Multifunctional Curcumin Nanoparticles: Oncolytic, Radical Scavenging, Regenerative, Hepatoprotective, and Bactericidal Effects

Jin, C., Wang, K., Oppong-Gyebi, A., & Hu, J. (2020). Application of nanotechnology in cancer diagnosis and therapy-a mini-review. Int J Med, 17(18), 2964.

CAS  Google Scholar 

Mokhosi, S. R., Mdlalose, W., Nhlapo, A., & Singh, M. (2022). Advances in the synthesis and application of magnetic ferrite nanoparticles for cancer therapy. Pharmaceutics, 14(5), 937.

Article  CAS  PubMed  PubMed Central  Google Scholar 

Otalvaro, J. O., Álvarez, T. R., Gurovic, M. S. V., Lassalle, V., Agotegaray, M., Avena, M., & Brigante, M. (2022). Magnetic mesoporous silica nanoparticles for drug delivery systems: Synthesis, characterization and application as norfloxacin carrier. Pharma Sci, 111(10), 2879–2887.

Article  CAS  Google Scholar 

Saha Ali, M. R., Khaleque, M. A., Bacchu, M. S., Aly, M. A. S., & Khan, M. (2023). Z. H. Metal oxide nanocarrier for targeted drug delivery towards the treatment of global infectious diseases: A review. Drug Delivery Sci and Tech, 86, 104728.

Hyeon, Chung, Y., Park, J., Lee, S. S., Kim, Y. W., & Park, B. H. (2002). Synthesis of highly crystalline and monodisperse cobalt ferrite nanocrystals. Phy Chm, 106(27), 6831–6833.

Google Scholar 

Aygar Kaya, M., Özkan, N., Kocabıyık, S., & Volkan, M. (2015). Preparation of silica coated cobalt ferrite magnetic nanoparticles for the purification of histidine-tagged proteins. Phy and Chm of Solids, 87, 64–71.

Article  Google Scholar 

Mokhosi, S. R., Mdlalose, W., Nhlapo, A., & Singh, M. (2022). Advances in the synthesis and application of magnetic ferrite nanoparticles for cancer therapy. Pharmaceutics, 14(5), 937.

Article  CAS  PubMed  PubMed Central  Google Scholar 

Ahmad, R. S., Imran, M., Khan, M. K., Ahmad, M. H., Imran, A., & Ateeq, H. (2023). Introductory Chapter: Curcumin and Its Therapeutic Potency. In Ginger-Cultivation and Use.

Rai, B., Kaur, J., Jacobs, R., & Singh, J. (2010). Possible action mechanism for curcumin in pre-cancerous lesions based on serum and salivary markers of oxidative stress. J Oral Science, 52(2), 251–256.

Article  CAS  Google Scholar 

Mukerjee, A., & Vishwanatha, J. K. (2009). Formulation, characterization and evaluation of curcumin-loaded PLGA nanospheres for cancer therapy. Anticancer R, 29(10), 3867–3875.

CAS  Google Scholar 

Li, Z., Zhang, J., Li, X., Guo, X., & Zhang, Z. (2018). Preparation and Evaluation of Multifunctional Autofluorescent Magnetic Nanoparticle–Based Drug Delivery Systems against Mammary Cancer. J pharma Sci, 107(10), 2694–2701.

Article  CAS  Google Scholar 

Pandit, S., Kim, H. J., Kim, J. E., & Jeon, J. G. (2011). Separation of an effective fraction from turmeric against Streptococcus mutans biofilms by the comparison of curcuminoid content and anti-acidogenic activity. Food chm, 126(4), 1565–1570.

Article  CAS  Google Scholar 

Panahi, Y., Khalili, N., Hosseini, M. S., Abbasinazari, M., & Sahebkar, A. (2014). Lipid-modifying effects of adjunctive therapy with curcuminoids–piperine combination in patients with metabolic syndrome: results of a randomized controlled trial. Comm therapies in Med, 22(5), 851–857.

