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Search Results for: digital gene expression

Total Results Found: 60

CCR Genomics Core
Bethesda, MD

Core Facility

The CCR Genomics Core is located in Building 41 on the NIH Bethesda campus. The primary goal of the Core is to provide investigators from CCR/NCI and other NIH Institutes access to genomic technologies and Read More...

CCR Genomics Technology Laboratory (GTL)
Frederick, MD

Core Facility

The Genomics Technology Laboratory is an integrated, high-throughput molecular biology laboratory focusing on the development of genetics and genomics technologies, data analysis, and information management tools, in support of CCR Investigators. The laboratory develops integrated Read More...

CLIA Molecular Diagnostics Laboratory
Frederick, Maryland

Core Facility

Mutation Detection:: For PCR and Sanger sequencing both testing and bioinformatics interpretation are conducted. This method is currently being used in patients with chronic granulomatous disease (CGD), WHIM syndrome, and other autoimmune disorders. Because Sanger Read More...

CCR Spatial Imaging Technology Resource (SpITR)
Bethesda, MD

Core Facility

Collaborative

The Spatial Imaging Technology Resource (formerly the Nanoscale Protein Analysis Section of the Collaborative Protein Technology Resource or CPTR) provides expertise and service in state-of-the-art protein analysis technologies to advance CCR research in basic discovery Read More...

Genomics Technology Laboratory

Web Page

The Genomics Laboratory (formerly Laboratory of Molecular Technology) is an integrated, high-throughput molecular biology laboratory focusing on the development of genetics and genomics technologies, together with associated laboratory automation systems, data analysis, and information management Read More...

CLIA Molecular Diagnostics Laboratory (CMDL)

Web Page

The CLIA Molecular Diagnostics Laboratory (CMDL) provides an array of services for groups at the NIH Clinical Center, Fort Detrick, and Hood College, among others. They support cancer- and disease-related research by making Read More...

July 2021

Web Page

CREx News & Updates July 2021   Learn about the NIH Collaborative Research Exchange (CREx), Core Facilities, Webinars, & More NIH Collaborative Research Exchange (CREx) News Site Spotlight FACILITY HIGHLIGHTS Learn more about services from the NHLBI Read More...

March 2023 Newsletter

Web Page

CREx Monthly Newsletter Learn about the NIH Collaborative Research Exchange (CREx), Core Facilities, Webinars, & More New Resources on CREx NCI CLIA Molecular Diagnostics Laboratory (CMDL) The NCI CMDL is available to assist all Read More...

NanoString GeoMX Digital Spatial Profiler

Web Page

Biomarker Discovery with Morphological Context:  Changing how tissue specimens are analyzed < https://youtu.be/mVhfZq8ppbc What is Digital Spatial Profiling? GeoMx Digital Spatial Profiler is a novel platform developed by NanoString. Digital Spatial Read More...

Protein Expression Laboratory

Web Page

Protein Expression Laboratory The Protein Expression Laboratory develops, improves, and delivers protein-centric services. Our goal is to help client investigators achieve their research goals with the lowest possible cost in the shortest time. All PEL Read More...

CCR Protein Expression Laboratory (PEL)
Frederick, Maryland

Core Facility

The Protein Expression Laboratory produces proteins to help CCR investigators achieve their research goals with the lowest possible cost in the shortest time. PEL is operated by Leidos Biomedical Research Inc. on behalf of NCI Read More...

NIH ORS Division of Library Services (DLS) - Resources
Bethesda, MD

Trans NIH Facility

The NIH Library is a biomedical research library, whose collection and services are available at no cost to NIH staff: Electronic Resources: Over 20,000 electronic journals, 190,000 eBooks, and 50 databases., Training classes covering topics such as bioinformatics, Read More...

