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SciCrunch Registry is a curated repository of scientific resources, with a focus on biomedical resources, including tools, databases, and core facilities - visit SciCrunch to register your resource.

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On page 13 showing 241 ~ 260 out of 686 results
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https://proteomics.ucdavis.edu/

Core provides LC-MS/MS analysis including Protein ID, Proteomics Profiling, Targeted Proteomics and Post Translational Modification analysis. Analytical proteomic services are provided with emphasis on label free quantitative proteomic profiling, analysis of macromolecular complexes, post-translational modification of their constituents and standard protein identification from complex protein mixtures.

Proper citation: University of California at Davis Genome Center Proteomics Core Facility (RRID:SCR_012666) Copy   


https://marine-geosciences.earth.miami.edu/research-themes/paleoclimatology-and-geochemistry/stable-isotope-laboratory/index.html

Laboratory facility has two Isoprime Isotope Ratio mass spectrometers. One capable of measuring oxygen and hydrogen isotope ratios of water and the other capable of measuring carbon and nitrogen isotope ratios of organic matter.

Proper citation: University of Miami Stable Isotope Laboratory Core Facillity (RRID:SCR_012668) Copy   


http://www.scienceexchange.com/facilities/nutrient-and-phytochemical-analytics-shared-resource-npasr

THIS RESOURCE IS NO LONGER IN SERVICE. Documented in May 14,2024. Nutrient and Phytochemical Analytic Shared Resource (NPASR) provides expert bioanalytical method development and quantitative analysis. The NPASR will support development of methods and techniques to quantitatively determine nutrients and phytochemicals in foodstuffs as well as identification of these compounds and respective metabolites in biological samples from both human clinical trials and animal model investigations. The NPASR personnel are specialists in the field of analytical chemistry, concentrating their expertise in examining the bioavailability, metabolism and physiological significance of carotenoids, isothiocyanates, isoflavones and other phytochemicals. NPASR is capable of developing analytical methods for a Good Laboratory Practice (GLP) environment. Primary goals of NPASR are to provide investigators with expert, leading-edge bioanalytical method development and quantitative analysis of nutrients and phytochemicals in foodstuffs and their metabolites in biological samples and an enhanced understanding of the role of dietary compounds in cancer prevention and control.

Proper citation: OSU Nutrient and Phytochemical Analytics Shared Resource (RRID:SCR_012701) Copy   


http://www.scienceexchange.com/facilities/bioprocess-scale-up-facility

The Bioprocess Scale-Up Facility (BSF) is the Biotechnology Research and Education Program''''s modern bioprocessing laboratory dedicated to the development and scale-up of biotechnology products and processes. With over 1000 fermentations conducted since 1998 alone, the BSF has accelerated the R&D of local biotechnology leaders such as Human Genome Sciences, NIH and MedImmune, as well as growing Maryland start-ups such as Martek Biosciences and Digene Corporation. The BSF''''s capabilities include fermentation, purification, product analysis and solving challenging problems such as biopolymers, turbulence and multiphase fluid dynamics, biosensors, process analysis and control, and both metabolic and biochemical engineering. BSF is a unique facility in Maryland not restricted by current good manufacturing practices (cGMP) requirements, and production processes are directly transferable to partners operating under cGMPs (required for FDA-approved clinical trials), such as Cambrex Inc. and the Walter Reed Army Institute of Research. The BSF enables small manufacturing companies to offer extended capabilities to major pharmaceutical (Big Pharma) companies out-of-state. The Biopharmaceutical Advancement Facility (BAF) specializes in the development of cell culture-based biopharmaceutical products. BAF is part of the Biotechnology Research and Education Program and a companion to the Bioprocess Scale-Up Facility in the Maryland Technology Enterprise Institute (Mtech) at the University of Maryland. The facility''''s staff members offer extensive expertise in addressing challenging problems with the advancement of anchorage-dependent or suspension-adapted cell lines. The facility is not restricted by current good manufacturing practices (cGMPs); however, production processes are directly transferable to partners operating under cGMPs.

Proper citation: UMD Bioprocess Scale-Up Facility (RRID:SCR_012703) Copy   


  • RRID:SCR_012669

http://www.scienceexchange.com/facilities/the-analyte-center-bcm

THIS RESOURCE IS NO LONGER IN SERVICE. Documented on April 22, 2024. Analyte Center provides analytical services to the research community within Baylor College of Medicine and to investigators at other institutions. We provide access to state-of-the-art gas chromatography/mass spectroscopy, tandem mass spectroscopy, and high pressure liquid chromatography for the purpose of quantitative analysis of small organic molecules. In addition to a broad spectrum of routinely offered services we can also provide specialty services on demand provided our instrumentation will provide the sensitivity and specificity required for the investigator.

Proper citation: BCM Analyte Center (RRID:SCR_012669) Copy   


http://www.scienceexchange.com/facilities/advanced-imaging-core-aic-uchicago

The Center''''s Advanced Imaging Core (AIC) features state-of-the-art core technologies available on a fee for service basis.

