Direct visualization of intracellular calcium in rat osteoblasts by energy-filtering transmission electron microscopy

被引:20
作者
Bordat, C
Guerquin-Kern, JL
Lieberherr, M
Cournot, G
机构
[1] INRA, Lab Nutr & Secur Alimentaire, F-78350 Jouy En Josas, France
[2] INSERM, U350, Inst Curie Rech, Orsay, France
关键词
osteoblasts; intracellular calcium; mitochondrial junctions; electron energy loss spectroscopy (EELS); secondary ion mass spectrometry (SIMS);
D O I
10.1007/s00418-003-0601-9
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Osteoblasts are the highly specialized bone cells responsible for matrix mineralization. Mineralization is a complex, incompletely understood, process involving intracellular calcium homeostasis. Rapid changes in ionized calcium concentration ([Ca2+](i)) occur in these cells, but the intracellular distribution of total calcium, which may be involved in matrix mineralization, remains unknown. We have therefore investigated the distribution of total calcium in osteoblasts either ex vivo from rapidly mineralizing neonatal rat bones or in the same cells cultured to confluence before they had entered the mineralization phase, and without stimulation for mineralized matrix formation. All cells were examined bone-untreated (controls) or following the addition of the ionophore ionomycin that induced a large and sustained increase in [Ca2+](i). Cryomethods, quick-freezing and freeze-drying, and OsO4 vapor fixation were employed to preserve the original calcium distribution, and the preservation was verified by secondary ion mass spectrometry (SIMS). Intracellular calcium distribution was identified by energy-filtering transmission electron microscopy (EELS). Scarce calcium signals were recorded from all osteoblasts maintained in buffer (controls). Ionomycin addition resulted in the accumulation of calcium in mitochondria, and more calcium was stored in the mitochondria of osteoblasts involved in mineralization than in those of osteoblasts before mineralization. Moreover, in the former, strong calcium signals were recorded around the junctions between mitochondria and the endoplasmic reticulum. Thus EELS allowed to obtain high-resolution total calcium maps in defined intracellular structures, but only at elevated calcium levels.
引用
收藏
页码:31 / 38
页数:8
相关论文
共 49 条
[1]   Actions of ionomycin, 4-BrA23187 and a novel electrogenic Ca2+ ionophore on mitochondria in intact cells [J].
Abramov, AY ;
Duchen, MR .
CELL CALCIUM, 2003, 33 (02) :101-112
[2]  
Ahn C.C., 1983, EELS ATLAS
[3]  
ANDERSON HC, 1995, CLIN ORTHOP RELAT R, P266
[4]   Quantitative electron spectroscopic imaging In bio-medicine: Evaluation and application [J].
Beckers, ALD ;
Gelsema, ES ;
DeBruijn, WC ;
CletonSoeteman, MI ;
VanEijk, HG .
JOURNAL OF MICROSCOPY, 1996, 183 :78-88
[5]   Calcium distribution in high-pressure frozen bone cells by electron energy loss spectroscopy and electron spectroscopic imaging [J].
Bordat, C ;
Bouet, O ;
Cournot, G .
HISTOCHEMISTRY AND CELL BIOLOGY, 1998, 109 (02) :167-174
[6]   QUANTITATIVE SCANNING-TRANSMISSION ELECTRON-MICROSCOPY OF ULTRATHIN CRYOSECTIONS - SUBCELLULAR ORGANELLES IN RAPIDLY FROZEN LIVER AND CEREBELLAR CORTEX [J].
BUCHANAN, RA ;
LEAPMAN, RD ;
OCONNELL, MF ;
REESE, TS ;
ANDREWS, SB .
JOURNAL OF STRUCTURAL BIOLOGY, 1993, 110 (03) :244-255
[7]   Mitochondria are morphologically and functionally heterogeneous within cells [J].
Collins, TJ ;
Berridge, MJ ;
Lipp, P ;
Bootman, MD .
EMBO JOURNAL, 2002, 21 (07) :1616-1627
[8]  
DEBUIJN WC, 1993, SCANNING MICROSCOPY, V7, P693
[9]  
Edelmann L, 1996, SCANNING MICROSCOPY SUPPLEMENT 10, 1996, P295
[10]  
Egerton RF., 2011, ELECT ENERGY LOSS SP