Items where Author is "Chowdhury, M.R."
Article
Chowdhury, M.R. and Moshikur, R.M. and Wakabayashi, R. and Moniruzzaman, M. and Goto, M. (2021) Biocompatible ionic liquids assisted transdermal co-delivery of antigenic protein and adjuvant for cancer immunotherapy. International Journal of Pharmaceutics, 601. ISSN 03785173
Islam, M.R. and Uddin, S. and Chowdhury, M.R. and Wakabayashi, R. and Moniruzzaman, M. and Goto, M. (2021) Insulin Transdermal Delivery System for Diabetes Treatment Using a Biocompatible Ionic Liquid-Based Microemulsion. ACS Applied Materials and Interfaces, 13 (36). pp. 42461-42472. ISSN 19448244
Uddin, S. and Islam, M.R. and Chowdhury, M.R. and Wakabayashi, R. and Kamiya, N. and Moniruzzaman, M. and Goto, M. (2021) Lipid-Based Ionic-Liquid-Mediated Nanodispersions as Biocompatible Carriers for the Enhanced Transdermal Delivery of a Peptide Drug. ACS Applied Bio Materials, 4 (8). pp. 6256-6267. ISSN 25766422
Md Moshikur, R. and Chowdhury, M.R. and Moniruzzaman, M. and Goto, M. (2020) Biocompatible ionic liquids and their applications in pharmaceutics. Green Chemistry, 22 (23). pp. 8116-8139. ISSN 14639262
Islam, M.R. and Chowdhury, M.R. and Wakabayashi, R. and Tahara, Y. and Kamiya, N. and Moniruzzaman, M. and Goto, M. (2020) Choline and amino acid based biocompatible ionic liquid mediated transdermal delivery of the sparingly soluble drug acyclovir. International Journal of Pharmaceutics, 582. ISSN 03785173
Md Moshikur, R. and Chowdhury, M.R. and Fujisawa, H. and Wakabayashi, R. and Moniruzzaman, M. and Goto, M. (2020) Design and Characterization of Fatty Acid-Based Amino Acid Ester as a New "green" Hydrophobic Ionic Liquid for Drug Delivery. ACS Sustainable Chemistry and Engineering, 8 (36). pp. 13660-13671. ISSN 21680485
Islam, M.R. and Chowdhury, M.R. and Wakabayashi, R. and Kamiya, N. and Moniruzzaman, M. and Goto, M. (2020) Ionic liquid-in-oil microemulsions prepared with biocompatible choline carboxylic acids for improving the transdermal delivery of a sparingly soluble drug. Pharmaceutics, 12 (4). ISSN 19994923
Moshikur, R.M. and Chowdhury, M.R. and Wakabayashi, R. and Tahara, Y. and Kamiya, N. and Moniruzzaman, M. and Goto, M. (2020) Ionic liquids with N-methyl-2-pyrrolidonium cation as an enhancer for topical drug delivery: Synthesis, characterization, and skin-penetration evaluation. Journal of Molecular Liquids, 299. ISSN 01677322
Uddin, S. and Chowdhury, M.R. and Wakabayashi, R. and Kamiya, N. and Moniruzzaman, M. and Goto, M. (2020) Lipid based biocompatible ionic liquids: Synthesis, characterization and biocompatibility evaluation. Chemical Communications, 56 (89). pp. 13756-13759. ISSN 13597345
Chowdhury, M.R. and Moshikur, R.M. and Wakabayashi, R. and Tahara, Y. and Kamiya, N. and Moniruzzaman, M. and Goto, M. (2019) Development of a novel ionic liquid-curcumin complex to enhance its solubility, stability, and activity. Chemical Communications, 55 (54). pp. 7737-7740. ISSN 13597345
Chowdhury, M.R. and Moshikur, R.M. and Wakabayashi, R. and Tahara, Y. and Kamiya, N. and Moniruzzaman, M. and Goto, M. (2019) In vivo biocompatibility, pharmacokinetics, antitumor efficacy, and hypersensitivity evaluation of ionic liquid-mediated paclitaxel formulations. International Journal of Pharmaceutics, 565. pp. 219-226. ISSN 03785173
Moshikur, R.M. and Chowdhury, M.R. and Wakabayashi, R. and Tahara, Y. and Moniruzzaman, M. and Goto, M. (2019) Ionic liquids with methotrexate moieties as a potential anticancer prodrug: Synthesis, characterization and solubility evaluation. Journal of Molecular Liquids, 278. pp. 226-233. ISSN 01677322
Moshikur, R.M. and Chowdhury, M.R. and Wakabayashi, R. and Tahara, Y. and Moniruzzaman, M. and Goto, M. (2018) Characterization and cytotoxicity evaluation of biocompatible amino acid esters used to convert salicylic acid into ionic liquids. International Journal of Pharmaceutics, 546 (1-2). pp. 31-38. ISSN 03785173
Chowdhury, M.R. and Moshikur, R.M. and Wakabayashi, R. and Tahara, Y. and Kamiya, N. and Moniruzzaman, M. and Goto, M. (2018) Ionic-Liquid-Based Paclitaxel Preparation: A New Potential Formulation for Cancer Treatment. Molecular Pharmaceutics, 15 (6). pp. 2484-2488. ISSN 15438384