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A not for profit organization to accelerate research into aging by sharing resources: providing access to cost and time effective, aged murine tissue through a biorepository and database of live ageing colonies, as well as promoting the networking of researchers and dissemination of knowledge through its online collaborative environment; MiCEPACE. ShARM will provide valuable resources for the scientific community while helping to reduce the number of animals used in vital research into aging. The biobank of tissue and networking facility will enable scientists to access shared research material and data. By making use of collective resources, the number of individual animals required in research experiments can be minimized. The project also has the added value of helping to reduce the costs of research by connecting scientists, pooling resource and combining knowledge. ShARM works in partnership with MRC Harwell and the Centre for Intergrated Research into Musculoskeletal Ageing (CIMA).
Proper citation: ShARM (RRID:SCR_003120) Copy
THIS RESOURCE IS NO LONGER IN SERVICE; REPLACED BY NEPHROSEQ; A growing database of publicly available renal gene expression profiles, a sophisticated analysis engine, and a powerful web application designed for data mining and visualization of gene expression. It provides unique access to datasets from the Personalized Molecular Nephrology Research Laboratory incorporating clinical data which is often difficult to collect from public sources and mouse data.
Proper citation: Nephromine (RRID:SCR_003813) Copy
http://cddb.nhlbi.nih.gov/cddb/
THIS RESOURCE IS NO LONGER IN SERVICE, documented on July 16, 2013. This database is intended to serve as a learning tool to obtain curated information for the design of microarray targets to scan collecting duct tissues (human, rat, mouse). The database focuses on regulatory and transporter proteins expressed in the collecting duct, but when collecting duct proteins are a member of a larger family of proteins, common additional members of the family are included even if they have not been demonstrated to be expressed in the collecting duct. An Internet-accessible database has been devised for major collecting duct proteins involved in transport and regulation of cellular processes. The individual proteins included in this database are those culled from literature searches and from previously published studies involving cDNA arrays and serial analysis of gene expression (SAGE). Design of microarray targets for the study of kidney collecting duct tissues is facilitated by the database, which includes links to curated base pair and amino acid sequence data, relevant literature, and related databases. Use of the database is illustrated by a search for water channel proteins, aquaporins, and by a subsequent search for vasopressin receptors. Links are shown to the literature and to sequence data for human, rat, and mouse, as well as to relevant web-based resources. Extension of the database is dynamic and is done through a maintenance interface. This permits creation of new categories, updating of existing entries, and addition of new ones. CDDB is a database that organizes lists of genes found in collecting duct tissues from three mammalian species: human, rat, and mouse. Proteins are divided into categories by family relationships and functional classification, and each category is assigned a section in the database. Each section includes links to the literature and to sequence information for genes, proteins, expressed sequence tags, and related information. The user can peruse a section or use a search engine at the bottom of the web page to search the database for a name or abbreviation or for a link to a sequence. Each entry in the database includes links to relevant papers in the kidney and collecting duct literature. It uses links to PubMed to generate MEDLINE searches for retrieval of references. In addition, each entry includes links to curated sequence data available in LocusLink. Individual links are made to sequence and protein data for human, rat, and mouse. Links are then added as curated sequences become available for proteins identified in the renal collecting duct and for proteins identified in kidney and similar in function or homologous to proteins identified in the collecting duct.
