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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.
Core whose aim is to translate basic science research into effective diagnostic and therapeutic strategies that will improve the lives of patients by interrupting the pathogenesis of chronic kidney disease and its attendant high risk of cardiovascular disability and death. It combines comprehensive human genetics with phenotyping of subjects.
Proper citation: George M. O'Brien Kidney Research Core Center - UT Southwestern Medical Center Clinical and Translational Core (RRID:SCR_015295) Copy
http://www.kidneycenter.pitt.edu/cores/cell_physiology.html
Core that provides investigators with in vitro systems for the study of transport processes at the molecular, cell, and epithelial levels.
Proper citation: Pittsburgh Center for Kidney Research Cellular Physiology (RRID:SCR_015284) Copy
http://www.kidneycenter.pitt.edu/cores/single_nephron_core.html
Core that offers functional (in vitro microperfusion of isolated segments, measurements of transepithelial ion/solute fluxes, fluorescence functional imaging of single tubular cells), biochemical (microassays of enzyme/transporter activity), molecular (quantitation and analysis of RNA and protein), and analytical (targeted renal metabolomics of interrelated networks of small molecules) strategies applied to microdissected tubules, single cells, and urinary exosomes to address relevant questions proposed by users. It also provides analytical services for determining concentrations of exogenous pharmacological agents and molecular probes achieved within the tissue of interest.
Proper citation: Pittsburgh Center for Kidney Research Single Nephron and Metabolomics (RRID:SCR_015285) Copy
http://www.dukekidneycenter.org/cores/clinical-and-translational-core
Core facility which investigates the connections between chronic kidney disease, cardiovascular disease, and hypertension. It focuses specifically on investigating the pathophysiology, epidemiology, and therapeutic response in on-going studies or existing datasets of one of the three diseases with the aim of relating data from individual diseases to each other.
Proper citation: Duke O'Brien Center for Kidney Research Clinical and Translational Core (RRID:SCR_015272) Copy
http://obriencenter.yale.edu/renalphyscore.aspx
Core provides specialized services and training for assessing renal function in small animals at the level of single tubules in vitro and in vivo (e.g. micropuncture, microperfusion, and tubule-specific microdissection), the whole kidney (e.g. clearance studies in anesthetized animals, perfusion fixation for histology studies), and the intact organism (e.g. balance studies in metabolic cages, acute and chronic BP measurements).
Proper citation: George M. O'Brien Kidney Center at Yale Renal Physiology Core (RRID:SCR_015296) Copy
Educational resource to increase awareness of kidney disease and its risk factors, improve early detection of chronic kidney disease (CKD), reduce the burden of CKD, facilitate identification of patients at greatest risk for progression to kidney failure, stress the importance of testing those at risk, promote evidence-based interventions to slow progression of CKD, and support the coordination of Federal responses to CKD. Target audiences include individuals at risk, particularly those with diabetes, high blood pressure, and a family history of kidney disease, and primary care providers.
Proper citation: National Kidney Disease Education Program (RRID:SCR_006527) Copy
http://www.kidneycenter.pitt.edu/
Center whose focus is to advance knowledge of normal kidney function, cellular mechanisms that contribute to kidney disease, and the myriad altered cellular functions that occur in the setting of renal insufficiency.
Proper citation: Pittsburgh Center for Kidney Research (RRID:SCR_015286) Copy
http://www.dukekidneycenter.org/cores/animal-models-core
Core facility that provides access to a range of experimental models of kidney, heart and vascular diseases. It also provides comprehensive phenotyping services for kidney functions, blood pressure and other cardiovascular functions.
Proper citation: Duke O'Brien Center for Kidney Research Animal Models Core (RRID:SCR_015267) Copy
http://golgi.ana.ed.ac.uk/kidhome.html
The Kidney Development Database was created to collect in one place the data from a large number of developmental studies that have a bearing on the study of kidney development. With its oldest parts dating back to 1993/4, it is, as far as we know, the earliest computer database in the field of vertebrate organogenesis. Data are displayed in tables, arranged according to a standard scheme of kidney development explained in the key. Many of the entries are derived from low-power in situs or published text-only descriptions, and should therefore be interpreted with mild caution.
Proper citation: Kidney Development Database (RRID:SCR_013374) Copy
http://www.dukekidneycenter.org/
Research center which investigates the mechanisms underlying the impact kidney disease has on cardiovascular morbidity and mortality using genetic and basic science approaches.
Proper citation: Duke O'Brien Center for Kidney Research (RRID:SCR_015268) Copy
http://www.kidneycenter.pitt.edu/cores/biostatistics.html
THIS RESOURCE IS NO LONGER IN SERVICE, documented on Feb 16, 2022. Core that offers biostatistical analysis to users of the Pittsburgh Center for Kidney Research. Available to the Pittsburgh Center for Kidney Research community.
Proper citation: Pittsburgh Center for Kidney Research Biostatistical Analysis Services (RRID:SCR_015290) Copy
http://datahub.io/dataset/kupkb/resource/8c1e0082-e958-493b-83e6-111bc1c2f0a5
Ontology describing kidney and urinary pathways cell, anatomy, and disease.
Proper citation: Kidney and Urinary Pathway Ontology (RRID:SCR_006690) Copy
Center that facilitates translational and clinical research that will advance the prevention and treatment of kidney diseases.
Proper citation: George M. O'Brien Kidney Center at Yale (RRID:SCR_015294) Copy
http://www.baltimorepkdcenter.org/clinical/index.shtml
Core facility that provides clinical applications and methods to make kidney research translational and applicable to care settings.
