AI Article Synopsis

  • * A study involved 356 participants, using advanced DNA sequencing techniques on cells from lymphatic fluid, which revealed genetic variations in a significant percentage of participants with primary complex lymphatic anomalies (pCLAs) and other vascular malformations.
  • * This research resulted in a molecular diagnosis for many participants, enabling new medical therapies for 63% of those affected, highlighting the potential of liquid biopsy techniques in diagnosing and treating vascular anomalies.

Article Abstract

Vascular anomalies are malformations or tumors of the blood or lymphatic vasculature and can be life-threatening. Although molecularly targeted therapies can be life-saving, identification of the molecular etiology is often impeded by lack of accessibility to affected tissue samples, mosaicism or insufficient sequencing depth. In a cohort of 356 participants with vascular anomalies, including 104 with primary complex lymphatic anomalies (pCLAs), DNA from CD31+ cells isolated from lymphatic fluid or cell-free DNA from lymphatic fluid or plasma underwent ultra-deep sequencing thereby uncovering pathogenic somatic variants down to a variant allele fraction of 0.15%. A molecular diagnosis, including previously undescribed genetic causes, was obtained in 41% of participants with pCLAs and 72% of participants with other vascular malformations, leading to a new medical therapy for 63% (43/69) of participants and resulting in improvement in 63% (35/55) of participants on therapy. Taken together, these data support the development of liquid biopsy-based diagnostic techniques to identify previously undescribed genotype-phenotype associations and guide medical therapy in individuals with vascular anomalies.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11184491PMC
http://dx.doi.org/10.1038/s41591-023-02364-xDOI Listing

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