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yang, q.

Publications and source records attributed to yang, q..

2 recordsLinked to original sources

High-throughput single-cell DNA methylation and chromatin accessibility co-profiling with SpliCOOL-seq

DNA methylation and chromatin accessibility are fundamental epigenetic mechanisms that orchestrate gene expression programs, define cellular states, and drive developmental trajectories. scCOOL-seq has enabled simultaneously measuring the two modalities in the same single cells, but in quite a low throughput manner. We present single-cell split-pool ligation-based multi-omics sequencing technology (SpliCOOL-seq), which improves the throughput to thousands of cells by combining split-pool ligation based single-cell indexing after in situ tagmentation with universal Tn5 transposase and scCOOL-seq. SpliCOOL-seq achieved higher sensitivity than previous high throughput single-cell DNA methylation sequencing methods and can clearly distinguish different lung cancer cells based on both genetic and multiple epigenetic modalities. We show that the two DNMT inhibitors, 5-Azacitidine and Decitabine, both cause large scale demethylation but in distinct patterns. Applied to the primary lung tumor, SpliCOOL-seq clearly captured subclones within the tumor lesion and revealed candidate genes related to tumorigenesis. Furthermore, we presented the first report on the heterogeneity of scDNAm age acceleration among tumor subclones as predicted from a single-cell perspective. In conclusion, SpliCOOL-seq achieves parallel profiling of whole genome DNA methylation and chromatin accessibility in the same individual cells in a high-throughput manner and is hopefully used to illustrate regulatory interactions under different cell states.

genetics↗

Nephrectomy and high-salt diet inducing pulmonary hypertension and kidney damage by increasing Ang II concentration in rats

BackgroundPulmonary hypertension (PH) is a common complication in patients with chronic kidney disease (CKD), affecting prognosis. However, the pathogenesis is not clear, and the lack of a stable animal model is a significant factor. MethodsIn this study, a rat model of chronic kidney disease with pulmonary hypertension (CKD-PH) was developed through 5/6 nephrectomy combined with a high-salt diet. The models hemodynamics and pathological changes in multiple organs were dynamically assessed. Lung tissues and serum were collected from the model rats to measure the expression of ACE2, the expression levels of vascular active components related to the renin-angiotensin-aldosterone system (RAAS), and changes in the serum metabolic profile of the model. ResultsAfter 14 weeks post-surgery, the CKD-PH rat model exhibited significant changes in hemodynamic parameters indicative of pulmonary arterial hypertension, along with alterations such as right ventricular hypertrophy. However, no evidence of pulmonary vascular remodeling was observed. An imbalance in the renin-angiotensin-aldosterone system was identified in the CKD-PH rat models. Downregulation of ACE2 expression was observed in pulmonary tissues. The serum metabolic profile of the CKD-PH rat models showed distinct differences compared to the sham surgery group. ConclusionsThe development of pulmonary arterial hypertension in CKD-PH rats may be primarily attributed to the disruption of the renin-angiotensin-aldosterone system (RAAS), coupled with a decrease in ACE2 expression in pulmonary vascular endothelial tissues and metabolic disturbances.

pathology↗