Effect of Protein Corona Formation on Photonic Response of Upconverting Nanoparticles
Subject Areas :
Nano Biophotonics
Nahid Ghazyani
1
,
Mohammad Hossien Majles Ara
2
1 - Faculty of Physics, Kharazmi University, Tehran, Iran
2 - 1. Department of physics, Kharazmi University, Tehran, Iran.
2. Applied Sciences Research Center, Kharazmi University, Karaj, Iran.
Received: 2023-05-06
Accepted : 2023-09-17
Published : 2023-09-22
Keywords:
Nonlinear photoresponse,
Upconversion Nanoparticles,
Protein Corona,
Corona Formation,
human blood plasma,
near infrared,
Abstract :
NaYF4:Yb,Er is one of the efficient and well-known upconverting materials which emit photoluminescence light at 545 nm and 660 nm under an excitation of 980 nm. In this study, up-conversion nanoparticles using thermal decomposition method have been synthesized and characterized and phase transition from organic to aquas by synthesis a SiO2 shell have done successfully. The results show that the nonlinearity response of NaYF4: Yb, Er@SiO2 is same as NaYF4: Yb, Er and SiO2 has no effect on emission peaks it means that these nanoparticles are suitable for biomedical applications. Since it is necessary to know the photoluminescent behavior of UCNPs@SiO2 particles, thereby the fluorescence properties of up-conversion nanoparticles with SiO2 shell have been investigated in PBS, normal and cancerous human blood plasma. The results indicate that UCNP@SiO2 can be applicable in biological medias for therapy and diagnostic.
References:
Markus, and H. Schäfer, "Upconverting nanoparticles," Angewandte Chemie International Edition, vol. 50, pp. 5808-5829, 2011.
Bing and F. Wang, "Emerging frontiers of upconversion nanoparticles," Trends in Chemistry, vol. 2, pp. 427-439, 2020.
Wang, D. Banerjee, Y. Liu, X. Chen, and X. Liu, "Upconversion nanoparticles in biological labeling, imaging, and therapy," Analyst, vol. 135, pp. 1839-1854, 2010.
Bin and Q. Zhang. "Recent advances on functionalized upconversion nanoparticles for detection of small molecules and ions in biosystems," Advanced Science, vol. 5, pp. 1700609, 2018.
Gungun and D. Jin, "Responsive sensors of upconversion nanoparticles," ACS sensors, vol. 6, pp. 4272-4282, 2021.
Kakavelakis, K. Petridis, and E. Kymakis, "Recent advances in plasmonic metal and rare-earth-element upconversion nanoparticle doped perovskite solar cells," Journal of Materials Chemistry A, vol. 5, pp. 21604-21624, 2017.
A. Ansari and M. Sillanpää, "Advancement in upconversion nanoparticles based NIR-driven photocatalysts," Renewable and Sustainable Energy Reviews, vol. 151, pp. 111631, 2021.
Wen, J. Zhou, K. Zheng, A. Bednarkiewicz, X. Liu, and D. Jin, "Advances in highly doped upconversion nanoparticles," Nature communications, vol. 9, pp. 2415 (1-12), 2018.
R. Blanca and D. Jaque, "Upconversion nanoparticles for in vivo applications: limitations and future perspectives," Methods and Applications in Fluorescence, vol. 7, pp. 022001, 2019.
Andreas and H. H. Gorris, "Surface modification and characterization of photon-upconverting nanoparticles for bioanalytical applications," Chemical Society Reviews, vol. 44, pp.1526-1560, 2015.
A. Ansari, A. K. Parchur, and G. Chen, "Surface modified lanthanide upconversion nanoparticles for drug delivery, cellular uptake mechanism, and current challenges in NIR-driven therapies," Coordination Chemistry Reviews, vol. 457, pp. 214423, 2022.
S. Arai and A. SS de Camargo, "Exploring the use of upconversion nanoparticles in chemical and biological sensors: from surface modifications to point-of-care devices," Nanoscale Advances, vol. 3, pp. 5135-5165, 2021.
-N. Liu, W.-B. Bu, and J.-L. Shi, "Silica coated upconversion nanoparticles: a versatile platform for the development of efficient theranostics." Accounts of chemical research, vol. 48, pp. 1797-1805, 2015.
Drozd, H. Zhang, I. Goryacheva, S. De Saeger, and N. V Beloglazova, "Silanization of quantum dots: challenges and perspectives," Talanta, vol. 205, pp. 120164, 2019.
Li, C. Ma, F. Wang, Z. Xi, Z. Wang, Y. Deng, and N. He, "Preparation and biomedical applications of core–shell silica/magnetic nanoparticle composites," Journal of nanoscience and nanotechnology, vol. 12, pp. 2964-2972, 2012.
Hao, B. Ding, and J. Lin, "Recent progress in upconversion nanomaterials for emerging optical biological applications," Advanced Drug Delivery Reviews, vol. 188, pp. 114414, 2022.
Ghazyani, M. H. Majles Ara, and M. Raoufi, "Nonlinear photoresponse of NaYF4: Yb, Er@ NaYF4 nanocrystals under green CW excitation: a comprehensive study," RSC advances, vol. 10, pp. 25696-25702, 2020.