CELL-SURFACE RECEPTORS AND PROTEINS ON PLATELET MEMBRANES IMAGED BY SCANNING FORCE MICROSCOPY USING IMMUNOGOLD CONTRAST ENHANCEMENT

被引:39
作者
EPPELL, SJ
SIMMONS, SR
ALBRECHT, RM
MARCHANT, RE
机构
[1] CASE WESTERN RESERVE UNIV,DEPT BIOMED ENGN,CLEVELAND,OH 44106
[2] UNIV WISCONSIN,DEPT ANIM HLTH & BIOMED SCI,MADISON,WI 53706
关键词
D O I
10.1016/S0006-3495(95)80228-6
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
High resolution scanning force microscope (SFM) images of fibrinogen-exposed platelet membranes are presented. Using ultrasharp carbon tips, we are able to obtain submolecular scale resolution of membrane surface features. Corroboration of SFM results is achieved using low voltage, high resolution scanning electron microscopy (LVHRSEM) to image the same protein molecule that is seen in the SFM. We obtain accurate height dimensions by SFM complemented by accurate lateral dimensions obtained by LVHRSEM. The use of 14- and 5-nm gold labels to identify specific membrane-bound biomolecules and to provide contrast enhancement with the SFM is explored as a useful adjunct to observation of unlabeled material. It is shown that the labels are useful for locating specific protein molecules on platelet membrane surfaces and for assessing the distribution of these molecules using the SFM. Fourteen nm labels are shown to be visible over the membrane corrugation, whereas 5-nm labels appear difficult to resolve using the present SFM instrumental configuration. When using the 5-nm labels, collateral use of LVHRSEM allows one to examine SFM images at submolecular resolution and associate function with the structures imaged after the SFM experiment is completed.
引用
收藏
页码:671 / 680
页数:10
相关论文
共 37 条
[11]   ADHESION FORCES BETWEEN INDIVIDUAL LIGAND-RECEPTOR PAIRS [J].
FLORIN, EL ;
MOY, VT ;
GAUB, HE .
SCIENCE, 1994, 264 (5157) :415-417
[12]   ULTRASTRUCTURAL IMMUNOLABELING - A GENERAL OVERVIEW OF TECHNIQUES AND APPLICATIONS [J].
HERRERA, GA .
ULTRASTRUCTURAL PATHOLOGY, 1992, 16 (1-2) :37-45
[13]  
HORBER JKH, 1992, SCANNING MICROSCOPY, V6, P919
[14]  
HORISBERGER M, 1979, BIOL CELLULAIRE, V36, P253
[15]   IMAGING STEEP, HIGH STRUCTURES BY SCANNING FORCE MICROSCOPY WITH ELECTRON-BEAM DEPOSITED TIPS [J].
KELLER, DJ ;
CHOU, CC .
SURFACE SCIENCE, 1992, 268 (1-3) :333-339
[16]   ATOMIC FORCE MICROSCOPY OF 3-DIMENSIONAL MEMBRANE-PROTEIN CRYSTALS - CA-ATPASE OF SARCOPLASMIC-RETICULUM [J].
LACAPERE, JJ ;
STOKES, DL ;
CHATENAY, D .
BIOPHYSICAL JOURNAL, 1992, 63 (02) :303-308
[17]   SUBMICRON SI TRENCH PROFILING WITH AN ELECTRON-BEAM FABRICATED ATOMIC FORCE MICROSCOPE TIP [J].
LEE, KL ;
ABRAHAM, DW ;
SECORD, F ;
LANDSTEIN, L .
JOURNAL OF VACUUM SCIENCE & TECHNOLOGY B, 1991, 9 (06) :3562-3568
[18]   REDISTRIBUTION OF THE FIBRINOGEN RECEPTOR OF HUMAN-PLATELETS AFTER SURFACE ACTIVATION [J].
LOFTUS, JC ;
ALBRECHT, RM .
JOURNAL OF CELL BIOLOGY, 1984, 99 (03) :822-829
[19]   INTERACTIONS OF VONWILLEBRAND-FACTOR ON MICA STUDIES BY ATOMIC FORCE MICROSCOPY [J].
MARCHANT, RE ;
LEA, AS ;
ANDRADE, JD ;
BOCKENSTEDT, P .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 1992, 148 (01) :261-272
[20]  
MOSHER DF, 1975, J BIOL CHEM, V250, P6614