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1. mRNA in situ hybridization exhibits unbalanced nuclear/cytoplasmic dystrophin transcript repartition in Duchenne myogenic cells and skeletal muscle biopsies

2. Urine-Derived Stem Cells Express 571 Neuromuscular Disorders Causing Genes, Making Them a Potential in vitro Model for Rare Genetic Diseases

3. Circadian Genes as Exploratory Biomarkers in DMD: Results From Both the mdx Mouse Model and Patients

4. Tumor Necrosis Factor Receptor SF10A (TNFRSF10A) SNPs Correlate With Corticosteroid Response in Duchenne Muscular Dystrophy

5. The Genetic Landscape of Dystrophin Mutations in Italy: A Nationwide Study

6. Homozygous Recessive Versican Missense Variation Is Associated With Early Teeth Loss in a Pakistani Family

7. Duchenne Muscular Dystrophy: From Diagnosis to Therapy

8. A multicenter comparison of quantification methods for antisense oligonucleotide-induced DMD exon 51 skipping in Duchenne muscular dystrophy cell cultures.

9. Antisense Oligonucleotide-Based Therapy for Neuromuscular Disease

10. The DMD locus harbours multiple long non-coding RNAs which orchestrate and control transcription of muscle dystrophin mRNA isoforms.

11. RNA-seq in DMD urinary stem cells recognized muscle-related transcription signatures and addressed the identification of atypical mutations by whole-genome sequencing

12. Dystrophin involvement in peripheral circadian SRF signalling

13. Dystrophin regulates peripheral circadian SRF signalling

14. Chitosan-Shelled Nanobubbles Irreversibly Encapsulate Morpholino Conjugate Antisense Oligonucleotides and Are Ineffective for Phosphorodiamidate Morpholino-Mediated Gene Silencing of DUX4

15. Chitosan-Shelled Nanobubbles Irreversibly Encapsulate Morpholino Conjugate Antisense Oligonucleotides and Are Ineffective for Phosphorodiamidate Morpholino-Mediated Gene Silencing of

16. DMD/BMD - GENETICS

17. NEW GENES AND DISEASES / NGS & RELATED TECHNIQUES

18. Urinary Stem Cells as Tools to Study Genetic Disease: Overview of the Literature

19. Innovative Therapeutic Approaches for Duchenne Muscular Dystrophy

20. Corrigendum to: 'Transcriptional and epigenetic analyses of the DMD locus reveal novel cis-acting DNA elements that govern muscle dystrophin expression'. [Biochim. Biophys. Acta Gene Regul. Mech. 2017 Nov;1860(11):1138–1147.]

21. MUSCLE FUNCTION & HOMEOSTASIS / MOLECULAR THERAPEUTIC APPROACHES

22. A multicenter comparison of quantification methods for antisense oligonucleotideinduced DMD exon 51 skipping in Duchenne muscular dystrophy cell cultures

23. Duchenne Muscular Dystrophy: From Diagnosis to Therapy

24. Nanodiagnostics and nanodelivery applications in genetic alterations

25. Nanoparticle Delivery of Antisense Oligonucleotides and Their Application in the Exon Skipping Strategy for Duchenne Muscular Dystrophy

26. P.134Physical and transcriptional characterization of human urinary stem cell populations

27. P.386Genome and transcriptome analysis of COLVI genes and characterization of a new promising cellular model

28. Transcriptional and epigenetic analyses of the DMD locus reveal novel cis‑acting DNA elements that govern muscle dystrophin expression

29. Rapid, comprehensive analysis of the dystrophin transcript by a custom micro-fluidic exome array

31. NEXT GENERATION SEQUENCING AND EXPERIMENTAL MYOLOGY

32. Deep RNA profiling identified clock and molecular clock genes as pathophysiological signatures in collagen VI myopathy

33. Duchenne Muscular Dystrophy Myogenic Cells from Urine-Derived Stem Cells Recapitulate the Dystrophin Genotype and Phenotype

34. RNA profiling discloses a link between circadian genes and muscle damage in Duchenne muscular dystrophy

35. Transcriptomics analysis in collagen VI myopathy: Role of circadian genes using novel fluidic card tools

36. COL6A genes transcriptomic by RNAseq and fluidic card tools

37. Biodistribution studies of polymeric nanoparticles for drug delivery in mice

38. Biodistribution and Molecular Studies on Orally Administered Nanoparticle-AON Complexes Encapsulated with Alginate Aiming at Inducing Dystrophin Rescue in mdx Mice

39. Nanoparticles to deliver antisense oligonucleotides aimed at exon skipping therapies

40. Isolation and characterization of human urinary stem cells from healthy donors and DMD patients as in vitro cell model for functional studies and drug testing

41. Genetic characterization in symptomatic female DMD carriers: lack of relationship between X-inactivation, transcriptional DMD allele balancing and phenotype

42. T.P.22 Nanoparticles as delivery systems for antisense oligoribonucleotides: Biodistribution studies and definition of the release kinetic in treated mdx mice

43. The DMD Locus Harbours Multiple Long Non-Coding RNAs Which Orchestrate and Control Transcription of Muscle Dystrophin mRNA Isoforms

44. P1.19 Whole genetic and protein characterisation in DMD symptomatic female carriers excludes correlation with X-inactivation and transcriptional DMD allele balancing

45. O.14 Biocompatible nanoparticles as slow-release delivery system of 2′OMePS AON administered both intraperitoneally and orally in the mdx mice: dystrophin rescue and nanoparticles biodistribution

46. 1-Methyl and 1-(2-hydroxyalkyl)-5-(3-alkyl/cycloalkyl/phenyl/naphthylureido)-1H-pyrazole-4-carboxylic acid ethyl esters as potent human neutrophil chemotaxis inhibitors

47. 2-Phenyl-2,3-dihydro-1H-imidazo[1,2-b]pyrazole derivatives: new potent inhibitors of fMLP-induced neutrophil chemotaxis

48. Erratum: Corrigendum: Translation from a DMD exon 5 IRES results in a functional dystrophin isoform that attenuates dystrophinopathy in humans and mice

49. Synthetic formyl tripeptide chemoattractants: a C-alpha,C-alpha-dialkylated, amphiphilic glycyl residue at position 1

50. Synthetic formyl tripeptide chemoattractants: a Ca,a-dialkylated, amphiphilic glycyl residue at position 1

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