Literature Review: The Role of Magnetic Nanoparticles in Several Fields of Life
Keywords:
Applications Of Magnetic Nanoparticles, Nanoparticles, MagneticAbstract
There has been a lot of research on nanoparticles which have been developed for application in everyday life. One type of nanomaterial that has been discussed is magnetic nanoparticles. Some areas of life that apply magnetic nanoparticles for example are in the medical and biological fields, the field of sensors, the field of water and waste treatment, and others. The results of this literature review discuss the role of magnetic nanoparticles in everyday life.
References
Y. Xu et al., “Porphyra haitanensis polysaccharide-functionalized selenium nanoparticles for effective alleviation of ulcerative colitis,” Int. J. Biol. Macromol., vol. 253, p. 127570, Dec. 2023.
M. Huang et al., “Development of curcumin-loaded galactosylated chitosan-coated nanoparticles for targeted delivery of hepatocellular carcinoma,” Int. J. Biol. Macromol., vol. 253, p. 127219, Dec. 2023.
Y. Zhou, B. Xu, P. Zhou, X. Chen, G. Jiao, and H. Li, “Gold@mesoporous polydopamine nanoparticles modified self-healing hydrogel for sport-injuring therapy,” Int. J. Biol. Macromol., vol. 253, p. 127441, Dec. 2023.
E. A. Mohamad et al., “Chitosan-based films blended with moringa leaves and MgO nanoparticles for application in active food packaging,” Int. J. Biol. Macromol., vol. 253, p. 127045, Dec. 2023.
K. Nagaraja, D. Hemalatha, S. Ansar, K. S. V. K. Rao, and O. Tae Hwan, “Novel, Biosynthesis of Palladium Nanoparticles using Strychnos Potatorum Polysaccharide as a Green sustainable approach; and their effective Catalytic Hydrogenation of 4-Nitrophenol,” Int. J. Biol. Macromol., vol. 253, p. 126983, Dec. 2023.
X. Wang, H. Chen, B. Yang, J. Zhao, H. Zhang, and W. Chen, “Construction and efficacy evaluation of chitosan-based nanoparticles for colon-targeted release of linoleic acid in rat pups,” Int. J. Biol. Macromol., vol. 253, p. 127522, Dec. 2023.
S.-M. Hasheminya, J. Dehghannya, and A. Ehsani, “Development of basil seed mucilage (a heteropolysaccharide) – Polyvinyl alcohol biopolymers incorporating zinc oxide nanoparticles,” Int. J. Biol. Macromol., vol. 253, p. 127342, Dec. 2023.
R. K. Goyal, “Introduction to Nanomaterials and Nanotechnology,” Nanomater. Nanocomposites, pp. 1–10, 2018.
D. Filip et al., “Hybrid green bionanocomposites based on chitosan/starch/gelatin and metallic nanoparticles for biological applications,” Int. J. Biol. Macromol., vol. 253, p. 127571, Dec. 2023.
H. Wu, X. Ding, Y. Chen, Y. Cai, Z. Yang, and J. Jin, “EGFR-targeted humanized single chain antibody fragment functionalized silica nanoparticles for precision therapy of cancer,” Int. J. Biol. Macromol., vol. 253, p. 127538, Dec. 2023.
M. Stoian et al., “Green synthesis of aminated hyaluronic acid-based silver nanoparticles on modified titanium dioxide surface: Influence of size and chemical composition on their biological properties,” Int. J. Biol. Macromol., vol. 253, p. 127445, Dec. 2023.
L. Manthalkar et al., “Fabrication of D-α-tocopheryl polyethylene glycol 1000 succinates and human serum albumin conjugated chitosan nanoparticles of bosutinib for colon targeting application; in vitro-in vivo investigation,” Int. J. Biol. Macromol., vol. 253, p. 127531, Dec. 2023.
S. Ayyanaar and M. P. Kesavan, “Magnetic iron oxide nanoparticles@lecithin/poly (l-lactic acid) microspheres for targeted drug release in cancer therapy,” Int. J. Biol. Macromol., vol. 253, p. 127480, Dec. 2023.
S. Perveen et al., “Boosting photo-induced antimicrobial activity of lignin nanoparticles with curcumin and zinc oxide,” Int. J. Biol. Macromol., vol. 253, p. 127433, Dec. 2023.
K. R. Singh, P. Singh, S. Mallick, J. Singh, and S. S. Pandey, “Chitosan stabilized copper iodide nanoparticles enabled nano-bio-engineered platform for efficient electrochemical biosensing of dopamine,” Int. J. Biol. Macromol., vol. 253, p. 127587, Dec. 2023.
M. Binandeh, “Performance of unique magnetic nanoparticles in biomedicine,” Eur. J. Med. Chem. Reports, vol. 6, no. June, p. 100072, 2022.
M. Majdinasab et al., “Label-free SERS for rapid identification of interleukin 6 based on intrinsic SERS fingerprint of antibody‑gold nanoparticles conjugate,” Int. J. Biol. Macromol., vol. 253, p. 127560, Dec. 2023.
Y. Lu et al., “Self-driven bioactive hybrids co-deliver doxorubicin and indocyanine green nanoparticles for chemo/photothermal therapy of breast cancer,” Biomed. Pharmacother., vol. 169, p. 115846, Dec. 2023.
S. Sahu et al., “Synthesis and characterization of chitosan-zinc-salicylic acid nanoparticles: A plant biostimulant,” Int. J. Biol. Macromol., vol. 253, p. 127602, Dec. 2023.
S. A. Hosseini, A. Kardani, and H. Yaghoobi, “A comprehensive review of cancer therapies mediated by conjugated gold nanoparticles with nucleic acid,” Int. J. Biol. Macromol., vol. 253, p. 127184, Dec. 2023.
