The detection and imaging of molecules in biological systems is a vitally important tool in biomedicalresearch. Conventional fluorescence microscopy is an extremely useful technique, but is limited by the lossof resolution caused by emission from sources outside of the focal plane. Confocal Laser ScanningMicroscopy circumvents this problem by scanning the specimen with light from a laser-illuminated pinholeand imaging the emitted light through a detector pinhole. All out-of-focus fluorescence is rejected by thepinhole, resulting in submicron resolution in the X, Y, and Z axes.cIn 1998, funds from a NCRR Shared Instrument Grant, a UAB Health Services Foundation award, and otherresources from the UAB Office of the Provost, the Chairs of Departments in both the Medical and AcademicDivisions of DAB, and Center Directors were used to establish, the High Resolution Imaging Facility. Thisshared resource is equipped with a Leica Confocal Imaging Spectrophotometer TCS SP unit configured formultiphoton excitation with a Coherent MIRA Ti:Sa ultrafast laser with output selectable between 690-990nanometers This permits imaging of living cells and tissues with minimal phototoxicity, and of structures 200-400 micrometers from the tissue surface. The SP allows user selection of specific portions of the emissionspectrum to be delivered to the detector. The result is higher fluorescence yield, reduced crosstalk, andimproved image quality. The Facility also includes an Olympus Fluoview CLSM with fiber launched Kryptonion and Argon ion lasers, conventional fluorescence and DIC microscopy equipment, and work stationsequipped with digital deconvolution software, output and image storage devices. Through a cooperativeagreement with the Birmingham Veteran's Administration Medical Center, RDCC members have access to aLeica TCS SP unit equipped with a UV laser and UV corrected optics. The Leica instruments are equippedwith either three or four detector channels, a transmitted light channel, and Argon ion, Krypton ion andHeliunrNeon lasers, and are able to image up to three fluorophores simultaneously. In a cooperativeagreement with the Cell Adhesion and Matrix research center, and the Vision Science Research Center, theHRIF now offers access to a state-of-the-art FRET system. Significant funds for new in vivo imaginginstrumentation have been obtained through a successful NIH Blueprint application, and a SharedInstrument Grant application for high speed image acquisition capability is pending. The HRIF served 70RDCC investigators during the current funding period and their use accounted for 49% of the total facilityusage. During this same period, support from the RDCC P30 mechanism accounted for less than 20% of thetotal annual operating costs of the facility.

Agency
National Institute of Health (NIH)
Institute
National Institute of Arthritis and Musculoskeletal and Skin Diseases (NIAMS)
Type
Center Core Grants (P30)
Project #
5P30AR048311-07
Application #
7669291
Study Section
Special Emphasis Panel (ZAR1)
Project Start
2008-09-01
Project End
2012-08-31
Budget Start
2008-09-01
Budget End
2009-08-31
Support Year
7
Fiscal Year
2008
Total Cost
$94,876
Indirect Cost
Name
University of Alabama Birmingham
Department
Type
DUNS #
063690705
City
Birmingham
State
AL
Country
United States
Zip Code
35294
Yang, Zhengrong; Hildebrandt, Ellen; Jiang, Fan et al. (2018) Structural stability of purified human CFTR is systematically improved by mutations in nucleotide binding domain 1. Biochim Biophys Acta Biomembr 1860:1193-1204
Smith, Samuel R; Schaaf, Kaitlyn; Rajabalee, Nusrah et al. (2018) The phosphatase PPM1A controls monocyte-to-macrophage differentiation. Sci Rep 8:902
Chen, Wei; Zhu, Guochun; Jules, Joel et al. (2018) Monocyte-Specific Knockout of C/ebp? Results in Osteopetrosis Phenotype, Blocks Bone Loss in Ovariectomized Mice, and Reveals an Important Function of C/ebp? in Osteoclast Differentiation and Function. J Bone Miner Res 33:691-703
Wang, Yong; Schafer, Cara C; Hough, Kenneth P et al. (2018) Myeloid-Derived Suppressor Cells Impair B Cell Responses in Lung Cancer through IL-7 and STAT5. J Immunol 201:278-295
Jones, Robert B; Dorsett, Kaitlyn A; Hjelmeland, Anita B et al. (2018) The ST6Gal-I sialyltransferase protects tumor cells against hypoxia by enhancing HIF-1? signaling. J Biol Chem 293:5659-5667
Bandari, Shyam K; Purushothaman, Anurag; Ramani, Vishnu C et al. (2018) Chemotherapy induces secretion of exosomes loaded with heparanase that degrades extracellular matrix and impacts tumor and host cell behavior. Matrix Biol 65:104-118
Jo, SeongHo; Chen, Junqin; Xu, Guanlan et al. (2018) miR-204 Controls Glucagon-Like Peptide 1 Receptor Expression and Agonist Function. Diabetes 67:256-264
Stafman, Laura L; Williams, Adele P; Garner, Evan F et al. (2018) Targeting PIM Kinases Affects Maintenance of CD133 Tumor Cell Population in Hepatoblastoma. Transl Oncol 12:200-208
Hamilton, Jennie A; Wu, Qi; Yang, PingAr et al. (2018) Cutting Edge: Intracellular IFN-? and Distinct Type I IFN Expression Patterns in Circulating Systemic Lupus Erythematosus B Cells. J Immunol 201:2203-2208
Yang, Zhenhua; Shah, Kushani; Busby, Theodore et al. (2018) Hijacking a key chromatin modulator creates epigenetic vulnerability for MYC-driven cancer. J Clin Invest 128:3605-3618

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