Proper citation: UChicago Advanced Imaging Core (RRID:SCR_012704) Copy   


http://www.scienceexchange.com/facilities/infectious-disease-resource-core-arizona

IDRC aims to improve the detection and prevention of infectious diseases, by developing new diagnostic laboratory methods for use in evidence-based research and clinical practice

Proper citation: UA Infectious Disease Resource Core (RRID:SCR_012671) Copy   


http://www.neurodiscovery.harvard.edu/resources/atrc.html

Core facility that provides provides state-of-the-art molecular pathology resources to the Harvard community including laser capture microscopy, DNA/RNA/miRNA quality/expression analysis, Luminex FlexMap 3D multiplex bead cytometry, and real-time PCR. The ATRC is a fee-for-use facility. For NeuroDiscovery members, the first 10 hours of training, consultation and instrument use is free. This initial period is intended to provide a first time user with preliminary data/proof of concept regarding their project, and is generally sufficient when investigators work under the aegis of ATRC staff. Thereafter, the base fee varies depending on activity and the extent of your proposed work. Project-based charge-back agreements for large projects can be negotiated with the ATRC Director, Dr. Charles Vanderburg. Although priority is given to NeuroDiscovery members investigating neurodegenerative diseases and the CNS, the facility is also available to any academic investigators within the Harvard medical community and the greater-Boston research community. Under special arrangements the facility may also be made available to the commercial sector. Please contact ATRC Director, Dr. Charles Vanderburg, for details.

Proper citation: HNDC Advanced Tissue Resource Center (RRID:SCR_012670) Copy   


http://www.scienceexchange.com/facilities/nnin-nano-research-facility-wustl

THIS RESOURCE IS NO LONGER IN SERVICE. Documented on May 15,2024. Nano Research Facility (NRF) at Washington University in St. Louis is a NNIN nodal facility supported by the National Science Foundation. It cultivates an open, shared research, and education environment that brings researchers across disciplines together, particularly in the emerging area of nanomaterials with applications in the energy, environment, and biomedical fields. The mission is to be a resource to the scientific and technical community for the advancement of nanoscience and nanotechnology in a safe and environmentally benign manner. NRF includes a micro- and nano-fabrication lab (clean room), surface characterization lab, particle technology lab, and imaging lab with a focus on bio-imaging. NRF provides unique technical expertise in: Knowledge-based synthesis of nanostructured materials Particle instrumentation tools for toxicity studies Non-invasive imaging modalities for biological applications Clean Energy Applications Energy and Environmental nanotechology Environmental Health and Safety As a member of the National Nanotechnology Infrastructure Network (NNIN), supported by the National Science Foundation, NRF is available to both academic and industrial users nation-wide and across the globe.

Proper citation: WUSTL NNIN - Nano Research Facility (RRID:SCR_012674) Copy   


http://www.scienceexchange.com/facilities/duke-clinical-research-unit

The Duke Clinical Research Unit is a state-of-the-art research facility located within the Duke University Medical Center campus that provides infrastructure support to sponsors and investigators who are: - Testing new drug candidates and other cutting-edge therapies - Seeking to identify and validate novel biomarkers Building on the strength of Duke''s thought leadership, therapeutic expertise, patient base, and access to the latest technologies, the DCRU is a critical component of the Duke Translational Medicine Institute''s efforts to speedily translate new laboratory discoveries into treatments for patients DCRU is a Duke resource available to investigators for the conduct of clinical trials in either adult or pediatric populations. For non-commercial clinical trials funded by the NIH, foundations, investigators������������������������ departments, and similar funding mechanisms, the DCRU provides: - Space - Nursing support - Core laboratory support - Statistical support for study design and analysis - Metabolic kitchen support DCRU can also be your partner for industry-sponsored studies, offering either full-service execution of your studies or fee for service in the above areas.

Proper citation: Duke Clinical Research Unit (RRID:SCR_012677) Copy   


http://www.scienceexchange.com/facilities/blizard-institute-of-cell-and-molecular-science-bicm

The Blizard Institute is the largest institute of Barts and the London School of Medicine and Dentistry and aims to deliver excellence in all aspects of research, teaching and clinical service

Proper citation: Blizard Institute of Cell and Molecular Science Labs and Facilities (RRID:SCR_012711) Copy   


http://www.scienceexchange.com/facilities/cell-biology-and-bioimaging-core-cbbc-lsu

The Cell Biology and Bioimaging Core (CBBC) provides access to state of the art imaging, analytical, and histological equipment as well as technical expertise and assistance to researchers at the PBRC, LSU''s main campus, and outside the LSU university system.

Proper citation: LSU Cell Biology and Bioimaging Core (RRID:SCR_012714) Copy   


https://cbc.arizona.edu/research/support-services/facilities/nuclear-magnetic-resonance-nmr

Interdisciplinary NMR spectroscopy research facility for structural elucidation and study of conformation and dynamics of organic compounds, peptides, oligonucleotides and other small biopolymers.

