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This experiment investigates how sequential infections with Myxobolus cerebralis and Tetracapsuloides bryosalmonae alter immune responses in rainbow trout. Using RNA-seq of kidney and head cartilage tissues, the study compares transcriptomic changes during single infections and sequential co-infecti...
ORGANISM(S): Oncorhynchus mykiss 
Despite the increasing number of patients suffering from tick-borne diseases, including tick-borne encephalitis (TBE) and Lyme disease, the mechanisms of development of these diseases and their effects on human body are still unknown. Moreover, the increasing number of cases of co-infections of thes...
ORGANISM(S): Homo sapiens (Human) 
2022-05-19 | PXD028803 | Pride
Integrated multi-omics reveals putative biomarkers of bacterial-fungal co-infections
Co-infection dynamics: Major Histocompatibility Complex modulation of Batrachochytrium dendrobatidis and Ranavirus infections in amphibiansCo-infection dynamics: Major Histocompatibility Complex modulation of Batrachochytrium dendrobatidis and Ranavirus infections in amphibians
Co-infection dynamics: Major Histocompatibility Complex modulation of Batrachochytrium dendrobatidis and Ranavirus infections in amphibiansCo-infection dynamics: Major Histocompatibility Complex modulation of Batrachochytrium dendrobatidis and Ranavirus infections in amphibians
Co-infections alter the host immune response but how the systemic and local processes at the site of infection interact is still unclear. The majority of studies on co-infections concentrate on one of the infecting species, an immune function or group of cells and often focus on the initial phase of...
SARS-COV2 infections alters the upper respiratory tract microbiome, potentially contributing to disease severity through microbial dysbiosis and viral co-infections. In this study Nasal and oral swaps were collected from SARS-COV2 positive patients and Control (RT-PCR Negative) patients. Targeted vi...
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