P. Yang, W. Chen, J. Li, S. Cao, X. Bi, and J. Shi, “Hollow CuS nanoparticles equipped with hydroxyapatite/hyaluronic acid coating for NIR/pH dual-responsive drug delivery,” Int. J. Biol. Macromol., vol. 253, p. 127150, Dec. 2023.
R. Yahya and N. M. Alharbi, “Biosynthesized silver nanoparticles-capped chondroitin sulfate nanogel targeting microbial infections and biofilms for biomedical applications,” Int. J. Biol. Macromol., vol. 253, p. 127080, Dec. 2023.
M. Ganeshbabu et al., “Photocatalytic degradation of fluoroquinolone antibiotics using chitosan biopolymer functionalized copper oxide nanoparticles prepared by facile sonochemical method,” Int. J. Biol. Macromol., vol. 253, p. 127027, Dec. 2023.
Y. Haririan, A. Asefnejad, H. Hamishehkar, and M. R. Farahpour, “Carboxymethyl chitosan-gelatin-mesoporous silica nanoparticles containing Myrtus communis L. extract as a novel transparent film wound dressing,” Int. J. Biol. Macromol., vol. 253, p. 127081, Dec. 2023.
J. Jiang, M. Ke, L. Zhang, W. Zhang, and W. Dong, “In situ synthesis of silver nanoparticles with controllable size distribution and high content in bagasse nanocellulose hydrogel,” Int. J. Biol. Macromol., vol. 253, p. 127259, Dec. 2023.
I. H. Ali, A. M. Elkashlan, M. A. Hammad, and M. Hamdi, “Antimicrobial and anti-SARS-CoV-2 activities of smart daclatasvir-chitosan/gelatin nanoparticles-in-PLLA nanofibrous medical textiles; in vitro, and in vivo study,” Int. J. Biol. Macromol., vol. 253, p. 127350, Dec. 2023.
V. Kumar, N. K. Kaushik, S. K. Tiwari, D. Singh, and B. Singh, “Green synthesis of iron nanoparticles: Sources and multifarious biotechnological applications,” Int. J. Biol. Macromol., vol. 253, p. 127017, Dec. 2023.
M. Li et al., “Accurate location of two conserved linear epitopes of PEDV utilizing monoclonal antibodies induced by S1 protein nanoparticles,” Int. J. Biol. Macromol., vol. 253, p. 127276, Dec. 2023.
N. Y. Elmehbad, N. A. Mohamed, N. A. Abd El-Ghany, and M. M. Abdel-Aziz, “Evaluation of the in vitro anti-inflammatory and anti-Helicobacter pylori activities of chitosan-based biomaterials modified with copper oxide nanoparticles,” Int. J. Biol. Macromol., vol. 253, p. 127277, Dec. 2023.
S. A. A. A. Hard, H. N. Shivakumar, and M. A. M. Redhwan, “Development and optimization of in-situ gel containing chitosan nanoparticles for possible nose-to-brain delivery of vinpocetine,” Int. J. Biol. Macromol., vol. 253, p. 127217, Dec. 2023.
K. Kuche et al., “Synergistic anticancer therapy via ferroptosis using modified bovine serum albumin nanoparticles loaded with sorafenib and simvastatin,” Int. J. Biol. Macromol., vol. 253, p. 127254, Dec. 2023.
S. Shukla, R. Khan, and A. Daverey, “Synthesis and characterization of magnetic nanoparticles, and their applications in wastewater treatment: A review,” Environ. Technol. Innov., vol. 24, p. 101924, 2021.
A. Ali et al., “Review on Recent Progress in Magnetic Nanoparticles: Synthesis, Characterization, and Diverse Applications,” Front. Chem., vol. 9, no. July, pp. 1–25, 2021.
V. F. Cardoso, A. Francesko, C. Ribeiro, M. Bañobre-López, P. Martins, and S. Lanceros-Mendez, “Advances in Magnetic Nanoparticles for Biomedical Applications,” Advanced Healthcare Materials, vol. 7, no. 5. pp. 1–35, 2018.
G. Mohammadi Ziarani, M. Malmir, N. Lashgari, and A. Badiei, “The role of hollow magnetic nanoparticles in drug delivery,” RSC Advances, vol. 9, no. 43. Royal Society of Chemistry, pp. 25094–25106, 2019.
A. Machfiro and M. Munasir, “NANOPARTIKEL Fe3O4@SiO2 UNTUK APLIKASI PENYERAP LOGAM Cu2+ DALAM AIR,” Inov. Fis. Indones., vol. 9, no. 1, pp. 5–8, 2020.
M. Pinto et al., “Application of magnetic nanoparticles for water purification,” Environ. Adv., vol. 2, no. October, p. 100010, 2020.
R. R. Zadeh, S. M. J. Arvin, R. Jamei, H. Mozaffari, and F. Reza Nejhad, “Response of tomato plants to interaction effects of magnetic (Fe3O4) nanoparticles and cadmium stress,” J. Plant Interact., vol. 14, no. 1, pp. 474–481, 2019.
C. Hidayat, “Efektivitas Penggunaan Nanomineral pada Pakan terhadap Peningkatan Performa Ayam: Review,” J. Peternak. Indones. (Indonesian J. Anim. Sci., vol. 24, no. 3, p. 237, 2022.
S. Alam, R. Ahmad, K. Pranaw, P. Mishra, and S. K. Khare, “Asparaginase conjugated magnetic nanoparticles used for reducing acrylamide formation in food model system,” Bioresour. Technol., vol. 269, no. June, pp. 121–126, 2018.
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