PHOSPHORUS AND NANOPHOSPHORUS IN MEDICINE AND BIOLOGY

  • K.V. Shtokaluk Bogomolets National Medical University, Kiev, Ukraine
  • N.A. Gorchakova Bogomolets National Medical University, Kiev, Ukraine
  • A. V. Zaichenko Bogomolets National Medical University, Kiev, Ukraine
  • I.S. Chekman Kyiv Medical University UANM, Kiev, Ukraine
Keywords: phosphorus, nanophosphorus, metabolism, drugs, means of visualization.

Abstract

Phosphorus plays the important role in metabolic processes comes in composition of nucleic acids, macroergic compounds, phosphorus is contained in the bone tissue, less in the brain tissue, muscles, blood. Phosphorus is in the structure of drugs. Thanks to the nanotechnology, phosphorus is received as the nanophosphorus particles that is able for agglomeration, have a paramagnetic sensitivity. Nanophosphorus is used for the means’ creation on visualization, many-sided nanoprobes and drugs transporters. Phosphorus is in the phosphides’ structure, combination with the metals that is used in tomography.

References

Volgina G.V Giperfosfatemija pri hronicheskoj bolezni

pochek: sovremennaja strategija korrekcii / G.V. Volgina,

VC. Shtandel’, O.V Balkarova, E.V. Lovchins’kij // Vrach. — 2012. —

T. 4, №7. -S. 10- 23.

Zvjagin A.V. Antistoksovy nanoljuminofory: Perspektivy primenenija v biologii і medicine / A.V. Zvjagin, V.Ja. Panchenko, A.V. Nechaev [i dr.]// Sbornik materialov V Troickoj konferencii «Medicinskaja fizika і innovacii v medicine» — 2012. — T.2. — S. 8-9.

Kalibabchuk VO. Medichna himija: pidruchnik / VO. Kali- babchuk, I.S. Chekman, VI. Galins ’ka [ta in.]. — K: VSV «Medicina», 2003. - 336s

Lysak Ju.V Apkonvertirujushhie nanofosfory — osnova glu- bokoj opticheskoj vizualizacii biologicheskih tkanej / Ju. V. Lysak, E.V. Hajdukov, VI. Sokolov, A. V. Semchishen // Trudy Hill Mezhvuzovskoj nauchnoj shkoly molodyh specialistov «Koncentri- rovannye potoki jenergii v kosmicheskoj tehnike, jelektronike, jekologii і medicine» — 2012. — C.47-51.

Miljukov VA. Organicheskaja himija jelementov fosfora / VA, Miljukov, Ju.G. Budnikova, O.G. Sinjashin // Uspehi himii. — 2005. - T.79, №9. - S.859-885

Opejda J.O. Glosarij terminiv z himi'i / J.O. Opejda, O.P. Shvajka // Veber — 2008. — S. 758.

Rocheva VV «Trehcvetnye» apkonvertirujushhie nanofosfory dlja ZD vizualizacii patologii v biotkanjah / V. V. Rocheva, A. S. Ahmanov, A. V. Zvjagin, Ju. V. Lysak // Trudy Hill Mezhvuzovskoj nauchnoj shkoly molodyh specialistov «Koncentrirovannye potoki jenergii v kosmicheskoj tehnike, jelektronike, jekologii і medicine» — 2012. - C.51-55.

Anna T. Kelly. Iron Phosphide Nanostructures Produced from a Single-Source Organometallic Precursor Nanorods, Bundles, Crosses and Spherulites. / A. Kelly, Rusakova., T. Oud-Ely [et al.] // NANO LETTERS - 2007. - Vol. 7. - No.9

Carenco S. Structural transitions at the nanoscale: the example of palladium phosphides synthesized from white phosphors / S. Carenco, Y. Hu, I. Florea [et al.] // Dalton Trans — 2013 May 15

Dong N. NIR-to NIR two-photon excited CaF2 Tm3+, Yb3+ Nanoparticles: Multifunctional nanopores for highly penetratiny fluoredcence bioimaging / N. Dong, F. Sanz-Rodrigues // ACS Nano. - 2011. - Vol.5, №6. - P.3163-3168.

Dutta D. Sonochcmical synthesis of doped CeF3 nanoparticles exhibiting room temperature ferromagnetism and white light emission. / D. Dutta, O. Jayakumar, A. Arya [et al.] // J Nanosci Nanotychnol. - 2011. - Vol. 11. - P. 4981-4987.

