Cryoimmobilization followed by freeze substitution gives vastly improved ultrastructure and preservation of antigenicity in most cell types when compared to traditional processing methods. Presently there is no high-pressure freezer (HPF) unit available to users of the Biological Imaging Facility (BIF) at Northwestern University. Funds are requested to purchase a Leica EM-PACT2 High-Pressure Freezer (HPF) and Automated Freeze-Substitution (AFS2) system, the most up-to-date cryopreparation equipment. We will use the HPF to: 1) achieve ultrastructural preservation as close to the sample's native state as possible, 2) immunolocalize gene products with reduced mobility at high resolution, and 3) characterize mutant phenotypes at the EM level. The EM-PACT2 system can freeze samples up to about 600mm thick with a 200mm depth of high quality freezing. This cryoprocessing system provides reliable freezing using specimen holders that can accommodate a wide variety of specimen types. With this system we can investigate many biological systems (and many materials specimens) that were previously inaccessible. We will use this system in a variety of developmental and cell biological studies including: 1) estrogen regulation of presynaptic vesicles at brain synapses, 2) investigation of the pathways leading to inhibin A and B secretion from granulosa cells, 3) the organization of viral proteins and necessary host cell factors at the site of viral budding, 4) the hydrodynamics of aqueous humor outflow, 5) the role of BRCA2 and centrobin in the regulation of centrosome duplication in cultured tumor cells, and 6) ADDL-induced synaptic spine changes in primary hippocampal cultures. These projects will significantly benefit from the ability of HPF-AFS to stop cellular activity and restrict cell component relocation almost instantaneously, features that conventional EM preparation methods do not offer. These projects require a cryoprocessing system with the greatest flexibility, ease of use, and consistency of results. Based on the experience of the manager and on demonstrations of the two available cryoprocessing units, we have determined that the Leica EM-PACT2/AFS2 system best suits our needs. This equipment will be housed in BIF on the Northwestern University Evanston Campus. BIF is a shared-use facility available to Northwestern researchers, neighboring academic and health care institutions, and outside individuals. All of the major users listed in this proposal are either currently funded by NIH or have proposals pending. Relevance: Results obtained from these studies will have significant impact on public health research in the areas of epilepsy, infertility, cancer, viral transmission, glaucoma, and Alzheimer's disease. ? ? ?

Agency
National Institute of Health (NIH)
Institute
National Center for Research Resources (NCRR)
Type
Biomedical Research Support Shared Instrumentation Grants (S10)
Project #
1S10RR022494-01A1
Application #
7216633
Study Section
Special Emphasis Panel (ZRG1-CB-N (30))
Program Officer
Levy, Abraham
Project Start
2007-04-01
Project End
2008-03-31
Budget Start
2007-04-01
Budget End
2008-03-31
Support Year
1
Fiscal Year
2007
Total Cost
$254,429
Indirect Cost
Name
Northwestern University at Chicago
Department
Biology
Type
Schools of Arts and Sciences
DUNS #
160079455
City
Evanston
State
IL
Country
United States
Zip Code
60201
Xiao, Jisheng; Chen, Siyu; Yi, Ji et al. (2017) A Cooperative Copper Metal-Organic Framework-Hydrogel System Improves Wound Healing in Diabetes. Adv Funct Mater 27:
Keerthivasan, Ganesan; Liu, Hui; Gump, Jacob M et al. (2012) A novel role for survivin in erythroblast enucleation. Haematologica 97:1471-9