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Shaffer, T.

Publications and source records attributed to Shaffer, T..

2 recordsLinked to original sources

Donor-specific assemblies enhance somatic structural variant detection in complex genomic regions

Structural variants (SVs) contribute substantially to genomic variation and disease, but detecting somatic SVs (sSVs) remains difficult due to reference bias, mosaicism, and enrichment in repetitive regions. Linear reference genomes, like GRCh38 and CHM13, do not fully capture individual genomic structure, which can obscure true somatic variation. Donor-specific assemblies (DSAs) generated from the same genome where sSVs are being assayed provide a personalized alternative, yet their performance for sSV detection has not been systematically assessed. As part of the Somatic Mosaicism across Human Tissues (SMaHT) Network, we benchmark a DSA for sSV discovery in the COLO829 melanoma cell line with a matched normal sample from the same individual. We compare sSV detection across GRCh38, CHM13, and the COLO829BL_DSA using three different sSV callers (Delly, Severus, and Sniffles2) and sequence data from multiple long-read platforms. The COLO829BL_DSA identifies 1.8-fold more manually validated sSVs than linear references, in regions both shared with GRCh38 and CHM13 and unique to the COLO829BL_DSA. Variants detected only with the COLO829BL_DSA are often found in satellite and other repeat-rich regions that are difficult to resolve using standard references. In addition, several COLO829BL_DSA-specific sSVs are located in genes, some of which are associated with cancer. Overall, these results underscore the utility of DSAs in improving sSV detection.

genomics↗

Liquid Lung Rest During Extracorporeal Life Support in a Porcine Model of Acute Lung Injury

RationaleIn patients with severe lung injury, extracorporeal life support can enable lung rest, but the optimal strategy is unknown. ObjectiveTo compare liquid lung rest versus standard gas rest ventilation in a porcine model of acute lung injury and extracorporeal life support. MethodsTwenty neonatal pigs with lung injury after systemic injection of oleic acid were placed on extracorporeal life support. Pigs were ventilated with standard rest settings (peak inspiratory pressure: 20 cmH2O; end expiratory pressure: 10 cmH2O; rate: 10 breaths/minute) and randomized to receive no additional therapy (gas ventilation) or 5 mL/kg perfluorooctylbromide instilled endotracheally (liquid lung rest). The study continued for 4 hours with hourly pulmonary compliance measurements. After euthanasia, lung samples were taken for histologic analysis. Inflammation was quantified via blood and lung tissue cytokines. Measurements and Main ResultsAll pigs achieved significant lung injury; static compliance decreased by a mean of 54%. After 4 hours of lung rest, static compliance was higher with liquid lung rest compared to gas ventilation (0.88{+/-}0.05 mL/kg/cmH2O versus 0.57{+/-}0.05, p<0.001). Histology revealed 2.1-fold greater airspace in dependent lung regions with liquid lung rest (p<0.001) and a reduced airspace heterogeneity index (LLR: 0.071{+/-}0.004, gas: 0.095{+/-}0.010, p=0.04), suggesting more uniform alveolar recruitment. Cytokine analysis demonstrated a 3.7-fold decrease in tissue interleukin-10 levels with liquid lung rest (p=0.02). ConclusionsLiquid lung rest improved pulmonary compliance, achieved better alveolar recruitment, and decreased tissue interleukin-10 levels compared to standard gas ventilation. This strategy may enhance lung recovery in acute lung injury requiring extracorporeal life support.

physiology↗