Proper citation: Baltimore Polycystic Kidney Disease (PKD) Research and Clinical Core Center Clinical and Translational Core Resource (RRID:SCR_015291) Copy
http://www.baltimorepkdcenter.org/antibody/index.shtml
Core which supports the work of the Baltimore Polycystic Kidney Disease research center by providing antibody validation services and vectors to researchers.
Proper citation: Baltimore Polycystic Kidney Disease (PKD) Research and Clinical Core Center Antibody Validation and Vector Core (RRID:SCR_015318) Copy
http://archives.niddk.nih.gov/patient/crisp/rp-crisp.aspx
A five-year prospective cohort study following 240 patients who have autosomal-dominant polycystic kidney disease (PKD) to determine whether changes in anatomic characteristics of their kidneys as measured by magnetic resonance imaging will be useful in providing surrogate measures for disease progression. CRISP's overall goal is to develop methods that would facilitate shortening the observation period necessary to determine efficacy of treatment interventions in PKD patients. Specific goals of this study are to: * Quantify cyst growth and ascertain severity of renal parenchymal involvement by sequential measurement of total kidney volume and the ratio of intact parenchyma to renal parenchyma occupied by cysts over time * Establish useful clinical correlations of imaging data with other markers of disease progression * Identify and test other potential markers or indices of disease progression, for example, assessment of loss of heterozygosity of renal cells shed in the urine, or other markers, in cohorts of patients with PKD * Gain information about the cost-effectiveness, patient acceptability, and advantages and disadvantages of different imaging techniques used serially in patients with PKD. Some experience has been gained in establishing that repeat imaging of the same PKD patient, using these techniques, yields reproducible estimates of kidney size and the proportion of renal parenchyma occupied by cysts. MRI may also have the advantage of permitting simultaneous estimation of GFR. Ultrasound has the advantage of being more cost-effective and perhaps more acceptable to patients for repetitive studies, but the measurements may be less accurate and reproducible. Nonetheless, there is very limited experience in applying these techniques to follow progression of the renal disease. Development of improved, reproducible imaging methods that assess cyst growth and provide markers of disease progression could markedly improve the feasibility of clinical trials. Participating clinical centers are Emory University, the Mayo Clinic, University of Kansas, and the University of Alabama at Birmingham. The data coordinating and imaging analysis center is at Washington University. (PI has since moved to University of Pittsburgh) The study found that kidney enlargement resulting from the expansion of cysts is continuous, quantifiable, and associated with the decline of renal function. Cystic expansion occurs at a consistent rate per individual, although it is heterogeneous in the population, and that larger kidneys are associated with more rapid decrease in renal function. These anatomic characteristics of patient kidneys may provide useful surrogate measures for disease progression, and hence enhance the development of targeted therapies for autosomal dominant PKD. CRISP III is a five-year prospective cohort study to follow ~170 remaining autosomal dominant polycystic kidney disease (ADPKD) patients who were part of the original CRISP cohort study. CRISP III will verify and extend the preliminary observations of CRISP to determine the extent to which quantitative (kidney volume and blood flow, and hepatic and kidney cyst volume) or qualitative (cyst distribution and character) structural parameters predict renal insufficiency and develop and test new metrics to quantify and monitor disease progression. Urine metabolites and the genome will be correlated with the progression of disease to look for new, predictive disease biomarkers. This information from CRISP III will help determine if the kidney enlargement, blood flow, cyst distribution, or urine metabolites can function as an informative surrogate measure for disease progression.
Proper citation: Consortium for Radiologic Imaging Studies of Polycystic Kidney Disease (RRID:SCR_000690) Copy
Core that provides measurement of serum and or urine Creatinine by Capillary Electrophoresis, measurement of serum and urine citrate by capillary electrophoresis, Microanalysis of serum and urine electrolytes by: Flame photometry, Atomic absorption or Ion-Selective Electrode, and Klotho IP-IB Assay.
Proper citation: George M. O'Brien Kidney Research Core Center - UT Southwestern Medical Center Physiology Core (RRID:SCR_015266) Copy
Core that provides services such as imaging of rodent kidney and heart including functional MRI, processing of tissues for routine paraffin embedding, and single tubule isolation and immunocytochemistry.
Proper citation: George M. O'Brien Kidney Research Core Center - UT Southwestern Medical Center Cell Biology and Imaging Core (RRID:SCR_015297) Copy
https://assess-aki.hmc.psu.edu/
A study which recruits patients with and without an episode of acute kidney injury during a hospitalization, and follows them longitudinally for major cardiac, renal and mortality events. An important aspect of the study is the prospective evaluation of potential biomarkers for renal and cardiac outcomes.
Proper citation: Assessment Serial Evaluation and Subsequent Sequelae in Acute Kidney Injury (ASSESS-AKI) (RRID:SCR_014386) Copy
http://datahub.io/dataset/kupkb
A collection of omics datasets (mRNA, proteins and miRNA) that have been extracted from PubMed and other related renal databases, all related to kidney physiology and pathology giving KUP biologists the means to ask queries across many resources in order to aggregate knowledge that is necessary for answering biological questions. Some microarray raw datasets have also been downloaded from the Gene Expression Omnibus and analyzed by the open-source software GeneArmada. The Semantic Web technologies, together with the background knowledge from the domain's ontologies, allows both rapid conversion and integration of this knowledge base. SPARQL endpoint http://sparql.kupkb.org/sparql The KUPKB Network Explorer will help you visualize the relationships among molecules stored in the KUPKB. A simple spreadsheet template is available for users to submit data to the KUPKB. It aims to capture a minimal amount of information about the experiment and the observations made.
Proper citation: Kidney and Urinary Pathway Knowledge Base (RRID:SCR_001746) Copy
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