CCR Collaborative Bioinformatics Resource (CCBR)
Bethesda, MD

Core Facility

Collaborative

The CCR Collaborative Bioinformatics Resource (CCBR) is a centrally-funded resource group which provides a mechanism for CCR researchers to obtain many different types of bioinformatics assistance to further their research goals. The group has expertise Read More...

NCI LASP Mouse Modeling & Cryopreservation (MMC)
Frederick, MD

Core Facility

The Mouse Modeling Core assists NIH investigators by generating and preserving genetically-engineered mouse strains. Services include scientific consultation, gene-targeting in mouse embryonic stem cells, micro-injection of nucleic acids, proteins, or ES cells into mouse embryos, Read More...

CCR Sequencing Facility
Frederick, MD

Core Facility

The introduction of DNA sequencing instruments capable of producing millions of DNA sequence reads in a single run has profoundly altered the landscape of genetics and cancer biology. Complex questions can now be answered at Read More...

Molecular Targets Database and Tools
Rockville, MD

Collaborative

Thousands of molecular targets have been measured in the NCI panel of 60 human tumor cell lines. Measurements include protein levels, RNA measurements, mutation status and enzyme activity levels. You can choose to search for a Read More...

Biopharmaceutical Development Program (BDP)
Frederick, MD

Collaborative

The Biopharmaceutical Development Program (BDP) provides resources for the development of investigational biological agents. The BDP supports feasibility through development and Phase I/II cGMP manufacturing plus regulatory documentation. BDP is a DCTD-dedicated facility, but Read More...

The CCR Microscopy Core
Bethesda, MARYLAND

Core Facility

Collaborative

The CCR Microscopy Core provides NCI investigators access to state-of-the-art imaging tools and techniques, including light sheet fluorescence, high-resolution confocal, multi-photon, and super-resolution microscopy. The mission of the CCR Microscopy Core Facility is to support Read More...

NICHD Zebrafish Core
Bethesda, MD

Trans NIH Facility

The core's goal is to help researchers of any expertise perform zebrafish experiments aimed at illuminating basic biology and human disease mechanisms, thereby advancing the NIH and NICHD 's research missions.  A typical research question Read More...

CCR Protein Characterization Laboratory (PCL)
Frederick, MD

Core Facility

Protein Characterization Laboratory (PCL) offers various technologies to CCR investigators to characterize proteins and metabolites. The laboratory develops and applies state-of-the-art analytical technologies, primarily mass spectrometry, liquid chromatography, and Surface Plasmon Resonance (SPR), to advance Read More...

CCR Radiation Oncology Branch Bioinformatics Core
Bethesda, Maryland

Core Facility

Collaborative

Radiation Oncology Branch is part of CCR. Bioinformatics core is a collaborative resource to support ROB branch and provide service to ROB investigators from NCI and other Institutes access to new technologies, bioinformatics, statistical analysis Read More...

NCI Genomics and Pharmacology Facility
Bethesda, MD

Core Facility

Collaborative

Established Technologies: CellMiner – Comprehensive molecular data on the NCI-60 cancer cell lines, including: Multiple microarray platforms measuring gene expression, Gene transcript level z score determination from 5 microarray platforms, aCGH DNA copy number, MicroRNA expression and Read More...

Laboratory of Genome Integrity (LGI): Flow Cytometry Core
Bethesda, MD

Core Facility

Flow Cytometry Core (LGI) offers established technologies to support studies using flow cytometry and cell sorting. Instrumentation: 2 FACSCaliburs – 2 lasers (488, 635), LSRII – 5 lasers (355, 405, 488, 561, 635), LSR Fortessa – 4 lasers (355, 405, 488, 639), FACS Aria (standard) – 3 lasers (405, 488, 639), FACS Aria (SORP) – 3 lasers (355, 488, 639), MoFlo Astrios – 5 lasers (355, 405, 488, 561, 640), Read More...