Google Scholar 

Tiwari, G., Tiwari, R., Sriwastawa, B., Bhati, L., Pandey, S., Pandey, P., & Bannerjee, S. K. (2012). Drug delivery systems: An updated review. Int J of pharma investigation, 2(1), 2.

Article  Google Scholar 

Wu, S., Sun, A., Zhai, F., Wang, J., Xu, W., Zhang, Q., & Volinsky, A. A. (2011). Fe3O4 magnetic nanoparticles synthesis from tailings by ultrasonic chemical co-precipitation. Materials Letters, 65(12), 1882–1884.

Article  CAS  Google Scholar 

Mughal, T. A., Saleem, M. Z., Ali, S., Anwar, K. K., Bashir, M. M., Babar, M., & Khan, M. A. (2019). Evaluation of Hepatotoxicity of Carbon Tetrachloride and Pharmacological Intervention by Vitamin E in Balb C Mice. Pakistan Journal of Zoology, 51(2), 755–761.

Article  CAS  Google Scholar 

Mughal, T. A., Ali, S., Mumtaz, S., Summer, M., Khatoon, S., & Khalil, S. (2024). Antibacterial and wound healing efficacy of silver nanoparticles synthesized from root bark of berberis lycium royle. ChemistrySelect, 9(19), e202401292.

Cao, S. W., Zhu, Y. J., Ma, M. Y., Li, L., & Zhang, L. (2008). Hierarchically nanostructured magnetic hollow spheres of Fe3O4 and γ-Fe2O3: preparation and potential application in drug delivery. J Phy Chem, 112(6), 1851–1856.

CAS  Google Scholar 

Narsimulu, D., Padmaraj, O., Srinadhu, E. S., & Satyanarayana, N. (2017). Synthesis, characterization and electrical properties of mesoporous nanocrystalline CoFe2O4 as a negative electrode material for lithium battery applications. J Material Science, 28, 17208–17214.

CAS  Google Scholar 

Cheraghali, S., Dini, G., Caligiuri, I., Back, M., & Rizzolio, F. (2023). PEG-coated MnZn ferrite nanoparticles with hierarchical structure as MRI contrast agent. Nanomaterials, 13(3), 452.

Article  CAS  PubMed  PubMed Central  Google Scholar 

Joseph, A. M., Thangaraj, B., Gomathi, R. S., & Adaikalam, A. A. R. (2017). Synthesis and characterization of cobalt ferrite magnetic nanoparticles coated with polyethylene glycol. Adv. Nano Biol. ; M&D, 1, 71–77.

Rohman, A., Sudjadi, S., Devi, D., Ramadhani, D., & Nugroho, A. (2015). Analysis of curcumin in Curcuma longa and Curcuma xanthorriza using FTIR spectroscopy and chemometrics. Research Journal of Medicinal Plant, 9(4), 179–186.

Article  CAS  Google Scholar 

Bansal, M., Aghamkar, P., & Ahlawat, D. S. (2018). Structural and Magnetic Investigations of Silica coated Cobalt-Ferrite Nanocomposites. Oriental J Chemistry, 34(4), 2060–2067.

Article  CAS  Google Scholar 

Khan, B., Nawaz, M., Waseem, M., Shahzad, N., Alsaiari, A. A., Razzokov, J., & Haq, S. (2024). Fabrication and characterization of PEGylated magnetite nanoparticles for sustained curcumin release: in-vitro study. Materials Research Express, 11(10), 105007.

Article  CAS  Google Scholar 

Calero-DdelC, V. L., & Rinaldi, C. (2007). Synthesis and magnetic characterization of cobalt-substituted ferrite (CoxFe3– xO4) nanoparticles. J Magnetism and Magnetic Materials, 314(1), 60–67.

Article  CAS  Google Scholar 

Hankare, P. P., Sanadi, K. R., Garadkar, K. M., Patil, D. R., & Mulla, I. S. (2013). Synthesis and characterization of nickel substituted cobalt ferrite nanoparticles by sol–gel auto-combustion method. J SAlloys and Compounds, 553, 383–388.

