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Adv Pharm Bull. 2017;7(3): 419-425. doi: 10.15171/apb.2017.050
PMID: 29071224        PMCID: PMC5651063

Research Article

Process, Physicochemical Characterization and In-Vitro Assessment of Albendazole Microcrystals

Vandana KR 1, Prasanna Raju Yalavarthi 2 * , Harini Chowdary Vadlamudi 3, Jagadesh Kumar Yadav Kalluri 1, Arun Rasheed 4

Cited by CrossRef: 5


1- Mahfufah U, Fitri Sultan N, Nurul Fitri A, Elim D, Sya'ban Mahfud M, Wafiah N, Ardita Friandini R, Chabib L, Chabib A, Permana A. Application of multipolymers system in the development of hydrogel-forming microneedle integrated with polyethylene glycol reservoir for transdermal delivery of albendazole. European Polymer Journal. 2023;183:111762 [Crossref]
2- Sulistiawati S, Kristina Enggi C, Wiyulanda Iskandar I, Rachmad Saputra R, Sartini S, Rifai Y, Rahman L, Aswad M, Dian Permana A. Bioavailability enhancement of sildenafil citrate via hydrogel-forming microneedle strategy in combination with cyclodextrin complexation. International Journal of Pharmaceutics. 2024;655:124053 [Crossref]
3- Hashem F, Abd Allah F, Abdel-Rashid R, Hassan A. Glibenclamide nanosuspension inhaler: development,inĀ vitroandinĀ vivoassessment. Drug Development and Industrial Pharmacy. 2020;46(5):762 [Crossref]
4- Roy D, Kumar N, Upadhyay S, Thapa K, Kumar D. Molecular spectroscopy and optical effect of Albendazole chemical compound behaves as liquid crystal: A theoretical and experimental approach. Materials Science and Engineering: B. 2023;291:116351 [Crossref]
5- Wang B, Liu H, Zhang S, Cheng A, Yan C, Xu B, Gao Y. Aspirin microcrystals deposited on high-density microneedle tips for the preparation of soluble polymer microneedles. Drug Deliv and Transl Res. 2023;13(10):2639 [Crossref]