Molecular Pathology Unit
Bethesda, Maryland

Collaborative

Trans NIH Facility

The Molecular Pathology Unit is intended to spearhead opportunities for bridging basic and clinical research efforts by more precisely optimizing the development, characterization and utilization of models of human disease. The initiative approach includes both Read More...

NIA Nonhuman Primate Core
Poolesville, MD

Trans NIH Facility

The NIA Nonhuman Primate (NHP) Core Facility maintains a large colony of aging rhesus macaques at the National Institutes of Health Animal Center. The Core program was established in 2012 to support the experimental goals of Read More...

NIH Intramural Sequencing Center (NISC)
Rockville, MD

Trans NIH Facility

NISC’s role within NHGRI, and more broadly across NIH, aims to advance genome sequencing and its many applications, with a goal not simply to produce sequence data, but to produce the infrastructure required to Read More...

NCI LASP Genome Modification Core (GMC)
Frederick, MD

Core Facility

Collaborative

NCI LASP Genome Modification Core (GMC) is a CCR-dedicated facility that provides advice, training, and reagents to NCI scientists seeking to utilize CRISPR and other nucleases to generate genome modifications in primary cells, cell lines, Read More...

NIH ORS Medical Arts Branch (MAB)
Bethesda, MD

Trans NIH Facility

MAB provides visual communication solutions across all media to the entire NIH community. Our Medical Illustration section provides a complete range of biomedical visualization services including Manuscript/textbook figures, Infographics, 3D modeling, Animation, Technical diagrams, Read More...

NCATS Functional Genomics Laboratory
Rockville, MD

Trans NIH Facility

The Functional Genomics Laboratory (formerly, the RNAi Screening Facility) of the National Center for Advancing Translational Sciences (NCATS) assist investigators with all stages of project planning and execution, beginning with assay development through genome-wide siRNA Read More...

NCI Artificial Intelligence Resource (AIR)
Bethesda, MD

Collaborative

The goal of Artificial Intelligence Resource (AIR) is to make AI tools available to Clinical Cancer Research (CCR) investigators. The strength of AI is that algorithms can be trained to seek specific information that may Read More...

NIH Biowulf Computational Cluster
Bethesda, MD

Trans NIH Facility

The NIH Biowulf Cluster provides researchers with a world-class system to assist in solving complex biomedical problems as diverse as gene variation in worldwide human populations, deep learning to model protein structures, and PET brain Read More...

NCI Genomic Data Commons (GDC)
Bethesda, MD

Collaborative

The NCI Genomic Data Commons (GDC) was established by the NCI Center for Cancer Genomics (CCG) to support the receipt, harmonization, distribution, and analysis of genomic and clinical data from cancer research programs. The mission Read More...

NCI Patient-Derived Models Repository (PDMR)
Bethesda, MD

Collaborative

The National Cancer Institute (NCI) is developing a national repository of Patient-Derived Models (PDMs) comprised of patient-derived xenografts (PDXs), in vitro patient-derived tumor cell cultures (PDCs) and cancer associated fibroblasts (CAFs) as well as patient-derived Read More...

NCI Genetics Branch: OMICS Technology Facility
Bethesda, MD

Collaborative

Our operational objectives are to provide state-of-the-art OMICS technologies in support of the Genetics Branch (GB) investigators and collaborators. Research Services: Wet Lab • Single cell isolation from fresh, frozen and FFPE tissue • DNA/RNA extractions Read More...

NCI Center for Structural Biology: Protein Technology Core
Frederick, MD

Collaborative

The primary objective of the Protein Technology Core (PTC) is to establish an experimental screening pipeline for single-domain antibodies termed nanobodies. Nanobodies are antibody fragments consisting of a single monomeric variable antibody domain. The PTC, Read More...

STARS Request

Web Page

Supplemental Technology Award Review System (STARS) Overview STARS Request Form STARS System The Supplemental Technology Award Review System (STARS) is a web-based interface for submission and review of S&S supplement requests by CCR Read More...

