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Bioimpacts. 2017;7(4): 227-239. doi: 10.15171/bi.2017.27
PMID: 29435430        PMCID: PMC5801534

Original Research

Development and evaluation of exemestane-loaded lyotropic liquid crystalline gel formulations

Muhammad Nuh Musa 1, Sheba Rani David 1 * ORCID, Ihsan Nazurah Zulkipli 1 ORCID, Abdul Hanif Mahadi 2, Srikumar Chakravarthi 3, Rajan Rajabalaya 1 * ORCID

Cited by CrossRef: 16


1- Blanco-Fernández G, Blanco-Fernandez B, Fernández-Ferreiro A, Otero-Espinar F. Lipidic lyotropic liquid crystals: Insights on biomedical applications. Advances in Colloid and Interface Science. 2023;313:102867 [Crossref]
2- Habib I, Kumara N, Lim C, Mahadi A. Dynamic Light Scattering and Zeta Potential Studies of Ceria Nanoparticles. SSP. 2018;278:112 [Crossref]
3- David S, Abdullah K, Shanmugam R, Thangavelu L, Das S, Rajabalaya R. Green Synthesis, Characterization and In Vivo Evaluation of White Tea Silver Nanoparticles with 5-Fluorouracil on Colorectal Cancer. BioNanoSci. 2021;11(4):1095 [Crossref]
4- Yang M, Gu Y, Tang X, Wang T, Liu J. Advancement of Lipid-Based Nanocarriers and Combination Application with Physical Penetration Technique . CDD. 2019;16(4):312 [Crossref]
5- Zhang X, Xiao Y, Huang Z, Chen J, Cui Y, Niu B, Huang Y, Pan X, Wu C. Smart phase transformation system based on lyotropic liquid crystalline@hard capsules for sustained release of hydrophilic and hydrophobic drugs. Drug Delivery. 2020;27(1):449 [Crossref]
6- Zhou X, Ge S, Sun Y, Ran M, Liu Y, Mao Y, Cao X. Highly sensitive SERS assay of genetically modified organisms in maize via a nanoflower substrate coupled with hybridization chain reaction amplification. New J Chem. 2021;45(44):20586 [Crossref]
7- Banerjee I, Fath K, Frayne S, Hugo M, Cohen B. Development of self-assembled phytosterol based nanoassemblies as vehicles for enhanced uptake of doxorubicin to HeLa cells. Materials Science and Engineering: C. 2019;97:451 [Crossref]
8- Chaturvedi S, Garg A. Development and optimization of nanoemulsion containing exemestane using box-behnken design. Journal of Drug Delivery Science and Technology. 2023;80:104151 [Crossref]
9- de Souza J, da Silva Pontes K, Alves T, Torqueti de Barros C, Amaral V, de Moura Crescencio K, Rios A, Batain F, Souto E, Severino P, Komatsu D, de Alencar Hausen M, Chaud M. Structural comparison, physicochemical properties, and in vitro release profile of curcumin-loaded lyotropic liquid crystalline nanoparticle: Influence of hydrotrope as interface stabilizers. Journal of Molecular Liquids. 2020;306:112861 [Crossref]
10- Farag D, Yousry C, Al-Mahallawi A, El-Askary H, Meselhy M, AbuBakr N. The efficacy of Origanum majorana nanocubosomal systems in ameliorating submandibular salivary gland alterations in streptozotocin-induced diabetic rats. Drug Delivery. 2022;29(1):62 [Crossref]
11- Fan M, Zheng J, Huang Y, Lu H, Lu M. Transdermal therapeutic systems in breast cancer therapy. Journal of Drug Delivery Science and Technology. 2023;90:105139 [Crossref]
12- M, E. Adsorption Behavior of Aromasin onto C20 and C24 Nano-Cages: Density Functional Theory Study. Russ J Inorg Chem. 2020;65(12):1848 [Crossref]
13- Ramadan A, Eladawy S, El-Enin A, Hussein Z. Development and investigation of timolol maleate niosomal formulations for the treatment of glaucoma. J Pharm Investig. 2020;50(1):59 [Crossref]
14- Chaturvedi S, Garg A. A comprehensive review on novel delivery approaches for exemestane. Journal of Drug Delivery Science and Technology. 2022;75:103655 [Crossref]
15- Lin S. Thermoresponsive gating membranes embedded with liquid crystal(s) for pulsatile transdermal drug delivery: An overview and perspectives. Journal of Controlled Release. 2020;319:450 [Crossref]


As a peer-reviewed international open-access journal, BioImpacts publishes articles on basic and translational aspects of pharmaceutical and biomedical sciences. 
Acceptance rate: 24% 
Publication fee: Free of charge