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Adv Pharm Bull. 2018;8(3): 411-417. doi: 10.15171/apb.2018.048
PMID: 30276137        PMCID: PMC6156480

Research Article

Enhanced Intestinal Permeation of Doxorubicin Using Chitosan Nanoparticles

Marziyeh Zare 1 ORCID, Soliman Mohammadi Samani 1 ORCID, Zahra Sobhani 2 * ORCID

Cited by CrossRef: 21


1- Mohamed N. Synthesis of Hybrid Chitosan Silver Nanoparticles Loaded with Doxorubicin with Promising Anti-cancer Activity. BioNanoSci. 2020;10(3):758 [Crossref]
2- Nisar S, Pandit A, Nadeem M, Pandit A, Rizvi M, Rattan S. γ-Radiation induced L-glutamic acid grafted highly porous, pH-responsive chitosan hydrogel beads: A smart and biocompatible vehicle for controlled anti-cancer drug delivery. International Journal of Biological Macromolecules. 2021;182:37 [Crossref]
3- Li Y, Zhang W, Zhao R, Zhang X. Advances in oral peptide drug nanoparticles for diabetes mellitus treatment. Bioactive Materials. 2022;15:392 [Crossref]
4- Yee Kuen C, Masarudin M. Chitosan Nanoparticle-Based System: A New Insight into the Promising Controlled Release System for Lung Cancer Treatment. Molecules. 2022;27(2):473 [Crossref]
5- Masjedi M, Azadi A, Heidari R, Mohammadi-Samani S. Brain targeted delivery of sumatriptan succinate loaded chitosan nanoparticles: Preparation, In vitro characterization, and (Neuro-)pharmacokinetic evaluations. Journal of Drug Delivery Science and Technology. 2021;61:102179 [Crossref]
6- Imam S, Alshehri S, Altamimi M, Hussain A, Qamar W, Gilani S, Zafar A, Alruwaili N, Alanazi S, Almutairy B. Formulation of Piperine–Chitosan-Coated Liposomes: Characterization and In Vitro Cytotoxic Evaluation. Molecules. 2021;26(11):3281 [Crossref]
7- Sobhani Z, Khalifeh R, Banizamani M, Rajabzadeh M. Water-soluble ZnO quantum dots modified by polyglycerol: The pH-sensitive and targeted fluorescent probe for delivery of an anticancer drug. Journal of Drug Delivery Science and Technology. 2022;76:103452 [Crossref]
8- Suwanbumrung D, Wongkhieo S, Keaswejjareansuk W, Dechbumroong P, Kamble M, Yata T, Kitiyodom S, Rodkhum C, Thompson K, Namdee K, Pirarat N. Oral delivery of a Streptococcus agalactiae vaccine to Nile tilapia (Oreochromis niloticus) using a novel cationic-based nanoemulsion containing bile salts. Fish & Shellfish Immunology. 2023;139:108913 [Crossref]
9- Rahat I, Imam S, Rizwanullah M, Alshehri S, Asif M, Kala C, Taleuzzaman M. Thymoquinone-entrapped chitosan-modified nanoparticles: formulation optimization to preclinical bioavailability assessments. Drug Delivery. 2021;28(1):973 [Crossref]
10- Imam S, Alshehri S, Altamimi M, Hussain A, Alyahya K, Mahdi W, Qamar W. Formulation and Evaluation of Luteolin-Loaded Nanovesicles: In Vitro Physicochemical Characterization and Viability Assessment. ACS Omega. 2022;7(1):1048 [Crossref]
11- Jones I, Dass C. Doxorubicin-induced cardiotoxicity: causative factors and possible interventions. 2022;74(12):1677 [Crossref]
