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Extreme environmental conditions at high altitude, such as hypobaric hypoxia, low temperature, and strong UV radiation, pose a great challenge to the survival of animals. Although the mechanisms of adaptation to high-altitude environments have attracted much attention for native plateau species, the...
2024-01-16 | MTBLS6900 | MetaboLights

The lung of yak is an important adaptive organ in the cold and low oxygen environment. Hypoxia can induce the pathological manifestations of pulmonary fibrosis in yak, but there was no study on hypoxia induced pulmonary fibrosis in yak. In this study full target metabolomics were used to conduct ...

2025-07-07 | MTBLS11648 | MetaboLights
For individuals migrating to or residing permanently at high-altitude regions, environmental hypobaric hypoxia is a primary challenge which induces several physiological or pathological responses. It is well documented that human beings adapt to hypobaric hypoxia via some protective mechanisms, such...
ORGANISM(S): Homo sapiens (Human) 
2019-03-27 | PXD012221 | Pride
Background: The potential molecular mechanisms underlying acute adaptation and chronic remodeling of cardiac structure and function in response to high altitude are not yet fully understood. This study aims to investigate changes in the crotonylproteome in the hearts of mice exposed to high altitude...
ORGANISM(S): Mus musculus (Mouse) 
2025-05-06 | PXD044178 | Pride
Ascending to high-altitude of non-high-altitude natives showed rapidly declined physical ability, but some with high-altitude adaptability were still able to maintain a high level. Our goal was to find urine biomarkers that could be used to assess people for high-altitude hypoxia adaptation with hig...
ORGANISM(S): Human Parechovirus Strain T82-0169 
2023-02-02 | PXD039791 |
Understanding molecular mechanism associated with high altitude exposure during acclimatization/adaptation/maladaptation. Data reveals specific components of the complex molecular circuitry underlying high altitude pulmonary edema. Individualized outcome prediction were constructed through expressio...
ORGANISM(S): Homo sapiens 
This data was used to identify regions of the genome that have undergone positive selection in a high-altitude Tibetan population. Affymetrix SNP arrays were used to genotype DNA extracted from blood samples. This data was used to perform genome-wide scans of positive selection in a native high-alt...
ORGANISM(S): Homo sapiens 
Comparative transcriptomic analysis provides insights into high-altitude adaptation
Comparative microRNA Transcriptome in Domestic Goats Reveals Adaptation to High Altitude
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