Proper citation: Collecting Duct Database (RRID:SCR_000759) Copy
Multicenter observational study designed to identify genetic determinants of diabetic nephropathy. It is conducted in eleven U.S. clinical centers and a coordinating center, and with four ethnic groups (European Americans, African Americans, Mexican Americans, and American Indians). Two strategies are used to localize susceptibility genes: a family-based linkage study and a case-control study using mapping by admixture linkage disequilibrium (MALD). In the family-based study, probands with diabetic nephropathy are recruited with their parents and selected siblings. Linkage analyses will be conducted to identify chromosomal regions containing genes that influence the development of diabetic nephropathy or related quantitative traits such as serum creatinine concentration, urinary albumin excretion, and plasma glucose concentrations. Regions showing evidence of linkage will be examined further with both genetic linkage and association studies to identify genes that influence diabetic nephropathy or related traits. Two types of MALD studies are being done. One is a case-control study of unrelated individuals of Mexican American heritage in which both cases and controls have diabetes, but only the case has nephropathy. The other is a case-control study of African American patients with nephropathy (cases) and their spouses (controls) unaffected by diabetes and nephropathy; offspring are genotyped when available to provide haplotype data. The specific goals of this program: * Delineate genomic regions associated with the development and progression of renal disease(s) * Evaluate whether there is a genetic link between diabetic nephropathy and diabetic retinopathy * Improve outcomes * Provide protection for people at risk and slow the progression of renal disease * Help establish a resource for genetic studies of kidney disease and diabetic complications by creating a repository of genetic samples and a database * Encourage studies of the genetics of progressive renal disease
Proper citation: Family Investigation of Nephropathy of Diabetes (RRID:SCR_001525) Copy
https://sites.cscc.unc.edu/cscc/projects/RIVUR%20
Multicenter, randomized, double-blind, placebo-controlled trial is designed to determine whether daily antimicrobial prophylaxis is superior to placebo in preventing recurrence of urinary tract infection (UTI) in children with vesicoureteral reflux (VUR). The basic eligibility criteria are: (1) age at randomization of at least 2 months, but less than 6 years, (2) a diagnosed first febrile or symptomatic UTI within 42 days prior to randomization that was appropriately treated, and (3) presence of Grade I-IV VUR based on voiding cystourethrogram (VCUG). Patients will be randomly assigned to treatment for 2 years with daily antimicrobial prophylaxis (trimethoprim-sulfamethoxazole) or placebo. The study is designed to recruit 600 children (approximately 300 in each treatment group) over an 18-24 month period. The primary endpoint is recurrence of UTI. In addition, patients will be evaluated for secondary endpoints related to renal scarring and antimicrobial resistance. Scarring will be determined based on renal scintigraphy by 99mTc dimercaptosuccinic (DMSA) scan. Quality of life, compliance, safety parameters, utilization of health resources, and change in VUR will be assessed periodically throughout the study.
Proper citation: RiVuR (RRID:SCR_001539) Copy
https://www.niddkrepository.org/studies/neptune/
A consortium of researchers conducting a cohort study that investigates the underlying disease mechanisms of pro non-inflammatory glomerular diseases. The aim is to elucidate pathogenesis and identify therapeutic targets for clinical trials. The study participants will be classified according to the kidney biopsy results into one of three subcohorts, including Minimal change disease/Focal segmental glomerulosclerosis; Membranous nephropathy; and other conditions.
Proper citation: Nephrotic Syndrome Study Network (NEPTUNE) (RRID:SCR_014380) Copy
Core that is responsible for all statistical, data management and epidemiological aspects of studies in the Mayo Clinic O'Brien Urology Research Center. Its services include consultation to project investigators regarding study design, data analysis and interpretation of results, maintanence of the Olmsted County kidney stone database, and development of additional linkable databases and quality control procedures.
Proper citation: Mayo Clinic O'Brien Urology Center Biostatistics and Epidemiology Core (RRID:SCR_015452) Copy
Laboratory portal that houses the following databases. MethPrimer is a program for designing bisulfite-conversion-based Methylation PCR Primers. Currently, it can design primers for two types of bisulfite PCR: 1) Methylation-Specific PCR (MSP) and 2) Bisulfite-Sequencing PCR (BSP) or Bisulfite-Restriction PCR. CpG Island Prediction MethPrimer can also analyze input sequences for the existence of CpG islands. Human Prostate Gene Database (PGDB) is a curated and integrated database of human genes related to the prostate and prostatic diseases. Human Kidney Gene Database (KGDB) is a curated and integrated database of human genes related to the kidney and renal diseases. The Li Lab is interested in understanding how small RNA regulates gene expression at the transcriptional level by targeting gene promoter sequences, particularly how small RNA activates gene transcription, a phenomenon termed RNA activation (RNAa).
Proper citation: The Li Lab at UCSF (RRID:SCR_010269) Copy
http://c-path.org/programs/cfast/
Consortium establishing data standards, tools and methods for conducting research in therapeutic areas important to public health including Alzheimer's disease, Parkinson's disease, multiple sclerosis, polycystic kidney disease, and tuberculosis.CDISC and C-Path have agreed to discontinue using separate CFAST brand, but they both remain committed to this mission and continue to partner to develop and publish therapeutic area data standards.