English U. A Convenient Synthetic Strategy toward Heavy Alkali Metal Bis phosphides: Crystal Structures of the Ladder-Type Polymers. / U. English, K. Hassler, K. Ruhlandt-Senge [et al.] // Inorg Chem. - 2008. - Vol. 37. - P. 3532-3537

Juppner H. Novel Regulators of Phosphate Homeostasis and Bone Metabolism / H. Juppner // Supplement 1:S3-S22 doi: 10.11/j. 1744-9987.2007.00513.x 007 The Author.

Kubrin R. Flame aerosol deposition of Y2O3: Eu nanophosphor screens and their photoluminescent performance. / R. Kubrin, A. Tricoli, A. Camenzind [et al.] // Nanotechnology. — 2010. - Vol. 21. 225603. doi: 10.1088/0957-4484/21/22/225603.

Kumar M. Synthesis, Characterization and Biosensing Application of Photon Upconverting Nanoparticles. / M. Kumar, P.Zhang [et al.] // Ргос Soc Photo Opt Instrun Eng. — 2009. — Vol. 16. — P. 718.

Lioparinos P.F. Optical diffusion performance of nano- photphor-based materials for use in medical imaging / P.F. Lioparinos / J Biomed Opt — 2012. — Vol. 17, №12 126013. doi: 10.1117/ 1 JBO.17.12.126013

Liu F. Shape controlled synthesis and photoluminescence properties of Eu3+ -doped REV04 nanophosphors. / F.Liu, X. Shao, Y. Yin [et al.] //J. Nanosci Nanotechnol. - 2011. - Vol. 11. - P. 9684— 9689.

Mader H.S. Upconverting luminescence nanoparticles for use in bioconjugating and bioimaging. / H.S. Mader, P Kele, S.M. Saleh [et al.] // Current Opinion in chemical Biology. — 2010. — Vol. 14. - P. 582- 596

Menkara H. Fluorescence in photonic crystal phosphor. / H. Menkara, J. Gilstrap, R.A. Morris, M. Minkara [et al.] // Opt Express. - 2011. - Vol. 4. - P. 972-981.

Muthuswamv E. Oxidation does not (always) kill reactivity of transition metals: solution-phase conversion of nanoscale transition metal oxides to phosphides and sulphides. / E. Muthuswamv, S. Brock. // J Am Chem Soc. - 2010. - Vol. 132. - P. 15849-15851.

Ni Y. Phase-controllable synthesis of nanosized nickel phosphides and comprasion of photocatalatic degradation ability / Y. Ni, L. Jin, J. Hong [et al.] // Nanoscale. — 2011. — Vol. 3. — P. 196-200.

Panyala N.R. Laser ablation synthesis of new gold phosphides using red phorsphorus and nanogold as precursors. / N. R. Panyala, E. M. Pena-Mendez, J.Havel [et al.] // Rapid Commun Mass Spectrom. — 2012. — Vol. 26. — P. 1100-1108.

Shinde K. N. Luminescence in LiffrfflffOff:Dy3+ / K.N. Shinde., S.J. Dhoble. // A novel nanophosphor. — 2012. — Vol. 27. — P. 91—94

Soga K. Application of nanophosphors with near infrared excitation for biomedical imaging. / K. Soga// Yakugaru Zasshi. —

- Vol.133. - P. 355-367.

SunY. Radioisotope post-labeling upconversion nanophosphors for in vivo quantitative tranking. / Y. Sun, J. Peng, W. Feng [et al.] // Biomaterials. — 2013. — Vol. 34. — P. 2289-2295.

Umesh B. Thermoluminescence and EPR studies of nanocrystalline Nd О : Ni2+ phosphor. / B. Umesh, B. Eraiah, H. Na- gabhushana [et al.] // Spectrochim Acta A Mol Biomol Spectrosc. — 2012. - Vol. 93. - P. 228-234.

Yang D. Synthesis of cobalt phosphides and their application as anodes for lithium ion batteries. / D.Yang, J. Zhul, X. Rui, H. Tan, [et al.] // ACS App Mater Interfaces. — 2013. Vol. 5. — P. 1093-1099.

Yim D. Synthesis and characteristics of tb-doped YffiO5 nanophosphors and luminescent layer for enhanced photovoltaic cell performance. / D. Yim, I. Cho, S. Lee, [et al.] // J. Nanosci Nanotechnol. - 2011 - Vol. 11. - P. 8748-8753.

Published
2017-03-01
How to Cite
1.
Shtokaluk K, Gorchakova N, Zaichenko AV, Chekman I. PHOSPHORUS AND NANOPHOSPHORUS IN MEDICINE AND BIOLOGY. USMYJ [Internet]. 2017Mar.1 [cited 2026Mar.21];99(1):10-5. Available from: https://mmj.nmuofficial.com/index.php/journal/article/view/203