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Progressive lung function decline is a hallmark of chronic obstructive pulmonary disease (COPD). Airway dysbiosis occurs in COPD, but whether it contributes to disease progression remains unknown. Here we showed, through a longitudinal analysis on two cohorts involving four UK centers, that basel...

2023-06-12 | MTBLS6894 | MetaboLights

Progressive decline in lung function is a hallmark of chronic obstructive pulmonary disease (COPD). Although airway dysbiosis occurs in COPD, whether it contributes to disease progression remains unknown. Here, through a longitudinal analysis on 181 COPD individuals from two large cohorts involvi...

2023-06-12 | MTBLS5423 | MetaboLights
A novel chemoenzymatic method termed solid phase extraction of N-linked Glycans And Glycosite-containing peptides (NGAG) for the simultaneous analysis of N-glycans, glycosite-containing peptides, and intact N-glycopeptides with site-specific glycosylation information.
ORGANISM(S): Homo Sapiens (ncbitaxon:9606) 
2017-03-31 | MSV000080840 | MassIVE
Purpose: The goal of this study is to compare the differently expressed genes in the wild type and the KDEL-tailed cysteine protease AtCEP1 knockout (atcep1) Arabidopsis using RNA-sequencing (RNA-seq). Methods: Arabidopsis buds mRNA profiles of anther development stages 5-6, 7-9, and 10-11 of the w...
ORGANISM(S): Arabidopsis thaliana 
Pu-erh tea displays cholesterol-lowering properties, but the underlying mechanism has not been elucidated. Theabrownin is one of the most active and abundant pigments in Pu-erh tea. Here, we show that theabrownin alters the gut microbiota in mice and humans, predominantly suppressing microbes associ...
2021-11-18 | MTBLS1259 | MetaboLights
We have performed the first systematic identification and analysis of intermediate size ncRNAs (50-500 nt) in the silkworm genome. We identified 194 novel ncRNAs, the expression profiles of them during the transitions from the egg to the first instar larva and from the fifth instar larva to the pupa...
ORGANISM(S): Bombyx mori 
Dissection of the mechanism of action of FGFR inhibitor by multi-omic analysis
ORGANISM(S): Homo Sapiens 
2025-02-05 | PXD060496 |
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