213
Views
14
CrossRef citations to date
0
Altmetric
Articles

Mometasone furoate-loaded aspasomal gel for topical treatment of psoriasis: formulation, optimization, in vitro and in vivo performance

ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon, & ORCID Icon
Pages 885-896 | Received 23 Apr 2020, Accepted 10 Jun 2020, Published online: 08 Jul 2020

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (1)

Caroline Lamie, Enas Elmowafy, Maha H. Ragaie, Dalia A. Attia & Nahed D. Mortada. (2022) Assessment of antifungal efficacy of itraconazole loaded aspasomal cream: comparative clinical study. Drug Delivery 29:1, pages 1345-1357.
Read now

Articles from other publishers (13)

Sanja M. Petrovic & Marcela-Elisabeta Barbinta-Patrascu. (2023) Organic and Biogenic Nanocarriers as Bio-Friendly Systems for Bioactive Compounds’ Delivery: State-of-the Art and Challenges. Materials 16:24, pages 7550.
Crossref
Yaxin Zhao, Chao Wang, Bohang Zou, Lin Fu, Shushan Ren & Xiangyu Zhang. (2023) Design and Evaluation of Tretinoin Fatty Acid Vesicles for the Topical Treatment of Psoriasis. Molecules 28:23, pages 7868.
Crossref
Çiğdem Yücel, Gökçe Şeker Karatoprak, Sibel Ilbasmis-Tamer & İsmail Tuncer Değim. (2023) Ferulic acid-loaded aspasomes: A new approach to enhance the skin permeation, anti-aging and antioxidant effects. Journal of Drug Delivery Science and Technology, pages 104748.
Crossref
Shreya Shirodkar & Raghuvir Pissurlenkar. (2023) Formulation and Characterisation of Cilnidipine Microsponge Loaded Hydrogels for Antihypertensive Activity. Drug Delivery Letters 13:1, pages 48-68.
Crossref
Hadi Mokhtari Dowlatabad, Amir Mamdouh, Narges Yousefpour, Reihane Mahdavi, Ashkan Zandi, Parisa Hoseinpour, Seyed Mohammad Sadegh Moosavi-Kiasari, Fereshte Abbasvandi, Yasin Kordehlachin, Mohammad Parniani, Karim Mohammadpour-Aghdam, Pooya Faranoush, Mohammad Reza Foroughi-Gilvaee & Mohammad Abdolahad. (2023) High-Frequency (30 MHz–6 GHz) Breast Tissue Characterization Stabilized by Suction Force for Intraoperative Tumor Margin Assessment. Diagnostics 13:2, pages 179.
Crossref
Srushti Mahajan, Indrani Maji, Neelesh Kumar Mehra & Pankaj Kumar Singh. 2023. Nanomaterial-Based Drug Delivery Systems. Nanomaterial-Based Drug Delivery Systems 99 145 .
Mohammad Zaki Ahmad, Abdul Aleem Mohammed, Mohammed S. Algahtani, Awanish Mishra & Javed Ahmad. (2022) Nanoscale Topical Pharmacotherapy in Management of Psoriasis: Contemporary Research and Scope. Journal of Functional Biomaterials 14:1, pages 19.
Crossref
Szabolcs László, Zsófia Hajna, Attila Egyed, Erika Pintér & Ödön Wagner. (2022) Development of a Silicone-Based Polymer Matrix as a Suitable Transdermal Therapeutic System for Diallyl Disulfide. Pharmaceuticals 15:10, pages 1182.
Crossref
Pierre P. D. Kondiah, Thankhoe A. Rants’o, Sipho Mdanda, Lauwrence M. Mohlomi & Yahya E. Choonara. (2022) A Poly (Caprolactone)-Cellulose Nanocomposite Hydrogel for Transdermal Delivery of Hydrocortisone in Treating Psoriasis Vulgaris. Polymers 14:13, pages 2633.
Crossref
Nicola d'Avanzo, Maria Chiara Cristiano, Luisa Di Marzio, Maria Chiara Bruno, Donatella Paolino, Christian Celia & Massimo Fresta. (2022) Multidrug Idebenone/Naproxen Co‐loaded Aspasomes for Significant in vivo Anti‐inflammatory Activity. ChemMedChem 17:9.
Crossref
Farhatjahan Shaikh, Meenakshi Patel, Vandana Patel, Ashwini Patel, Gajanan Shinde, Santosh Shelke & Inayat Pathan. (2022) Formulation and optimization of cilnidipine loaded nanosuspension for the enhancement of solubility, dissolution and bioavailability. Journal of Drug Delivery Science and Technology 69, pages 103066.
Crossref
Gajanan Shinde, Ankita Sonchhatra, Santosh Shelke & Inayat Pathan. (2022) Design, optimization and in-vivo characterization of mupirocin loaded nanostructured lipid carrier based gel for effective treatment of impetigo. Journal of Drug Delivery Science and Technology 67, pages 102872.
Crossref
Gajanan Shinde, Sangita Shiyani, Santosh Shelke, Rashmi Chouthe, Deepak Kulkarni & Khushboo Marvaniya. (2020) Enhanced brain targeting efficiency using 5-FU (fluorouracil) lipid–drug conjugated nanoparticles in brain cancer therapy. Progress in Biomaterials 9:4, pages 259-275.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.