Advanced phasing techniques in congenital skin diseases.

Ken Natsuga
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Abstract

Phasing, the process of determining which alleles at different loci on homologous chromosomes belong together on the same chromosome, is crucial in the diagnosis and management of autosomal recessive diseases. Advances in long-read sequencing technologies have significantly enhanced our ability to accurately determine haplotypes. This review discusses the application of low-coverage long-read sequencing, nanopore Cas9-guided long-read sequencing, and adaptive sampling in phasing, highlighting their utility in complex clinical scenarios. Through clinical vignettes, we explore the importance of phasing in gene therapy design for recessive dystrophic epidermolysis bullosa and the role of revertant mosaicism in therapeutic epidermal autografts. Despite its promise, phasing with long-read sequencing faces challenges, including low efficiency in enriching target regions and the inherent error rate of nanopore sequencing. Future developments in long-read sequencing technologies will be critical in overcoming these limitations and expanding the applicability of phasing across various clinical settings.

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先天性皮肤病的先进分期技术。
Phasing是确定同源染色体上不同位点的等位基因在同一染色体上的过程,在常染色体隐性遗传病的诊断和治疗中至关重要。长读测序技术的进步大大提高了我们准确确定单倍型的能力。本文讨论了低覆盖率长读测序、纳米孔cas9引导长读测序和自适应分阶段采样的应用,强调了它们在复杂临床场景中的应用。通过临床实验,我们探讨了隐性营养不良大疱性表皮松解症基因治疗设计中分阶段的重要性,以及逆转嵌合在治疗性自体表皮移植中的作用。尽管前景看好,但分相长读测序仍面临挑战,包括富集靶区效率低和纳米孔测序固有的错误率。长读测序技术的未来发展对于克服这些限制和扩大分阶段在各种临床环境中的适用性至关重要。
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