Proper citation: Coalition For Accelerating Standards and Therapies (RRID:SCR_000206) Copy
https://www.leica-microsystems.com/products/light-microscopes/p/leica-lmd7/
Laser Microdissection system enables users to isolate specific single cells or entire areas of tissue. Powered by unique laser design and dynamic software, Leica LMD systems allow users to easily isolate Regions of Interest from entire areas of tissue down to single cells or even subcellular structures such as chromosomes. Leica LMD6 is for standard tissue dissection. Used for standard applications dissecting soft tissues such as brain, liver, or kidney.
Proper citation: Leica: LMD6 Laser Microdissection microscope (RRID:SCR_024658) Copy
https://diabetes.med.umich.edu/partners/michigan-center-diabetes-translational-research-mcdtr
Multidisciplinary unit of the University of Michigan funded by National Institute of Diabetes and Digestive and Kidney Diseases/National Institutes of Health. MCDTR is one of seven NIH Centers funded to focus on type 2 translational research in diabetes with mission to establish, promote, and enhance multidisciplinary collaboration among researchers directed at prevention and control of diabetes, its complications, and comorbidities, by providing access to specialized expertise and resources.
Proper citation: Michigan Center for Diabetes Translational Research (RRID:SCR_015187) Copy
http://www.nkdep.nih.gov/lab-evaluation/gfr-calculators.shtml
Glomerular Filtration Rate (GFR) calculators to estimate kidney function for adults (MDRD GFR Calculator) and children (Schwartz GFR Calculator). In adults, the recommended equation for estimating glomerular filtration rate (GFR) from serum creatinine is the Modification of Diet in Renal Disease (MDRD) Study equation. The IDMS-traceable version of the MDRD Study equation is used. Currently the best equation for estimating glomerular filtration rate (GFR) from serum creatinine in children is the Bedside Schwartz equation for use with creatinine methods with calibration traceable to IDMS. Using the original Schwartz equation with a creatinine value from a method with calibration traceable to IDMS will overestimate GFR.
Proper citation: Glomerular Filtration Rate Calculators (RRID:SCR_006443) Copy
A global healthcare company with expertise in medical devices, pharmaceuticals and biotechnology. Through its subsidiaries, they develop, manufacture and market products that save and sustain the lives of people with hemophilia, immune disorders, infectious diseases, kidney disease, trauma, and other chronic and acute medical conditions. BioScience Baxter is a manufacturer of recombinant and plasma-based proteins to treat hemophilia and other bleeding disorders; plasma-based therapies to treat immune deficiencies, alpha 1-antitrypsin deficiency, burns and shock, and other chronic and acute blood-related conditions; products for regenerative medicine, such as biosurgery products; and vaccines. Baxter''s Medical Products business manufactures products used in the delivery of fluids and drugs to patients. These include intravenous (IV) solutions and administration sets, premixed drugs and drug-reconstitution systems, IV nutrition products, infusion pumps and inhalation anesthetics. The business also provides products and services related to pharmacy compounding, drug formulation and packaging technologies. In addition, Baxter''s Medical Products business is a leader in Renal home-based therapies, such as peritoneal dialysis, and offers other products and services for people with end-stage kidney disease.
Proper citation: Baxter (RRID:SCR_003974) Copy
https://www.cincinnatichildrens.org/research/divisions/n/nephrology/biomarker-lab
Core whose goals are to provide high throughput Clinical Biofluid Profiling Services (including initial web-based and in-person consultation, study design, sample preparation and processing, data acquisition, data analysis, protein purification, target identification, and specific assay development and validation) and services pertaining to Biomarker measurement and validation (including design of ELISA and Western Blots, measurement of known and emerging markers of acute and chronic kidney diseases, as well as consultation for biomarker statistics and clinical trials design).
Proper citation: Pediatric Centers of Excellence in Nephrology at Cincinnati Children's Hospital Medical Center Biomarker Core (RRID:SCR_015300) Copy
https://www.clinicaltrials.gov/study/NCT00064753
Multi-center, randomized, double blind controlled clinical trial to determine whether treatment with a standard multivitamin augmented with high doses of folic acid, vitamin B6 and vitamin B12 reduces the rate of cardiovascular disease outcomes in renal transplant recipients relative to participants receiving a similar multivitamin that contains no folic acid. This study hopes to show that by reducing the level of homocysteine in the body, the risk of heart disease is also reduced among kidney transplant patients.
