Radioprotection and enhanced efficacy by curcumin-loaded chitosan nanoparticles in mitigating radiation-induced liver injury

被引:1
|
作者
Azmoonfar, Rasool [1 ]
Moslehi, Masoud [1 ]
Shahbazi-Gahrouei, Daryoush [1 ]
Shiri, Elham [2 ]
Azizi, Mehdi [3 ]
机构
[1] Isfahan Univ Med Sci, Sch Med, Dept Med Phys, Esfahan, Iran
[2] Hamadan Univ Med Sci, Sch Med, Dept Anat Sci, Hamadan, Iran
[3] Hamadan Univ Med Sci, Avicenna Hlth Res Inst, Canc Res Ctr, Inst Canc, Hamadan, Iran
关键词
Curcumin; Nanoparticles; Chitosan; Radiation protection; Liver; Radiation injuries; LIPID-PEROXIDATION; IONIZING-RADIATION; DELIVERY; PROTECTS; CELLS; NANOFORMULATION; IRRADIATION; MODULATION; EXPRESSION; TOXICITY;
D O I
10.1016/j.bbrc.2025.151512
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Introduction: This study aimed to evaluate the protective effect of curcumin-loaded chitosan nanoparticles (CurCsNPs) against radiation-induced liver damage in rats. Curcumin's antioxidant and anti-inflammatory properties, combined with chitosan's drug delivery potential, were leveraged to mitigate the harmful effects of ionizing radiation (IR) on the liver. Methods: Cur-CsNPs were characterized using TEM, XRD, DLS, and FTIR. Spectrophotometry assessed drug loading and curcumin release. Cytotoxicity was evaluated using MTT assay on HepG2 cells. The experimental design involved eight groups: a control group, three groups receiving different doses of Cur-CsNPs (25, 50, 100 mg/kg), three groups receiving the same doses plus irradiation (6Gy), and one group receiving irradiation only. H&E and MTC staining were used for histopathological evaluation. The activity of liver enzymes ALT, AST, ALP, and GGT was measured. Results: In this study, three types of Cur-CsNPs were synthesized using varying ratios of chitosan to TPP ratios, resulting in average sizes of 660 nm, 230 nm, and 120 nm. Cur-CsNPs which exhibited the highest encapsulation efficiency, was selected for further evaluation. TEM confirmed its spherical shape with an average size of 37 nm. Drug release studies demonstrated an 85 % release at pH 5.4 within 70 h. MTT assays indicated low cytotoxicity, with high cell viability maintained across all concentrations and time points. Liver enzyme analysis in rats revealed that Cur-CsNPs, particularly when combined with radiation, mitigated radiation-induced liver damage. Histological examination showed that treatment with Cur-CsNPs reduced liver damage, inflammation, necrosis, and fibrosis in irradiated groups compared to the radiation-only group, which exhibited severe liver damage. Conclusion: The findings of this study show that Cur-CsNPs possess significant potential as a therapeutic agent for protecting against radiation-induced liver injury. The favorable drug release profile, low cytotoxicity, and protective effects observed in enzyme levels and histological assessments highlight the efficacy of Cur-CsNPs. The findings imply that Cur-CsNPs could be an effective strategy for enhancing liver protection in radiation exposure scenarios, warranting further investigation into their mechanisms of action and potential clinical applications.
引用
收藏
页数:15
相关论文
共 50 条
  • [1] Curcumin-loaded pH-sensitive carboxymethyl chitosan nanoparticles for the treatment of liver cancer
    Yang, Xinyu
    Meng, Dongdong
    Jiang, Ning
    Wang, Chaoxing
    Zhang, Jinbo
    Hu, Yanqiu
    Lun, Jiaming
    Jia, Rui
    Zhang, Xueyun
    Sun, Weitong
    JOURNAL OF BIOMATERIALS SCIENCE-POLYMER EDITION, 2024, 35 (05) : 628 - 656
  • [2] Characterization of curcumin-loaded lecithin-chitosan bioactive nanoparticles
    Valencia, Marcela Sarmento
    da Silva Junior, Mauricio Franco
    Xavier-Junior, Francisco Humberto
    Veras, Bruno de Oliveira
    Sales de Albuquerque, Priscilla Barbosa
    de Oliveira Borba, Elizabeth Fernanda
    da Silva, Teresinha Goncalves
    Xavier, Viviane Lansky
    de Souza, Marthyna Pessoa
    Carneiro-da-Cunha, Maria das Gracas
    CARBOHYDRATE POLYMER TECHNOLOGIES AND APPLICATIONS, 2021, 2
  • [3] Evaluation of curcumin-loaded chitosan nanoparticles for wound healing activity
    Kumbhar, Smita
    Khairate, Rupali
    Bhatia, Manish
    Choudhari, Prafulla
    Gaikwad, Vinod
    ADMET AND DMPK, 2023, 11 (04): : 601 - 613
  • [4] Efficacy of Eugenol Loaded Chitosan Nanoparticles on Sepsis Induced Liver Injury in Rats
    Qutb, Sarah Ali
    Soliman, Amel Mahmoud
    Fahmy, Sohair Ramadan
    Mohamed, Ayman Saber
    RECENT ADVANCES IN INFLAMMATION & ALLERGY DRUG DISCOVERY, 2024,
  • [5] Enhanced Antitumor Efficacy of Curcumin-Loaded PLGA Nanoparticles Coated with Unique Fungal Hydrophobin
    Lu Sun
    Hui Xu
    Jing-hua Xu
    Shao-ning Wang
    Jun-wei Wang
    Hong-feng Zhang
    Wei-ru Jia
    Lin-sen Li
    AAPS PharmSciTech, 21
  • [6] Enhanced Antitumor Efficacy of Curcumin-Loaded PLGA Nanoparticles Coated with Unique Fungal Hydrophobin
    Sun, Lu
    Xu, Hui
    Xu, Jing-hua
    Wang, Shao-ning
    Wang, Jun-wei
    Zhang, Hong-feng
    Jia, Wei-ru
    Li, Lin-sen
    AAPS PHARMSCITECH, 2020, 21 (05)
  • [7] ASPECTS OF RADIATION-INDUCED GASTROINTESTINAL INJURY AND RADIOPROTECTION
    DUBOIS, A
    PHARMACOLOGY & THERAPEUTICS, 1988, 39 (1-3) : 67 - 72
  • [8] Novel curcumin-loaded chitosan-polyelectrolyte complexed nanoparticles and their characteristics
    Eun Ju Lee
    Han Sol Kwon
    Kwang-Hee Lim
    Korean Journal of Chemical Engineering, 2021, 38 : 354 - 365
  • [9] DESIGN AND OPTIMIZATION METHOD FOR OBTAINING PIOGLITAZONE AND CURCUMIN-LOADED CHITOSAN NANOPARTICLES
    Lupascu, Florentina
    Constantin, Sandra Madalina
    Profire, Bianca Stefania
    Vasincu, Loana
    Ionescu, Oana Maria
    Iacob, Andreea Teodora
    Iurascu, Teodora
    Ababei, Andra
    Apotrosoaei, Maria
    Jitareanu, Alexandra
    Sava, Alexandru
    Profire, Lenuta
    MEDICAL-SURGICAL JOURNAL-REVISTA MEDICO-CHIRURGICALA, 2022, 126 (01): : 126 - 134
  • [10] Novel curcumin-loaded chitosan-polyelectrolyte complexed nanoparticles and their characteristics
    Lee, Eun Ju
    Kwon, Han Sol
    Lim, Kwang-Hee
    KOREAN JOURNAL OF CHEMICAL ENGINEERING, 2021, 38 (02) : 354 - 365