Article  CAS  Google Scholar 

Senthil, V. P., Gajendiran, J., Raj, S. G., Shanmugavel, T., Kumar, G. R., & Reddy, C. P. (2018). Study of structural and magnetic properties of cobalt ferrite (CoFe2O4) nanostructures. Chemical Physics Letters, 695, 19–23.

Article  CAS  Google Scholar 

Fiaz, S., Ahmed, M. N., Haq, Shah, I., S. W. A., & Waseem, M. (2023). Green synthesis of cobalt ferrite and Mn doped cobalt ferrite nanoparticles: Anticancer, antidiabetic and antibacterial studies. J Trace Elements in Medicine and Biology, 80, 127292.

Article  CAS  Google Scholar 

Chen, X., Zou, L. Q., Niu, J., Liu, W., Peng, S. F., & Liu, C. M. (2015). The stability, sustained release and cellular antioxidant activity of curcumin nanoliposomes. Molecules, 20(8), 14293–14311.

Article  CAS  PubMed  PubMed Central  Google Scholar 

Cruz, D. M., Mostafavi, E., Vernet-Crua, A., Barabadi, H., Shah, V., Cholula-Díaz, J. L., & Webster, T. J. (2020). Green nanotechnology-based zinc oxide (ZnO) nanomaterials for biomedical applications: a review. J Physics Materials, 3(3), 034005.

Article  CAS  Google Scholar 

Favela-Camacho, S. E., Pérez-Robles, J. F., García-Casillas, P. E., & Godinez-Garcia, A. (2016). Stability of magnetite nanoparticles with different coatings in a simulated blood plasma. J Nanoparticle Research, 18, 1–9.

Article  CAS  Google Scholar 

Li, Z., Zhang, J., Li, X., Guo, X., & Zhang, Z. (2018). Preparation and Evaluation of Multifunctional Autofluorescent Magnetic Nanoparticle–Based Drug Delivery Systems against Mammary Cancer. J Pharma Sci, 107(10), 2694–2701.

Article  CAS  Google Scholar 

Wang, M., Huang, X., Zheng, H., Tang, Y., Zeng, K., Shao, L., & Li, L. (2021). Nanomaterials applied in wound healing: Mechanisms, limitations and perspectives. Journal Of Controlled Release, 337, 236–247.

Article  CAS  PubMed  Google Scholar 

Onay, U. V., Xu, D., Biyashev, D., Evans, S. T., Demczuk, M. M., Neef, T., & Lu, K. Q. (2024). Attenuation of skin injury by a MARCO targeting PLGA nanoparticle. NPJ Regenerative Med, 9(1), 1–11.

Article  Google Scholar 

Phannasorn, W., Chariyakornkul, A., Sookwong, P., & Wongpoomchai, R. (2021). Comparative studies on the Hepatoprotective effect of white and Coloured Rice bran oil against acetaminophen-induced oxidative stress in mice through antioxidant‐and xenobiotic‐metabolizing systems. Oxidative Medicine and Cellular Longevity, 2021(1), 5510230.

Article  Google Scholar 

Mhaidat, I., Tahat, L., Alomari, G., Al-Quraan, L., Gharaibeh, A., & Al-Trad, B. (2024). The Hepatoprotective Effect of a Newly Synthesized 5-mercapto-1, 2, 4-triazole Derivative based on Nalidixic Acid against CCl4 induced Oxidative Stress in Mice. Letters Drug Design & Discovery, 21(17), 3823–3829.

Article  CAS  Google Scholar 

Fathy, M. M., Fahmy, H. M., Balah, A. M., Mohamed, F. F., & Elshemey, W. M. (2019). Magnetic nanoparticles-loaded liposomes as a novel treatment agent for iron deficiency anemia: In vivo study. Life sciences, 234, 116787.

Article  CAS  PubMed  Google Scholar 

Radomski, A., Jurasz, P., Alonso-Escolano, D., Drews, M., Morandi, M., Malinski, T., & Radomski, M. W. (2005). Nanoparticle‐induced platelet aggregation and vascular thrombosis. British J pharma, 146(6), 882–889.

Article  CAS  Google Scholar 

Comments (0)

No login
gif