:12
相关论文
共 40 条
[1]   DIFFUSION IN GLASSY POLYMERS [J].
ALFREY, T ;
GURNEE, EF ;
LLOYD, WG .
JOURNAL OF POLYMER SCIENCE PART C-POLYMER SYMPOSIUM, 1966, (12PC) :249-&
[2]  
Amin S, 2009, SCI RES ESSAYS, V4, P1175
[3]  
Athawale VD, 1999, J MACROMOL SCI R M C, VC39, P445
[4]   Design of a drug delivery system based on poly(acrylamide-co-acrylic acid)/Chitosan nanostructured hydrogels [J].
Becerra-Bracamontes, Fausto ;
Sanchez-Diaz, Juan C. ;
Gonzalez-Alvarez, Al Jandro ;
Ortega-Gudino, Pedro ;
Michel-Valdivia, Enrique ;
Martinez-Ruvalcaba, Agustin .
JOURNAL OF APPLIED POLYMER SCIENCE, 2007, 106 (06) :3939-3944
[5]   5-fluorouracil release from copolymeric hydrogels of itaconic acid monoester .1. Acrylamide-co-monomethyl itaconate [J].
Blanco, MD ;
Garcia, O ;
Trigo, RM ;
Teijon, JM ;
Katime, I .
BIOMATERIALS, 1996, 17 (11) :1061-1067
[6]   SPECIFIC ANTISERA PRODUCED BY DIRECT IMMUNIZATION WITH SLICES OF POLYACRYLAMIDE-GEL CONTAINING SMALL AMOUNTS OF PROTEIN [J].
BOULARD, C ;
LECROISEY, A .
JOURNAL OF IMMUNOLOGICAL METHODS, 1982, 50 (02) :221-226
[7]   Famotidine polymorphic transformation in the grinding process significantly depends on environmental humidity or water content [J].
Cheng, Wen-Ting ;
Lin, Shan-Yang .
INTERNATIONAL JOURNAL OF PHARMACEUTICS, 2008, 357 (1-2) :164-168
[8]  
Coffin MD, 1995, US Patent, Patent No. 19955407687
[9]   Ionotropically emulsion gelled polysaccharides beads: Preparation, in vitro and in vivo evaluation [J].
Elmowafy, Enas M. ;
Awad, Gehanne A. S. ;
Mansour, Samar ;
El-Shamy, Abd El-Hamid A. .
CARBOHYDRATE POLYMERS, 2009, 75 (01) :135-142
[10]  
Ferreira L., 2001, Chem Educ., V6, P100, DOI [10.1007/s00897010461a, DOI 10.1007/S00897010461A]