Lanthanide phosphate (LnPO<sub>4</sub> ) rods as bio-probes: A systematic investigation on structural, optical, magnetic, and biological characteristics.

Meenambal, Rugmani; Poojar, Pavan; Geethanath, Sairam; Anitha, T S; Kannan, S · J Biomed Mater Res B Appl Biomater · 2019

basic_science · Level V

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Abstract

The proposed work involves an exclusive study on the synthesis protocol, crystal structure analysis, and imaging contrast features of unique lanthanide phosphates (LnPO<sub>4</sub> ). XRD and Raman spectra affirmed the ability of the proposed synthesis technique to achieve unique LnPO<sub>4</sub> devoid of impurities. The crystal structure analysis confirms the P121/c1 space setting of NdPO<sub>4</sub> , EuPO<sub>4</sub> , GdPO<sub>4</sub> , and TbPO<sub>4</sub> that all uniformly crystallizes in monoclinic unit cell. In a similar manner, the tetragonal crystal setting of DyPO<sub>4</sub> , ErPO<sub>4</sub> , HoPO<sub>4</sub> , and YbPO<sub>4</sub> that unvaryingly possess the I41/amd space setting is confirmed. Under the same synthesis conditions, the monoclinic (Eu) and tetragonal (Ho) lanthanide phosphates displayed uniform rod-like morphologies. Absorption and luminescence properties of unique LnPO<sub>4</sub> were determined. In vitro biological studies demonstrated low toxicity levels of LnPO<sub>4</sub> and clearly distinguished fluorescence of TbPO<sub>4</sub> and EuPO<sub>4</sub> in Y79, retinoblastoma cell lines. The paramagnetic response of GdPO<sub>4</sub> , NdPO<sub>4</sub> , DyPO<sub>4</sub> , TbPO<sub>4</sub> , and HoPO<sub>4</sub> facilitated excellent magnetic resonance imaging (MRI) contrast features. Meanwhile, GdPO<sub>4</sub> , DyPO<sub>4</sub> , HoPO<sub>4</sub> , and YbPO<sub>4</sub> possessing higher X-ray absorption coefficient than clinical contrast Omnipaque™ exhibited high computed tomography (CT) efficiency. © 2018 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater 107B: 1372-1383, 2019.

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