This work has focused on the structural basis and molecular mechanisms of blood clotting. Much of the work has been concerned with the structure and assembly of the fibrin clot. Using the techniques of conventional transmission and scanning electron microscopy, this laboratory previously determined aspects of the intermolecular interactions that constitute clot assembly as well as factors in the plasma and proteins released by platelets that modulate clot structure. With this background, we now are studying in more detail the three-dimensional clot structure using thick preparations and IVEM, also employing the quantitative 3D image processing capability developed in this Resource. Initially, we have quantified the nature and extent of branching of fibers in a clot. Clots formed under a variety of conditions have been found to have very different structures: the extent of lateral aggregation and thickness of the fiber bundles and the sizes of the pores vary greatly. We are now refining these studies to determine distances between branch points and angles between branching fibers from stereo pairs using the programs developed in this Resource. We also are extending our 3D network reconstruction programs to deal with images showing superimposed filamentous structures that do not form a network, i.e. do not intersect. Both manual and automated reconstruction programs are using images from this project as test objects in that technological development.

Agency
National Institute of Health (NIH)
Institute
National Center for Research Resources (NCRR)
Type
Biotechnology Resource Grants (P41)
Project #
5P41RR002483-10S1
Application #
2556265
Study Section
Project Start
Project End
Budget Start
1996-10-01
Budget End
1997-09-30
Support Year
10
Fiscal Year
1997
Total Cost
Indirect Cost
Name
University of Pennsylvania
Department
Type
DUNS #
042250712
City
Philadelphia
State
PA
Country
United States
Zip Code
19104
Deng, Manqi; Williams, Carmen J; Schultz, Richard M (2005) Role of MAP kinase and myosin light chain kinase in chromosome-induced development of mouse egg polarity. Dev Biol 278:358-66
Tutuncu, Levent; Stein, Paula; Ord, Teri S et al. (2004) Calreticulin on the mouse egg surface mediates transmembrane signaling linked to cell cycle resumption. Dev Biol 270:246-60
Brown, Rebecca L; August, Shelley L; Williams, Carmen J et al. (2003) AKAP7gamma is a nuclear RI-binding AKAP. Biochem Biophys Res Commun 306:394-401
Deng, Manqi; Kishikawa, Hidefumi; Yanagimachi, Ryuzo et al. (2003) Chromatin-mediated cortical granule redistribution is responsible for the formation of the cortical granule-free domain in mouse eggs. Dev Biol 257:166-76
Brown, Rebecca L; Ord, Teri; Moss, Stuart B et al. (2002) A-kinase anchor proteins as potential regulators of protein kinase A function in oocytes. Biol Reprod 67:981-7
Li, J; Zhu, X; Ashton, F T et al. (2001) Sensory neuroanatomy of a passively ingested nematode parasite, Haemonchus contortus: amphidial neurons of the third-stage larva. J Parasitol 87:65-72
Robson, P; Stein, P; Zhou, B et al. (2001) Inner cell mass-specific expression of a cell adhesion molecule (PECAM-1/CD31) in the mouse blastocyst. Dev Biol 234:317-29
Travis, A J; Merdiushev, T; Vargas, L A et al. (2001) Expression and localization of caveolin-1, and the presence of membrane rafts, in mouse and Guinea pig spermatozoa. Dev Biol 240:599-610
Stein, P; Schultz, R M (2000) Initiation of a chromatin-based transcriptionally repressive state in the preimplantation mouse embryo: lack of a primary role for expression of somatic histone H1. Mol Reprod Dev 55:241-8
Li, J; Ashton, F T; Gamble, H R et al. (2000) Sensory neuroanatomy of a passively ingested nematode parasite, Haemonchus contortus: amphidial neurons of the first stage larva. J Comp Neurol 417:299-314

Showing the most recent 10 out of 38 publications