Genetics, Genomics, and Epigenetics

Web Page

NanoString Technology The nCounter® Analysis System is an automated, multi-application, digital detection and counting system which directly profiles up to 800 molecules simultaneously from a single sample using a novel barcoding technology. Profile hundreds of mRNAs, Read More...

Mass Spectrometry for Proteins

Web Page

Mass Spectrometry Section of the Collaborative Protein Technology Resource (Bldg. 37) Core Capabilities: Identification of proteins in complexes, organelles, subcellular fractions, or fluids. Global relative protein quantitation. Quantitation by isotopic labeling of cells in culture (SILAC) Read More...

Electron Microscopy

Web Page

Electron Microscopy Laboratory (EML) The EML offers investigators access to unique expertise and EM technologies that allow our partners to explore new avenues of research to enhance the knowledge of biological systems. To assist our Read More...

Sequencing Facility

Web Page

[tabby title="Overview"] CCR Sequencing Facility Mission: The mission of the Center for Cancer Research Sequencing Facility (CCR-SF) is to utilize high-throughput sequencing technologies to enrich cancer research and ensure that the NCI community can Read More...

BD Genomics Rhapsody System

Web Page

Total end-to-end system for single-cell research [embed]https://youtu.be/vMzhSzg1rUw[/embed] The BD Rhapsody Single-Cell Analysis system empowers and streamlines your research with a complete system of tools, including reagents and analysis software, Read More...

10X Genomics

Web Page

[embed]https://youtu.be/yTl1Q0D7aZ0[/embed] 10x Genomics' supports multiple cancer research areas from single nucleotide and structural variant detection to single cell whole transcriptome gene expression analysis of thousands of individual Read More...

Artificial Intelligence Resource (AIR)

Web Page

[tabby title="Home"] About AIR A CCR Initiative for Researchers Artificial Intelligence Resource (AIR) is a collaborative research group focusing on developing translational computer vision-based AI models for cancer research in the CCR. Mission: The Read More...

June 2021

Web Page

CREx News & Updates June 2021 Learn about the NIH Collaborative Research Exchange (CREx), Core Facilities, Webinars, & More NIH Collaborative Research Exchange (CREx) News Site Spotlight FACILITY HIGHLIGHTS Visit here to learn about services from Read More...

October 2021

Web Page

CREx News & Updates October 2021 Learn about the NIH Collaborative Research Exchange (CREx), Core Facilities, Webinars, & More NIH Collaborative Research Exchange (CREx) News Site Spotlight FACILITY HIGLIGHTS Learn more about services from the CPTR Read More...

Technology Video Library

Web Page

The OSTR offers cutting-edge technology platforms to the CCR scientific community through centralized facilities. The videos accessed through this page are designed to introduce the various scientific methodologies OSTR makes available through the cores on Read More...

February 2023 Newsletter

Web Page

CREx Monthly Newsletter Learn about the NIH Collaborative Research Exchange (CREx), Core Facilities, Webinars, & More. New Resources on CREx NIMH Human Brain Collection Core (HBCC) The HBCC obtains human brain tissue, hair, and blood Read More...

Multi-Angle Light Scattering (MALS)

Web Page

Back Services: We offer a limited sample processing service using standard SEC-MALS and FFF protocols.  This service is intended for the occasional users of this system.  Researchers who expect to use this instrument Read More...

Spatial Biology

Web Page

Employing spatial biology techniques enables acquisition of transcript and protein data from intact tissue sections, and in turn, spatial distribution information and cellular interaction patterns are revealed.

Spatial Biology

Web Page

Employing spatial biology techniques enables acquisition of transcript and protein data from intact tissue sections, and in turn, spatial distribution information and cellular interaction patterns are revealed.

Spatial Biology

Web Page

Employing spatial biology techniques enables acquisition of transcript and protein data from intact tissue sections, and in turn, spatial distribution information and cellular interaction patterns are revealed.