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361 results on '"GJB6"'

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1. Etiology of early hearing loss in Brazilian children

2. Molecular and genetic characterization of a large Brazilian cohort presenting hearing loss

3. Compound Heterozygosity for OTOA Truncating Variant and Genomic Rearrangement Cause Autosomal Recessive Sensorineural Hearing Loss in an Italian Family

4. <scp>TSPEAR</scp>variants are primarily associated with ectodermal dysplasia and tooth agenesis but not hearing loss: A novel cohort study

5. Evaluation of the GJB2 and GJB6 Polymorphisms with Autosomal Recessive Nonsyndromic Hearing Loss in Iranian Population

6. Whole exome sequencing identifies rare coding variants in novel human-mouse ortholog genes in African individuals diagnosed with non-syndromic hearing impairment

7. A recurrent mutation of GJB6 in a big Chinese family with Hidrotic ectodermal dysplasia

8. Molecular study of hearing loss in Minas Gerais, Brazil

9. Tight Junction-Related CLDN5 and CLDN6 Genes, and Gap Junction-Related GJB6 and GJB7 Genes Are Somatically Mutated in Gastric and Colorectal Cancers

10. GJB2 and GJB6 gene transcripts in the human cochlea : A study using RNAscope, confocal, and super-resolution structured illumination microscopy

11. Genetic etiology of non-syndromic hearing loss in Latin America

12. Late onset of type 2 diabetes is associated with mitochondrial tRNA Trp A5514G and tRNA Ser(AGY) C12237T mutations

13. Gjb3 Gene Mutations in Non-Syndromic Hearing Loss of Bloch, Kurd, and Turkmen Ethnicities in Iran

14. The Analysis of GJB2, GJB3, and GJB6 Gene Mutations in Patients with Hereditary Non-Syndromic Hearing Loss Living in Sivas

15. Role of GJB2 and GJB6 in Iranian Nonsyndromic Hearing Impairment: From Molecular Analysis to Literature Reviews

16. Mutation Analysis Using Multiplex Ligation-Dependent Probe Amplification in Consanguineous Families in South India with a Child with Profound Hearing Impairment

17. Comparison of PredictiveIn SilicoTools on Missense Variants inGJB2,GJB6, andGJB3Genes Associated with Autosomal Recessive Deafness 1A (DFNB1A)

18. Cochlear connexin 30 homomeric and heteromeric channels exhibit distinct assembly mechanisms

19. Evaluation of GJB2 and GJB6 Mutations in Patients Afflicted with Non-syndromic Hearing Loss

20. CEND1 and GJB6 co-expression as a prognostic factor in colorectal cancer

21. Evaluation of the

22. A novel recessive PDZD7 bi-allelic mutation in an Iranian family with non-syndromic hearing loss

23. Etiology of Genetic Hearing Loss

24. Mutant Cx30-A88V mice exhibit hydrocephaly and sex-dependent behavioral abnormalities, implicating a functional role for Cx30 in the brain

25. GJB2 and GJB6 Genetic Variant Curation in an Argentinean Non-Syndromic Hearing-Impaired Cohort

26. Connexin Genes Variants Associated with Non-Syndromic Hearing Impairment: A Systematic Review of the Global Burden

27. Lights and Shadows in the Genetics of Syndromic and Non-Syndromic Hearing Loss in the Italian Population

28. Efficacy of Connexin testing in detecting Non-syndromic Sensorineural Hearing Loss in an Indian cohort

29. Screening for deafness-associated mitochondrial 12S rRNA mutations by using a multiplex allele-specific PCR method

30. <scp>GJB</scp> 6 mutation A88V for hidrotic ectodermal dysplasia in a Chinese family

31. Analyses of del(GJB6‐D13S1830) and del(GJB6‐D13S1834) deletions in a large cohort with hearing loss: Caveats to interpretation of molecular test results in multiplex families

32. Hearing Impairment Overview in Africa: the Case of Cameroon

33. Targeted Mutation Analysis of the SLC26A4, MYO6, PJVK and CDH23 Genes in Iranian Patients with AR Nonsyndromic Hearing Loss

34. Diagnostic pitfalls for GJB2‐related hearing loss: A novel deletion detected by Array‐CGH analysis in a Japanese patient with congenital profound hearing loss

35. Role of DFNB1 mutations in hereditary hearing loss among assortative mating hearing impaired families from South India

36. GJB2 mutations causing autosomal recessive non-syndromic hearing loss (ARNSHL) in two Iranian populations: Report of two novel variants

37. A deafness mechanism of digenic Cx26 (GJB2) and Cx30 (GJB6) mutations: Reduction of endocochlear potential by impairment of heterogeneous gap junctional function in the cochlear lateral wall

38. Investigation of the Connexin-30 gene Deletion Mutations Del (GJB6-D13s1830) and Del (GJB6-D13s1854) among Subjects with Non-Syndromic Sensorineural Hearing Loss in Khorasan Razavi Province

39. GJB2 mutations: Genotypic and phenotypic correlation in a cohort of 690 hearing-impaired patients, toward a new mutation?

40. Exome Sequencing Identifies a Novel Nonsense Mutation of MYO6 as the Cause of Deafness in a Brazilian Family

41. Medical sequencing of de novo ectodermal dysplasia in identical twins and evaluation of the potential eligibility for recombinant EDA therapy

42. DNA copy number analysis of the DFNB1 hereditary hearing loss locus

43. Analysis of GJB6 (Сx30) and GJB3 (Сx31) genes in deaf patients with monoallelic mutations in GJB2 (Сx26) gene in the Sakha Republic (Yakutia)

44. PREVALENCE OF DFNB1 HEARING LOSS AMONG COCHLEAR IMPLANT USERS ESTABLISHED WITH THE 3-STEP DFNB1 APPROACH

45. GJB2 and GJB6 genes mutations in children with non-syndromic hearing loss

46. Mutation–proved Clouston syndrome in a large Indian family with a variant phenotype

47. Molecular epidemiology of Chinese Han deaf patients with bi-allelic and mono-allelic GJB2 mutations

48. Cochlear Implantation Outcome in Children with DFNB1 locus Pathogenic Variants

49. Frequency of Usher gene mutations in non-syndromic hearing loss: higher variability of the Usher phenotype

50. Organ-on-chip model shows that ATP release through connexin hemichannels drives spontaneous Ca2+ signaling in non-sensory cells of the greater epithelial ridge in the developing cochlea

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