Synthesis, characterizations, and evaluation of crosslinked 5-fluorouracil-loaded thiolated chitosan-co-polymethacrylic acid hydrogel for colorectal cancer-targeted drug delivery
Hira Ijaz
1
,
Asif Mahmood
2
,
Muhammad Tayyab
3, 4
,
Rai Muhammad Sarfraz
5
,
Muhammad Rouf Akram
5
,
Bilal Haroon
5
,
Sadaf Ayub
6
,
Mohsan Raza
7
,
Farid Menaa
8
,
Fawzyah Obeedallah Albadi
9
,
Hyfa Ahmad Alzahrani
9
2
Faculty of Pharmacy, University of Chakwal, Chakwal, Pakistan
|
6
College of Nursing, Chakwal, Pakistan
|
8
Department of Internal Medicine and Nanomedicine, California Innovations Corporation, San Diego, USA
|
Publication type: Journal Article
Publication date: 2025-01-12
scimago Q2
wos Q2
SJR: 0.658
CiteScore: 6.7
Impact factor: 4.0
ISSN: 01700839, 14362449
Abstract
5-Fluorouracil (5-FU) is a firstline chemotherapeutic agent used for treating colorectal cancer, but has short half-life, rapid metabolism which requires its continuous intravenous (IV) infusion, resulting in significant adverse events. synthesis as well as characterizations of 5-FU-loaded thiolated chitosan (TCS)-co-polymethacrylic acid (MAA)-based hydrogel for colon targeting to treat colorectal carcinoma. Free radical polymerization was employed for preparation of the 5-FU-loaded hydrogel. Potassium persulfate (KPS), methylene bis-acrylamide (MBA), and MAA were employed as initiator, crosslinker, and monomer, respectively. All the six 5-FU-TCS-co-poly (MAA) formulations (TCS1-TCS6) were subjected to in-vitro pH-dependent swelling and dissolution studies at pH 1.2 and 7.4 at 37 °C. TCS4 was selected for further in-vivo studies based upon swelling and release patterns evaluation. Reverse phase HPLC (RP-HPLC)-coupled with UV spectrophotometer was employed for estimation of 5-FU in plasma. In-vivo studies were performed to determine pharmacokinetics parameters (i.e., Cmax, tmax and area-under-curve (AUC)) among control and treated groups. Release profile of TCS4 was optimal at pH 7.4. Indeed, 5-FU showed twofold higher release at pH 7.4 than at pH 1.2. Cmax and tmax of TCS4 were found to be 300 ± 0.87 µg/mL and 4 ± 0.00 h, which are significantly higher than Cmax and tmax oral solution (250 ± 0.65 µg/mL and 2 ± 0.00 h) used as a reference. TCS4-treated group depicted AUC0-t of 2767 ± 0.54 ng/ml.hr which was remarkably higher as compared to controlled group. Toxicity studies were carried out on male albino rats and histological slides showed no signs of toxicity. TCS4 hydrogel could be effectively administered per os (orally) to improve the bioavailability of 5-FU.
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Ijaz H. et al. Synthesis, characterizations, and evaluation of crosslinked 5-fluorouracil-loaded thiolated chitosan-co-polymethacrylic acid hydrogel for colorectal cancer-targeted drug delivery // Polymer Bulletin. 2025.
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Ijaz H., Mahmood A., Tayyab M., Sarfraz R. M., Akram M. R., Haroon B., Ayub S., Raza M., Menaa F., Albadi F. O., Alzahrani H. A. Synthesis, characterizations, and evaluation of crosslinked 5-fluorouracil-loaded thiolated chitosan-co-polymethacrylic acid hydrogel for colorectal cancer-targeted drug delivery // Polymer Bulletin. 2025.
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TY - JOUR
DO - 10.1007/s00289-024-05633-y
UR - https://link.springer.com/10.1007/s00289-024-05633-y
TI - Synthesis, characterizations, and evaluation of crosslinked 5-fluorouracil-loaded thiolated chitosan-co-polymethacrylic acid hydrogel for colorectal cancer-targeted drug delivery
T2 - Polymer Bulletin
AU - Ijaz, Hira
AU - Mahmood, Asif
AU - Tayyab, Muhammad
AU - Sarfraz, Rai Muhammad
AU - Akram, Muhammad Rouf
AU - Haroon, Bilal
AU - Ayub, Sadaf
AU - Raza, Mohsan
AU - Menaa, Farid
AU - Albadi, Fawzyah Obeedallah
AU - Alzahrani, Hyfa Ahmad
PY - 2025
DA - 2025/01/12
PB - Springer Nature
SN - 0170-0839
SN - 1436-2449
ER -
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@article{2025_Ijaz,
author = {Hira Ijaz and Asif Mahmood and Muhammad Tayyab and Rai Muhammad Sarfraz and Muhammad Rouf Akram and Bilal Haroon and Sadaf Ayub and Mohsan Raza and Farid Menaa and Fawzyah Obeedallah Albadi and Hyfa Ahmad Alzahrani},
title = {Synthesis, characterizations, and evaluation of crosslinked 5-fluorouracil-loaded thiolated chitosan-co-polymethacrylic acid hydrogel for colorectal cancer-targeted drug delivery},
journal = {Polymer Bulletin},
year = {2025},
publisher = {Springer Nature},
month = {jan},
url = {https://link.springer.com/10.1007/s00289-024-05633-y},
doi = {10.1007/s00289-024-05633-y}
}
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