Time-Resolved Tryptophan Fluorescence as an Indicator of Alterations in Serum Proteins in Melancholic Depression

被引:0
作者
Syrejshchikova T.I. [1 ]
Smolina N.V. [2 ]
Brilliantova V.V. [2 ]
Syromyatnikova E.D. [1 ]
Uzbekov M.G. [2 ]
Dobretsov G.E. [3 ]
机构
[1] Lebedev Institute of Physics, Russian Academy of Sciences, Moscow
[2] Moscow Research Institute of Psychiatry, Serbsky National Medical Research Center of Psychiatry and Addiction Psychiatry, Ministry of Health of the Russian Federation, Moscow
[3] Federal Research and Clinical Center of Physical Chemical Medicine, Federal Medical and Biological Agencyof the Russian Federation, Moscow
关键词
Keywords: fluorescence intensity decay; melancholic depression; serum albumin; tryptophan;
D O I
10.1134/S0006350919010184
中图分类号
学科分类号
摘要
Abstract—The goal of this work was to search for blood serum parameters that would be associated with the state of patients with mental disorders. Such indicators are needed for an objective assessment of this state versus the prevailing subjective evaluation methodologies. The kinetics of tryptophan fluorescence decay in the serum albumin fraction was compared in patients with melancholic depression (before treatment) and in healthy volunteers. Albumin fluorescence is mainly due to the tryptophan 214 residue, which is located in the immediate vicinity of the first drug-binding center of the molecule. The decay kinetics were described as a sum of three exponential functions with lifetimes τ i (in the 6.5, 2.8 and 1.0 ns region) and the amplitudes A i . The τ i values were similar in both groups of individuals. In contrast, there was a significant difference between patients and controls in the A 1 /A 3 amplitude ratio. It is suggested that the A 1 /A 3 value can be considered as a potential marker indicating the presence or absence of melancholic depression in patients before treatment. © 2019, Pleiades Publishing, Inc.
引用
收藏
页码:95 / 99
页数:4
相关论文
共 27 条
  • [11] Syrejshchikova T.I., Gryzunov Y.A., Smolina N.V., Laser Phys., 20, (2010)
  • [12] Syrejshchikova T.I., Smolina N.V., Uzbekov M.G., Zh. Nevrol. Psikhiatr. im. S. S. Korsakova, 115, (2015)
  • [13] Syrejshchikova T.I., Smolina N.V., Brilliantova V.V., Biophysics (Moscow), 62, (2017)
  • [14] Uzbekov M., Misionzhnik E., Shmukler A., Eur. Acta Neuropsychiatr., 25, (2013)
  • [15] Lakowicz J.R., Principles of Fluorescence Spectroscopy, (2006)
  • [16] Nemtseva E.V., Lashchuk O.O., Gerasimova M.A., Biophysics (Moscow), 61, (2016)
  • [17] Gorinstein S., Goshev I., Moncheva S., J. Prot. Chem., 19, (2000)
  • [18] Kragh-Hansen U., Biol. Pharm. Bull., 25, (2002)
  • [19] Albani J.R., J. Fluoresc., 19, (2009)
  • [20] Albani J.R., J. Fluoresc., 24, (2014)