Insulinoma
What's New
Last Posted: Mar 10, 2023
- Pandemrix® vaccination is not associated with increased risk of islet autoimmunity or type 1 diabetes in the TEDDY study children.
Elding Larsson Helena, et al. Diabetologia 2017 0 (1) 193-202 - Childhood thyroid autoimmunity and relation to islet autoantibodies in children at risk for type 1 diabetes in the diabetes prediction in skåne (DiPiS) study.
Jonsdottir Berglind, et al. Autoimmunity 2018 0 (5) 228-237 - Identical and Nonidentical Twins: Risk and Factors Involved in Development of Islet Autoimmunity and Type 1 Diabetes.
Triolo Taylor M, et al. Diabetes care 2018 0 (2) 192-199 - Prevalence of diabetes and presence of autoantibodies against zinc transporter 8 and glutamic decarboxylase at diagnosis and at follow up of Graves' disease.
Jonsdottir Berglind, et al. Endocrine 2019 0 (1) 48-54 - Clinical features, biochemistry, and HLA-DRB1 status in youth-onset type 1 diabetes in Sudan.
Ibrahim Tomader Ali Mohammed, et al. Pediatric diabetes 2021 0 (5) 749-757 - Next-generation sequencing analysis suggests varied multistep mutational pathogenesis for endocrine mucin-producing sweat gland carcinoma with comments on INSM1 and MUC2 suggesting a conjunctival origin.
Mathew Joseph G, et al. Journal of the American Academy of Dermatology 2021 0 (5) 1072-1079 - Distribution of autoantibodies to insulinoma-associated antigen-2 and zinc transporter 8 in type 1 diabetes and latent autoimmune diabetes: A nationwide, multicentre, cross-sectional study.
Fan Wenqi, et al. Diabetes/metabolism research and reviews 2022 0 (2) e3592 - The relationship between islet autoantibody status and the genetic risk of type 1 diabetes in adult-onset type 1 diabetes.
Thomas Nicholas J, et al. Diabetologia 2022 0 (2) 310-320 - Distinct clinical phenotypes in a family with a novel truncating MEN1 frameshift mutation.
Welsch Christoph, et al. BMC endocrine disorders 2022 0 (1) 64 - Detailed deletion mapping on chromosome region 9p21 in human periampullary neoplasms.
Wang C, et al. Chinese medical journal 2002 0 (6) 588-91 - Analysis of polymorphisms in EGF, EGFR and HER2 genes in pancreatic neuroendocrine tumors (PNETs).
Marinovi? Sonja, et al. Cancer genetics 2022 6 44-50 - Association between family history, early growth and the risk of beta cell autoimmunity in children at risk for type 1 diabetes.
Pacaud Danièle et al. Diabetologia 2020 Oct - Human Leukocyte Antigen (HLA) and Islet Autoantibodies Are Tools to Characterize Type 1 Diabetes in Arab Countries: Emphasis on Kuwait.
Jahromi Mohamed, et al. Disease markers 2019 0 9786078 - T372R Mutation Status in Yin Yang 1 Gene in Insulinoma Patients.
Irshad Khushboo, et al. Hormone and metabolic research = Hormon- und Stoffwechselforschung = Hormones et metabolisme 2017 6 (6) 452-456 - Early childhood CMV infection may decelerate the progression to clinical type 1 diabetes.
Ekman Ilse, et al. Pediatric diabetes 2019 0 (1) 73-77 - High prevalence of humoral autoimmunity in first-degree relatives of Mexican type 1 diabetes patients.
Segovia-Gamboa Norma C, et al. Acta diabetologica 2018 12 (12) 1275-1282 - A variant in a cis-regulatory element enhances claudin-14 expression and is associated with pediatric-onset hypercalciuria and kidney stones.
Ure Megan E, et al. Human mutation 2017 0 (6) 649-657 - Local Coverage Determination (LCD): Biomarker Testing for Neuroendocrine Tumors/Neoplasms (L37851)
The U.S. Centers for Medicare & Medicaid Services - CLINGEN Actionability Report for Multiple Endocrine Neoplasia Type I - MEN1
ClinGen Actionability Working Group - Zinc transporter 8 autoantibodies assessment in daily practice.
Hussein Hala, et al. Clinical biochemistry 2016 6 - Positive autoantibodies to ZnT8 indicate elevated risk for additional autoimmune conditions in patients with Addison's disease.
Fichna Marta, et al. Endocrine 2016 3 - Role of the C1858T polymorphism of protein tyrosine phosphatase non-receptor type 22 (PTPN22) in children and adolescents with type 1 diabetes.
Blasetti A, et al. The pharmacogenomics journal 2016 2 - Histologic and Molecular Profile of Pediatric Insulinomas: Evidence of a Paternal Parent-of-Origin Effect.
Bhatti Tricia R, et al. The Journal of clinical endocrinology and metabolism 2016 1 jc20152914 - The implications of autoantibodies to a single islet antigen in relatives with normal glucose tolerance: development of other autoantibodies and progression to type 1 diabetes.
Bingley Polly J, et al. Diabetologia 2015 12 - Novel MEN 1 gene findings in rare sporadic insulinoma--a case control study.
Jyotsna Viveka P, et al. BMC endocrine disorders 2015 0 (1) 44 - Investigation of CTLA-4-318C/T gene polymorphism in cases with type 1 diabetes of Azerbaijan, Northwest Iran.
Almasi Shohreh, et al. Immunology letters 2015 8 (2) 134-9 - The 6 year incidence of diabetes-associated autoantibodies in genetically at-risk children: the TEDDY study.
Krischer Jeffrey P, et al. Diabetologia 2015 5 (5) 980-7 - Effects of High-Dose Oral Insulin on Immune Responses in Children at High Risk for Type 1 Diabetes: The Pre-POINT Randomized Clinical Trial.
Bonifacio Ezio et al. JAMA 2015 Apr 21. 313(15) 1541-1549 - Thyroid autoimmunity in relation to islet autoantibodies and HLA-DQ genotype in newly diagnosed type 1 diabetes in children and adolescents.
Jonsdottir B, et al. Diabetologia 2013 8 (8) 1735-42 - Characteristics of rapid vs slow progression to type 1 diabetes in multiple islet autoantibody-positive children.
Achenbach P, et al. Diabetologia 2013 7 (7) 1615-22
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Selected Rare Diseases
- Alpha-1 Antitrypsin Deficiency
- Amyotrophic Lateral Sclerosis
- Brugada Syndrome
- Cerebral Palsy
- Cystic Fibrosis
- Duchenne Muscular Dystrophy
- Eclampsia
- Erythema Multiforme
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- Microcephaly
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- Phenylketonuria
- Retinitis Pigmentosa
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Disclaimer: Articles listed in the Public Health Knowledge Base are selected by Public Health Genomics Branch to provide current awareness of the literature and news. Inclusion in the update does not necessarily represent the views of the Centers for Disease Control and Prevention nor does it imply endorsement of the article's methods or findings. CDC and DHHS assume no responsibility for the factual accuracy of the items presented. The selection, omission, or content of items does not imply any endorsement or other position taken by CDC or DHHS. Opinion, findings and conclusions expressed by the original authors of items included in the update, or persons quoted therein, are strictly their own and are in no way meant to represent the opinion or views of CDC or DHHS. References to publications, news sources, and non-CDC Websites are provided solely for informational purposes and do not imply endorsement by CDC or DHHS.
- Page last reviewed:Feb 1, 2024
- Page last updated:May 18, 2024
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