The ideal specimen for conventional optical microscopy is two-dimensional. However, biological material is organized in three dimension. Using conventional fluorescence microscopy, all fluorescence generated over the depth of a biological specimen reaches the image plane. As a result, the material within the plane of focus is sharply imaged, and material outside of the focal plane produces contrast-reducing background. This problem is circumvented using confocal microscopy. With confocal microscopy, light originating from a laser-illuminated pinhole is focused on a certain point in an object. Fluorescence from the same point is subsequently imaged using a detector pinhole. Since the illumination pinhole and the back- projection of the detection pinhole have a common focus in the object, the only light that reaches the detector is that generated from the specimen layer, and virtually all out-of-focus fluorescence is eliminated from the image. Using confocal microscopy, we can resolve uptake of antisense DNA by cancer cells, organelle motility and inheritance during cell division, the effect of the tumor inducers on subcellular localization of proteins, and changes in cytoskeletal organization during establishment of cell polarization, cell migration and cell division. In January 1997, Dr. Liza Pon became the new director of the Cancer Center Confocal Microscopy Facility. She introduced a state-of-the-art Confocal Imaging System using funds obtained from a Shared Instrumentation Grant. The new Facility is now heavily used (ca. 6 hours/day) by Cancer Center members and other research scientists. The system consists of a Zeiss LSM 410 scanning laser confocal attachment mounted on a Zeiss Axiovert 100 TV inverted fluorescence microscope. Sample excitation and confocal image detection is accomplished using an argon-krypton laser and three highly sensitive photomultiplier detectors. This system is able to image up to three fluorophores simultaneously, and to obtain differential interference contrast (DIC) and phase contrast images. The software package for confocal image analysis offers three-dimensional reconstruction, stereoscopic display of three-dimensional images, time-lapse imaging, ratio imaging, photobleaching (e.g., FRAP), quantifying co-localization and morphometry. The combination of confocal microscopy with the inverted microscope and digital image analysis allows users to observe complex living or fixed system with greater accuracy and speed than ever before.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Center Core Grants (P30)
Project #
5P30CA013696-27
Application #
6101559
Study Section
Project Start
1999-07-01
Project End
2000-06-30
Budget Start
1998-10-01
Budget End
1999-09-30
Support Year
27
Fiscal Year
1999
Total Cost
Indirect Cost
Name
Columbia University (N.Y.)
Department
Type
DUNS #
167204994
City
New York
State
NY
Country
United States
Zip Code
10032
Jauregui, Ruben; Thomas, Amanda L; Liechty, Benjamin et al. (2018) SCAPER-associated nonsyndromic autosomal recessive retinitis pigmentosa. Am J Med Genet A :
Ghorpade, Devram S; Ozcan, Lale; Zheng, Ze et al. (2018) Hepatocyte-secreted DPP4 in obesity promotes adipose inflammation and insulin resistance. Nature 555:673-677
Bianchetti, E; Bates, S J; Carroll, S L et al. (2018) Usp9X Regulates Cell Death in Malignant Peripheral Nerve Sheath Tumors. Sci Rep 8:17390
Jauregui, Ruben; Park, Karen Sophia; Duong, Jimmy K et al. (2018) Quantitative Comparison of Near-infrared Versus Short-wave Autofluorescence Imaging in Monitoring Progression of Retinitis Pigmentosa. Am J Ophthalmol 194:120-125
Proto, Jonathan D; Doran, Amanda C; Subramanian, Manikandan et al. (2018) Hypercholesterolemia induces T cell expansion in humanized immune mice. J Clin Invest 128:2370-2375
Shang, Enyuan; Zhang, Yiru; Shu, Chang et al. (2018) Dual Inhibition of Bcl-2/Bcl-xL and XPO1 is synthetically lethal in glioblastoma model systems. Sci Rep 8:15383
Shen, Megan Johnson; Prigerson, Holly G; Ratshikana-Moloko, Mpho et al. (2018) Illness Understanding and End-of-Life Care Communication and Preferences for Patients With Advanced Cancer in South Africa. J Glob Oncol :1-9
Apatoff, Mary Ben L; Sengillo, Jesse D; White, Eugenia C et al. (2018) Autologous stem cell therapy for inherited and acquired retinal disease. Regen Med 13:89-96
Billing, David; Horiguchi, Michiko; Wu-Baer, Foon et al. (2018) The BRCT Domains of the BRCA1 and BARD1 Tumor Suppressors Differentially Regulate Homology-Directed Repair and Stalled Fork Protection. Mol Cell 72:127-139.e8
Connors, Thomas J; Baird, J Scott; Yopes, Margot C et al. (2018) Developmental Regulation of Effector and Resident Memory T Cell Generation during Pediatric Viral Respiratory Tract Infection. J Immunol 201:432-439

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