12- Magaña I, Enríquez Medrano F, Cabrera C, Córdova T, Díaz Elizondo A, Mendoza R, Saade H, Olivares Romero J, Díaz de León R. Nanocompuestos bio-basados de polimirceno/nanocristales de celulosa obtenidos por polimerización “in situ”. TECNOCIENCIA Chih. 2023;17(4):e1337 [Crossref]
13- Chen X, Zhang H, Tian C, Jia J, Xie H. Multiscale Magnetic Hydrogel Robot with a Core–Shell Structure for Active Targeted Delivery. ACS Appl Polym Mater. 2022;4(11):8645 [Crossref]
14- Virmani T, Kumar G, Sharma A, Pathak K, Akhtar M, Afzal O, Altamimi A. Amelioration of Cancer Employing Chitosan, Its Derivatives, and Chitosan-Based Nanoparticles: Recent Updates. Polymers. 2023;15(13):2928 [Crossref]
15- Rashedi J, Ghorbani Haghjo A, Mesgari Abbasi M, Dastranj Tabrizi A, Yaqoubi S, Sanajou D, Ashrafi Jigheh Z, Namvaran A, Mohammadi A, Mohammadi Khoshraj J, Baradaran B. Anti-tumor Effect of Quercetin Loaded Chitosan Nanoparticles on Induced Colon Cancer in Wistar Rats. Adv Pharm Bull. 2019;9(3):409 [Crossref]
16- Kaur P, Singh D, Singh G, Attri S, Singh D, Sharma M, Buttar H, Bedi N, Singh B, Arora S. Pharmacokinetics and toxicity profiling of 4-(methylthio)butyl isothiocyanate with special reference to pre-clinical safety assessment studies. Toxicon. 2022;212:19 [Crossref]
17- Marshall S, Taweesap M, Saelim B, Pachana V, Benlateh N, Sangangam S, Bumrungsin A, Kholo-asae H, Wongtechanon I. Cytotoxicity Enhancement in Osteosarcoma with Multifunctional I-131 Radiotherapeutic Nanoparticles: In Vitro Three-Dimensional Spheroid Model and Release Kinetics Modeling. Molecules. 2024;29(3):630 [Crossref]
18- Yu F, Zhu Y, Liu Y, Qiu G, Shang X, Meng T, Yuan H, Hu F. Poly-γ-glutamic acid derived nanopolyplexes for up-regulation of gamma-glutamyl transpeptidase to augment tumor active targeting and enhance synergistic antitumor therapy by regulating intracellular redox homeostasis. Biomater Sci. 2020;8(21):5955 [Crossref]
19- Samrot A, Sean T, Kudaiyappan T, Bisyarah U, Mirarmandi A, Faradjeva E, Abubakar A, Ali H, Angalene J, Suresh Kumar S. Production, characterization and application of nanocarriers made of polysaccharides, proteins, bio-polyesters and other biopolymers: A review. International Journal of Biological Macromolecules. 2020;165:3088 [Crossref]
20- Almada M, Luna M, Gastelum Cabrera M, Beltrán O, Martínez Flores P, García Mar J, Topete A, López Mata M, Reyes Márquez V, Burboa M, Valdés M, Juárez-Onofre J. Nanopartículas basadas en Quitosano con potenciales aplicaciones en biomedicina. TECNOCIENCIA Chih. 2023;17(4):e1293 [Crossref]
21- El-Shahawy A, Elnagar N, Zohery M, Abd Elhafeez M, El-Dek S. Smart nanocarrier-based chitosan @silica coated carbon nanotubes composite for breast cancer treatment approach. International Journal of Polymeric Materials and Polymeric Biomaterials. 2022;71(12):910 [Crossref]
22- Xue J, Blesso C, Luo Y. A Comprehensive Review of Nanoparticles for Oral Delivery in Food: Biological Fate, Evaluation Models, and Gut Microbiota Influences. Annu Rev Food Sci Technol. 2023;14(1):1 [Crossref]
23- Ziółkowski H, Szteyn K, Jędrzkiewicz D, Rasiński B, Jaroszewski J. Tigecycline Absorption Improved by Selected Excipients. Pharmaceuticals. 2023;16(8):1111 [Crossref]