Transdermal delivery of crocin using bacterial nanocellulose membrane
This work reports the inclusion of crocin (an active agent of saffron) into bacterial nanocellulose (BNC) membrane for transdermal drug delivery. The BNC showed good uptake of the crocin based on the swelling studies and vibrational peaks of the FTIR spectra. Surface morphology of the crocin loaded...
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2019
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my.utm.890632021-01-26T08:42:00Z http://eprints.utm.my/id/eprint/89063/ Transdermal delivery of crocin using bacterial nanocellulose membrane Abba, Mustapha Ibrahim, Zaharah Chong, Chun Shiong Ahmad Zawawi, Nurliyana Abdul Kadir, Mohammed Rafiq Mohd. Yusof, Abdul Halim Abd. Razak, Saiful Izwan Q Science (General) This work reports the inclusion of crocin (an active agent of saffron) into bacterial nanocellulose (BNC) membrane for transdermal drug delivery. The BNC showed good uptake of the crocin based on the swelling studies and vibrational peaks of the FTIR spectra. Surface morphology of the crocin loaded BNC showed that the fibrous nano feature was still intact with no fiber damages. The crocin release via direct dissolution showed typical burst release. Franz diffusion test revealed stable and prolong drug permeation. Partition coefficient of the BNC-crocin via mice epidermal skin diffusion was found to be 2.44×10−4 cm−2 min−1 with the average mass flux of 0.53 cm−2 min−1. This facile method of utilizing BNC for the carrier of crocin can be useful for administrating other water soluble active compound. Thus BNC opens up choices for the delivery of crocin for medicinal purposes. Korean Fiber Society 2019-10 Article PeerReviewed Abba, Mustapha and Ibrahim, Zaharah and Chong, Chun Shiong and Ahmad Zawawi, Nurliyana and Abdul Kadir, Mohammed Rafiq and Mohd. Yusof, Abdul Halim and Abd. Razak, Saiful Izwan (2019) Transdermal delivery of crocin using bacterial nanocellulose membrane. Fibers and Polymers, 20 (10). pp. 2025-2031. ISSN 1229-9197 http://dx.doi.org/10.1007/s12221-019-9076-8 |
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Q Science (General) Abba, Mustapha Ibrahim, Zaharah Chong, Chun Shiong Ahmad Zawawi, Nurliyana Abdul Kadir, Mohammed Rafiq Mohd. Yusof, Abdul Halim Abd. Razak, Saiful Izwan Transdermal delivery of crocin using bacterial nanocellulose membrane |
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This work reports the inclusion of crocin (an active agent of saffron) into bacterial nanocellulose (BNC) membrane for transdermal drug delivery. The BNC showed good uptake of the crocin based on the swelling studies and vibrational peaks of the FTIR spectra. Surface morphology of the crocin loaded BNC showed that the fibrous nano feature was still intact with no fiber damages. The crocin release via direct dissolution showed typical burst release. Franz diffusion test revealed stable and prolong drug permeation. Partition coefficient of the BNC-crocin via mice epidermal skin diffusion was found to be 2.44×10−4 cm−2 min−1 with the average mass flux of 0.53 cm−2 min−1. This facile method of utilizing BNC for the carrier of crocin can be useful for administrating other water soluble active compound. Thus BNC opens up choices for the delivery of crocin for medicinal purposes. |
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Article |
author |
Abba, Mustapha Ibrahim, Zaharah Chong, Chun Shiong Ahmad Zawawi, Nurliyana Abdul Kadir, Mohammed Rafiq Mohd. Yusof, Abdul Halim Abd. Razak, Saiful Izwan |
author_facet |
Abba, Mustapha Ibrahim, Zaharah Chong, Chun Shiong Ahmad Zawawi, Nurliyana Abdul Kadir, Mohammed Rafiq Mohd. Yusof, Abdul Halim Abd. Razak, Saiful Izwan |
author_sort |
Abba, Mustapha |
title |
Transdermal delivery of crocin using bacterial nanocellulose membrane |
title_short |
Transdermal delivery of crocin using bacterial nanocellulose membrane |
title_full |
Transdermal delivery of crocin using bacterial nanocellulose membrane |
title_fullStr |
Transdermal delivery of crocin using bacterial nanocellulose membrane |
title_full_unstemmed |
Transdermal delivery of crocin using bacterial nanocellulose membrane |
title_sort |
transdermal delivery of crocin using bacterial nanocellulose membrane |
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Korean Fiber Society |
publishDate |
2019 |
url |
http://eprints.utm.my/id/eprint/89063/ http://dx.doi.org/10.1007/s12221-019-9076-8 |
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