Proper citation: Folic Acid for Vascular Outcome Reduction in Transplantation (RRID:SCR_001505) Copy
http://diabetes.niddk.nih.gov/dm/pubs/control/index.aspx
Clinical study that showed that keeping blood glucose levels as close to normal as possible slows the onset and progression of eye, kidney, and nerve diseases caused by diabetes. EDIC is a follow-up study of people who participated in DCCT. The DCCT involved 1,441 volunteers, ages 13 to 39, with type 1 diabetes and 29 medical centers in the United States and Canada. Volunteers had to have had diabetes for at least 1 year but no longer than 15 years. They also were required to have no, or only early signs of, diabetic eye disease. The study compared the effects of standard control of blood glucose versus intensive control on the complications of diabetes. Intensive control meant keeping hemoglobin A1C levels as close as possible to the normal value of 6 percent or less. The A1C blood test reflects a person''''s average blood glucose over the last 2 to 3 months. Volunteers were randomly assigned to each treatment group. DCCT Study Findings * Intensive blood glucose control reduces risk of ** eye disease: 76% reduced risk ** kidney disease: 50% reduced risk ** nerve disease: 60% reduced risk When the DCCT ended, researchers continued to study more than 90 percent of participants. The follow-up study, called Epidemiology of Diabetes Interventions and Complications (EDIC), is assessing the incidence and predictors of cardiovascular disease events such as heart attack, stroke, or needed heart surgery, as well as diabetic complications related to the eye, kidney, and nerves. The EDIC study is also examining the impact of intensive control versus standard control on quality of life. Another objective is to look at the cost-effectiveness of intensive control. EDIC Study Findings * Intensive blood glucose control reduces risk of ** any cardiovascular disease event: 42% reduced risk ** nonfatal heart attack, stroke, or death from cardiovascular causes: 57% reduced risk
Proper citation: Diabetes Control and Complications Trial (RRID:SCR_006805) Copy
https://cairibu.urology.wisc.edu/
Community of researchers studying benign urology diseases at U54 O’Brien Cooperative Research Centers, P20 Exploratory Centers, and K12 Career Development Programs funded by the National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK), one of the institutes within the National Institutes of Health (NIH). CAIRIBU Centers and Programs are united around the overall objectives of improving our understanding of the mechanisms of urogenital diseases and developing clinical therapies for treating them by building collaborative and interactive research platforms that span the gamut from basic to translational to population research.
Proper citation: Collaborating for the Advancement of Interdisciplinary Research in Benign Urology (RRID:SCR_022876) Copy
http://homedialyzorsunited.org/
A non-profit patient organization dedicated to educate, support and advocate for home dialysis. Their main focus is advocating and supporting those on home hemodialysis and peritoneal dialysis modalities. Membership is free and inclusive of dialyzors, care partners, nurses, nephrologists, renal professionals and others.
Proper citation: Home Dialyzors United (RRID:SCR_000275) Copy
http://www.proteontherapeutics.com/
A biopharmaceutical company developing pharmaceuticals for patients with renal and vascular diseases. Their ongoing Phase 3 clinical trial is evaluating whether a single treatment of PRT-201 can reduce vascular access failure, one of the most serious problems experienced by patients with chronic kidney disease (CKD) undergoing hemodialysis. PRT-201 is an investigational drug that may inhibit neointimal hyperplasia, the growth of tissue inside blood vessels that can result in vessel narrowing and reduced blood flow. PRT-201 has received fast track and orphan drug designations for hemodialysis vascular access indications.In September 2019, Proteon Therapeutics merged with ArTara Therapeutics.
Proper citation: Proteon Therapeutics (RRID:SCR_004037) Copy
Commercial organization that is a worldwide provider of drug transporter technology, assays and reagents. Leveraging their expertise in efflux and uptake transporters, they generate quality reports for submission to FDA / EMA. From small molecules to protein therapeutics, SOLVO can test all transporter needs. Drug transporter Services and Products include: * Over 100 solutions for a wide range of transporters * Uptake transporter assays * Efflux transporter assays in cellular and membrane-based models * Transporter Consultancy Services * FDA- and EMA-ready reports * Ready-to-use Kits * In vitro and in vivo methods for studying transporters in the BBB, intestine, liver and kidney * Custom assay development
Proper citation: SOLVO Biotechnology (RRID:SCR_003964) Copy
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