Proper citation: University of Arizona Nuclear Magnetic Resonance Core Facility (RRID:SCR_012716) Copy   


http://www.scienceexchange.com/facilities/joslin-diabetes-center-genomics-core

The main objective of the Joslin Diabetes Center Genomics Core is to facilitate research by laboratories by providing equipment, expertise, and services in nucleic acid analysis that would be too specialized or costly for individual laboratories to provide independently. Instruments include: ������������ Fluidics Station 400 ������������ GeneChip?������ Scanner 3000 ������������ Hybridization Oven 640 ������������ NanoDrop ND-1000 ������������ NanoDrop ND-3300

Proper citation: Joslin Diabetes Center Genomics Core (RRID:SCR_012682) Copy   


http://www.scienceexchange.com/facilities/center-for-clinical-imaging-research-ccir

The CCIR provides a full range of biomedical imaging services to support clinical research projects. These services include: (1) Pre-study services that help investigators design, set up, and kick off the study; (2) Coordinating services, including Scanning, that provide assistance in executing, monitoring and evaluating the study; and, (3) Information Technology management services to handle, track, and process imaging data.

Proper citation: WUSTL School of Medicine Center for Clinical Imaging Research (RRID:SCR_012684) Copy   


http://www.scienceexchange.com/facilities/biology-department-imaging-facility-wustl

Dedicated imaging facility for many aspects of brightfield and fluorescence microscopy, including low-light imaging, scanning confocal imaging, imaging of fixed and living tissues, deconvolution, multi-channel imaging, FRAP, FRET, time-lapse and z stack (3D and 4D) acquisition, and spectral analysis.

Proper citation: WUSTL Biology Department Imaging Facility (RRID:SCR_012686) Copy   


https://cancer.osu.edu/about/publications-and-reports/magazines-and-publications/frontiers/2013/winter/nucleic-acid-shared-resource-adds-new-technologies-and-applications

The Nucleic Acid Shared Resource (NASR) provides genomic and epigenomic support for cancer research at OSUCCC-James including: Sanger-based DNA Sequencing, Next-Generation Sequencing, Genotyping, DNA Methylation analysis and Gene Expression Analysis. Additionally, the NASR provides consultation and assistance in experimental design, troubleshooting, training, development of novel methodologies and applications, and publication preparation.

Proper citation: OSU Nucleic Acid Shared Resource (RRID:SCR_012643) Copy   


http://www.scienceexchange.com/facilities/cell-culture-and-cytogenetics-facility-pitt

The Cell Culture and Cytogenetics Facility carries out classical and molecular cytogenetic analyses. These studies include karyotyping, special staining and banding procedures, and fluorescence in situ hybridization (FISH). This analysis can be performed on cells from blood or tissue specimens from humans or experimental animals, cultured cells, and/or fresh, frozen, or paraffin-embedded tumor biopsies. This approach can be used to characterize the karyotype of cells; map the location of new genes, virus, or transgene insertions; monitor established cell lines to rule out interspecies cell culture contamination or other changes during cell culture; ensure the fidelity of embryonic stem cells prior to production of knockout mice; determine the pattern of chromosomal gains and losses; and enumerate copy numbers of chromosomes or cancer-related genes. The Cell Culture and Cytogenetics Facility provides comprehensive state-of-the-art cytogenetics services ranging from assisting investigators with study design, performing cell culture, preparing probes, carrying out and interpreting classical and molecular cytogenetic analyses, and assisting in manuscript preparation. The laboratory includes equipment for cell culture, cryopreservation, cytogenetic harvests, cytogenetic analysis of human and other mammalian cells, FISH, molecular genetic procedures requisite for FISH, including polymerase chain reaction (PCR) amplification, fluorescence and light microscopy, darkroom for standard photomicrography and printing as well as digital imaging and printing to laser or dye sublimation printers.

Proper citation: University of Pittsburgh Cell Culture and Cytogenetics Facility (RRID:SCR_012651) Copy   


https://systemsbiology.columbia.edu/genome-center

Core sells sequencing data and bioinformatic analytics services to the scientific community. Core aims to permit the development of research on sequencing protocols and encourage collaboration with clinicians to develop the next generation genomic DNA testing.

Proper citation: JP Sulzberger Columbia Genome Center (RRID:SCR_012650) Copy   


http://bioinformatics.hms.harvard.edu/

Core facility that offers consultations on basic questions in research computing, bioinformatics and computational biology during the initial stages of study design and grant proposals as well as for ongoing, funded studies requiring external expertise. Core has experience in large-scale data management, database design and software development. Staff members can provide assistance in quality assurance and analysis of gene expression arrays, genome-wide SNP arrays, CNV studies and different aspects of second-generation sequencing technologies such as ChIP-seq, RNA-Seq or resequencing efforts. Services also include provision of external information generated from public database, data curation and assistance on choosing the right data format and annotation standard to ensure best practices in data management and submission are being maintained.

Proper citation: Harvard Chan Bioinformatics Core (RRID:SCR_012655) Copy   



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