Project Grant S10OD036344
- The University of Michigan was awarded a $1.8 million project grant from the National Institutes of Health Office of the Director under the Research Infrastructure Programs federal grant program to purchase a Leica SP8 confocal microscope. The microscope will support over 30 investigators at the University engaged in diabetes, vision, and retinal research by replacing two aging microscopes in the university's shared imaging facility. The new microscope will provide high-speed resonant scanning...
- Federal Project Grant Award Summary The National Institutes of Health (NIH) Office of the Director awarded $530,050 through the Research Infrastructure Programs (CFDA 93.351) to The University of Texas Southwestern Medical Center on May 15, 2026, for the acquisition of a JEOL JEM-120I transmission electron microscope (TEM). The 120-kilovolt TEM will replace a 19-year-old Tecnai G2 Spirit Biotwin TEM that is nearing end-of-life, with failing cameras and diminishing vendor support. The new...
- Yale University received a $573,005 Project Grant from the National Institutes of Health Office of the Director under the Research Infrastructure Programs (CFDA 93.351) to acquire a Lumicks Avidion Cell Avidity Analyzer. The instrument was awarded on May 1, 2026, with a completion date of April 30, 2027, and will be installed at Yale's New Haven, Connecticut campus. This equipment acquisition addresses a critical research infrastructure need by enabling high-throughput measurement of cell-cell...
- Project Grant Summary Colorado State University received a Project Grant award of $727,297 from the National Institute of General Medical Sciences (NIGMS) under the Biomedical Research and Research Training program (CFDA 93.859), effective July 15, 2025, with completion targeted for July 14, 2026. The award funds the acquisition and implementation of a 3i Marianas Super-Resolution Spinning Disk Confocal (SDC) microscope system to replace the university's original open-access SDC microscope...
- The University of Maryland, Baltimore was awarded a $1,799,728.98 Project Grant from the Department of Health and Human Services National Institutes of Health Office of the Director to purchase a state-of-the-art light sheet fluorescence microscope. The microscope will be situated in the university's established Confocal Core Facility, which will oversee use, training, and service of the instrument for nine NIH-funded research teams. Light sheet fluorescence microscopy is well-suited for...
- Federal Project Grant Summary The National Institutes of Health (NIH) Office of the Director awarded $1,769,674 to the University of California, Santa Cruz under the Research Infrastructure Programs (CFDA 93.351) on May 15, 2025, for the acquisition and installation of a Leica Stellaris 8 (LS8) confocal laser scanning microscope. The award funds the procurement of this state-of-the-art fluorescence imaging instrument to replace a 16-year-old Leica SP5 confocal microscope that reached the end...
- This $750,000 Project Grant award from the National Institutes of Health (NIH) Office of Research Infrastructure Programs (CFDA 93.351) will fund the acquisition of a Leica Stellaris 8 DIVE multiphoton microscope system for the UC San Diego School of Medicine Microscopy Core. The new multiphoton microscope will replace the previous inoperable system and provide cutting-edge imaging capabilities to support a broad range of NIH-funded biomedical research projects across the university. The...
- Northwestern University received a $436,640 Project Grant award dated May 15, 2026, from the National Institutes of Health (NIH) Office of the Director under the Research Infrastructure Programs (CFDA 93.351). The award funds the acquisition and installation of an AXL Cleared Tissue Light Sheet (AXL CTLS) microscope system from 3i for the Center for Advanced Microscopy (CAM) at Northwestern's Chicago campus. This light sheet microscopy instrument replaces an end-of-life Miltenyi...
- This $573,147 National Science Foundation Project Grant through the Integrative Activities program (CFDA 47.083) will fund the acquisition of a Zeiss LSM 900 confocal microscope with Airyscan for Queens College of the City University of New York's Core Facility for Imaging, Cell, and Molecular Biology. The microscope will enhance multidisciplinary research and training at the minority-serving institution by enabling new microscopy courses and outreach activities promoting STEM access for...
- This federal Project Grant award of $551,957 from the National Science Foundation's (NSF) Integrative Activities program (CFDA 47.083) provides funding to the University of Scranton to acquire an Olympus Fluoview FV4000 inverted confocal microscope system. This microscope will be integrated into the university's upper-level biology courses and made accessible to faculty at other local universities to enhance research and training capabilities in multiple biological fields, including cellular...
