In this work, flow cytometry was used to examine the immune responses of hemocytes in the thick shell mussel Mytilus coruscus exposed to six combinations of pH (7.3, 7.7, and 8.1) and temperature (25 °C and 30 °C) for 14 days. Temperature showed significant effects on all immune parameters throughout the experiment. Generally, the total hemocyte count (THC), phagocytosis (Pha), esterase (Est), and lysosomal content (Lyso) significantly decreased at high temperature. By contrast, the hemocyte mortality (Hm) and reactive oxygen species (ROS) levels increased at high temperature. Moreover, pH significantly influenced all the immune parameters, but its effects are not as strong as those of temperature; only Hm, Est, and THC were negatively affe...
Marine bivalves are frequently exposed to multiple co-occurring challenges such as temperature extre...
The effects of medium term (32 days) hypercapnia on the immune response of Mytilus edulis were inves...
Increases in atmospheric carbon dioxide are leading to physical changes in marine environments inclu...
With the release of large amounts of CO2, ocean acidification is intensifying and affecting aquatic ...
The increment of atmospheric concentration of CO2 is responsible for both global warming and acidifi...
Water acidification, temperature increases and changes in seawater salinity are predicted to occur i...
The New Zealand Greenshell™ mussel (Perna canaliculus) is an endemic bivalve species with cultural i...
Hypoxia often intensifies with rising dissolved CO2, but the concurrent effects of hypoxia and acidi...
Water acidification, temperature increases and changes in seawater salinity are predicted to occur i...
The role of haemocytes in immune responses in bivalves is widely demonstrated. Immunosuppression due...
The blue mussel is a filter-feeding bivalve commonly used in ecotoxicological monitoring as a sentin...
This study evaluated the combined effects of seawater pH decrease and temperature increase on the ac...
From the beginning of the Industrial Revolution, human activities have had an increasing influence o...
Anthropogenic CO2 emissions have caused seawater temperature elevation and ocean acidification. In v...
Temperature increases, hypoxia, and changes in food availability are predicted to occur in the futur...
Marine bivalves are frequently exposed to multiple co-occurring challenges such as temperature extre...
The effects of medium term (32 days) hypercapnia on the immune response of Mytilus edulis were inves...
Increases in atmospheric carbon dioxide are leading to physical changes in marine environments inclu...
With the release of large amounts of CO2, ocean acidification is intensifying and affecting aquatic ...
The increment of atmospheric concentration of CO2 is responsible for both global warming and acidifi...
Water acidification, temperature increases and changes in seawater salinity are predicted to occur i...
The New Zealand Greenshell™ mussel (Perna canaliculus) is an endemic bivalve species with cultural i...
Hypoxia often intensifies with rising dissolved CO2, but the concurrent effects of hypoxia and acidi...
Water acidification, temperature increases and changes in seawater salinity are predicted to occur i...
The role of haemocytes in immune responses in bivalves is widely demonstrated. Immunosuppression due...
The blue mussel is a filter-feeding bivalve commonly used in ecotoxicological monitoring as a sentin...
This study evaluated the combined effects of seawater pH decrease and temperature increase on the ac...
From the beginning of the Industrial Revolution, human activities have had an increasing influence o...
Anthropogenic CO2 emissions have caused seawater temperature elevation and ocean acidification. In v...
Temperature increases, hypoxia, and changes in food availability are predicted to occur in the futur...
Marine bivalves are frequently exposed to multiple co-occurring challenges such as temperature extre...
The effects of medium term (32 days) hypercapnia on the immune response of Mytilus edulis were inves...
Increases in atmospheric carbon dioxide are leading to physical changes in marine environments inclu...