Investigation of cholesterol, bilirubin, and protein distribution in human gallstones by color cathodoluminescence scanning electron microscopy and transmission electron microscopy

被引:0
|
作者
Loginov, AS [1 ]
Chebanov, SM
Petrakov, AV
Saparin, GV
Obyden, SK
Ivannikov, PV
机构
[1] Moscow Cent Gastroenterol Res Inst, Electron Microscopy Lab, Moscow 111123, Russia
[2] Moscow State Univ, Fac Phys, Moscow, Russia
关键词
color cathodoluminescence; scanning electron microscopy; transmission electron microscopy; cholesterol; bilirubin; protein; human gallstones;
D O I
暂无
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
The application of color cathodoluminescent scanning electron microscopy (CCL-SEM) for qualitative luminescence analysis of cholesterol, bilirubin, and protein in human gallstones was demonstrated. Images of these deposits (cholesterol, bilirubin, and protein) were formed in real colors (blue-cholesterol, red, orange-bilirubin, yellow, green-protein) in accordance with the cathodoluminescent spectrum for each control material. The other method described for transmission electron microscopy (TEM) of ultrathin sections provides more detailed characterization of the ultrastructure of cholesterol-containing regions and their spatial interrelations with bilirubin-containing regions. Using CCL-SEM combined with TEM permits the receipt of more complete information about the chemical composition and ultrastructure of gallstones and may lead to more effective understanding of the pathogenesis of cholesterol cholelithiasis.
引用
收藏
页码:17 / 22
页数:6
相关论文
共 50 条
  • [1] Cathodoluminescence in transmission electron microscopy
    Strunk, H. P.
    Albrecht, M.
    Scheel, H.
    JOURNAL OF MICROSCOPY, 2006, 224 : 79 - 85
  • [2] Cathodoluminescence of silicon doped aluminum nitride with scanning transmission electron microscopy
    Hauwiller, Matthew R.
    Stowe, David
    Eldred, Timothy B.
    Mita, Seiji
    Collazo, Ramon
    Sitar, Zlatko
    LeBeau, James
    APL MATERIALS, 2020, 8 (09)
  • [3] CATHODOLUMINESCENCE SCANNING ELECTRON-MICROSCOPY OF SEMICONDUCTORS
    YACOBI, BG
    HOLT, DB
    JOURNAL OF APPLIED PHYSICS, 1986, 59 (04) : R1 - R24
  • [4] A comparison of energy dispersive spectroscopy in transmission scanning electron microscopy with scanning transmission electron microscopy
    Carter, Jennifer L. W.
    Uz, Tugce Karakulak
    Ibrahim, Buhari
    Pigott, Jeffrey S.
    Gordon, Jerard, V
    ULTRAMICROSCOPY, 2025, 270
  • [5] Application of scanning electron microscopy and transmission electron microscopy in semiconductor industry
    Zschech, E
    Langer, E
    Engelmann, HJ
    PRAKTISCHE METALLOGRAPHIE-PRACTICAL METALLOGRAPHY, 2002, 39 (12): : 634 - 643
  • [6] ELECTRON-MICROSCOPY OF ISOLATED HUMAN HEPATOCYTES - MICROMETHODS FOR SCANNING AND TRANSMISSION ELECTRON-MICROSCOPY
    TREVISAN, A
    GUDAT, F
    GUGGENHEIM, R
    KREY, G
    LUOND, G
    STALDER, GA
    TONDELLI, P
    BIANCHI, L
    RICERCA IN CLINICA E IN LABORATORIO, 1983, 13 (03): : 307 - 320
  • [7] COMPARISON OF TRANSMISSION ELECTRON MICROSCOPY AND SCANNING ELECTRON MICROSCOPY OF FRACTURE SURFACES
    JOHARI, O
    JOURNAL OF METALS, 1968, 20 (06): : 26 - &
  • [8] On the history of scanning electron microscopy, of the electron microprobe, and of early contributions to transmission electron microscopy
    Von Ardenne M.
    Hawkes P.
    Mulvey T.
    Advances in Imaging and Electron Physics, 2021, 220 : 25 - 50
  • [9] OPTICAL SPECTROSCOPY IN CATHODOLUMINESCENCE BY SCANNING ELECTRON-MICROSCOPY
    SEMO, J
    REVUE DE PHYSIQUE APPLIQUEE, 1974, 9 (02): : 355 - 359
  • [10] Introduction to transmission and scanning electron microscopy
    Verni, F
    Gabrielli, S
    FROM CELLS TO PROTEINS: IMAGING NATURE ACROSS DIMENSIONS, 2005, 3 : 23 - 35