MINFLUX 3D MICROSCOPE - PROJECT SUMMARY THIS APPLICATION SEEKS FUNDS TO PURCHASE A MINFLUX 3D MICROSCOPE. THIS INSTRUMENT WOULD SUPPORT NINE NIH-FUNDED USERS IN FIVE DEPARTMENTS AND FOUR COLLEGES WITHIN THE TEXAS A & M UNIVERSITY (TAMU) COMMUNITY AND A GROUP OF FOUR NIH-FUNDED INVESTIGATORS AT UT SOUTHWESTERN MEDICAL CENTER. THE MINFLUX MICROSCOPE WOULD BE THE SECOND MAJOR INSTRUMENT IN A RECENTLY ESTABLISHED SHARED USER FACILITY, THE JOINT MICROSCOPY LABORATORY (JML), WHICH IS FOCUSED ON SINGLE MOLECULE FLUORESCENCE APPLICATIONS. THE JML INCLUDES SIGNIFICANT WET-LAB AND TISSUE CULTURE SPACE TO ENCOURAGE USE BY MORE DISTANT LABORATORIES BOTH ON CAMPUS AND EXTERNAL TO THE UNIVERSITY. MINFLUX IS A RELATIVELY NEW STATE-OF-THE-ART POINTILLISTIC IMAGING AND PARTICLE TRACKING STRATEGY THAT IS EXTREMELY THRIFTY WITH THE USE OF PHOTONS, REQUIRING ~10-FOLD LESS PHOTONS THAN THE COMMON PALM/STORM- TYPE POINTILLISTIC SUPER-RESOLUTION APPROACHES. CONSEQUENTLY, MINFLUX CAN ACHIEVE PRECISION LEVELS OF A FEW NANOMETERS ON A SUB-MILLISECOND TIMESCALE WITHIN FUNCTIONALLY ACTIVE CELLULAR SYSTEMS AND LONG SINGLE MOLECULE TRAJECTORIES IN THREE-DIMENSIONS (3D) CAN BE OBTAINED USING SINGLE FLUOROPHORE TAGS. THE REQUESTED MINFLUX 3D SYSTEM WILL ENABLE NUMEROUS MULTI-COLOR STRATEGIES COMBINING BOTH STATIC IMAGING AND MOLECULAR TRACKING APPROACHES. USERS WILL EXAMINE WELL-CONTROLLED IN VITRO SYSTEMS AS WELL AS STABILIZED AND COMPLEX CELLULAR SYSTEMS (FIXED AND PERMEABILIZED CELLS), MANY WITH AN EYE TOWARDS LIVE CELL INVESTIGATIONS. THE MAJOR USERS WILL EXAMINE FUNDAMENTAL AND DIVERSE CELL BIOLOGICAL AND MECHANISTIC BIOCHEMISTRY QUESTIONS FOCUSED ON NUCLEOCYTOPLASMIC TRANSPORT, CONDENSATES, BACTERIAL PILI, NUCLEAR MECHANICAL STRESS AND SYNAPSES. THE MINOR USERS PROJECTS INCLUDE STRUCTURE, FUNCTION AND BIOPHYSICAL STUDIES OF MITOCHONDRIAL RNA EDITING AND KINASE SIGNALING, CHEMOTAXIS, ENDOSOMAL ESCAPE, ENDOCYTIC RECYCLING, ANTIBIOTIC BIOSYNTHESIS, PHAGE INFECTION, AND ADDITIONAL PROJECTS ON CONDENSATES AND SYNAPSES. THE FULL-TIME TECHNICIAN NEEDED TO RUN THE MINFLUX MICROSCOPE WILL BE SUPPORTED BY A COMBINATION OF USER FEES AND ONGOING CONTRIBUTIONS FROM DEPARTMENTS, COLLEGES, TEXAS A & M HEALTH, AND THE VICE PRESIDENT FOR RESEARCH, EMPHASIZING THE WIDESPREAD IMPORTANCE OF THE NEW MICROSCOPE CAPABILITIES TO ADVANCE THE CAPABILITIES AND GROWTH OF CURRENT RESEARCH PROGRAMS. THE INSTRUMENT WILL BE HOUSED IN THE COLLEGE OF MEDICINE BY THE DEPARTMENT OF CELL BIOLOGY AND GENETICS, WHICH HAS DONATED SUBSTANTIAL EQUIPMENT AND SPACE FOR THE NASCENT JML MICROSCOPE FACILITY. ALTOGETHER, THE IDENTIFIED USERS HAVE PLANNED NEW RESEARCH DIRECTIONS THAT ARE EXPECTED TO ULTIMATELY REQUIRE > 90% OF THE TOTAL ACCESSIBLE USER TIME, INDICATING THE SUBSTANTIAL DEMAND FOR BOTH EXISTING AND NEWLY DEVELOPING PROJECTS. IN TOTAL, THE REQUESTED MINFLUX 3D MICROSCOPE WILL PROVIDE SUBSTANTIAL AND FUNDAMENTAL INFRASTRUCTURAL SUPPORT FOR A WIDE RANGE OF PROJECTS IMPORTANT FOR UNDERSTANDING AND IMPROVING HUMAN HEALTH.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $1 | 6/1/26 |