Antioxidant foods represent a potent lever to improve diets while creating value. Yet, their cultivation is often tied to a specific area and climate, limiting availability and increasing market cost. Therefore, microorganism-based antioxidant production emerges as a promising technology to solve these problems. In this view, a novel process was investigated for antioxidant accumulation in yeast culture. S. cerevisiae cells were exposed to various hyperbaric air conditions from 1 to 9 bar (A). Yeast cultures exhibited an increased reactive oxygen species content, which induced oxidative defense expression. After a few hours, reactive oxygen species levels decreased while antioxidant contents remained high, leading to a net increase in antio...
Fed-batch cultivation of Saccharomyces cerevisae is the dominating technique in high cell density c...
The use of air pressure as a way of improving oxygen transfer in aerobic bioreactors was investigate...
Fed-batch is the dominating mode of operation in high-cell-density cultures of Saccharomyces cerevi...
Antioxidant foods represent a potent lever to improve diets while creating value. Yet, their cultiva...
Increase in air or oxygen pressure in microbial cell cultures can cause oxidative stress and consequ...
Saccharomyces cerevisiae, in a pressure batch reactor, coped with higher air (1.2–3 bar) pressures b...
The yeast Saccharomyces cerevisiae has been used by humans for many centuries in microbial fermentat...
Fed-batch cultivation of Saccharomyces cerevisae is the dominating technique in high cell density cu...
The yeast Candida utilis (fodder yeast) is a popular microorganism for physiological studies and is...
Increase in air or oxygen pressure in microbial cell cultures can cause oxidative stress and consequ...
Fed-batch is the dominating mode of operation in high-cell-density cultures of Saccharomyces cerevis...
Yeast fields of application are extensive, ranging from food, brewing to green energy. The yeast Sac...
Yeast fields of application are extensive, ranging from food, brewing to green energy. The yeast Sac...
Induction of the oxidative stress response has been described under many physiological conditions in...
Yeast fields of application are extensive, ranging from food, brewing to green energy. The yeast Sac...
Fed-batch cultivation of Saccharomyces cerevisae is the dominating technique in high cell density c...
The use of air pressure as a way of improving oxygen transfer in aerobic bioreactors was investigate...
Fed-batch is the dominating mode of operation in high-cell-density cultures of Saccharomyces cerevi...
Antioxidant foods represent a potent lever to improve diets while creating value. Yet, their cultiva...
Increase in air or oxygen pressure in microbial cell cultures can cause oxidative stress and consequ...
Saccharomyces cerevisiae, in a pressure batch reactor, coped with higher air (1.2–3 bar) pressures b...
The yeast Saccharomyces cerevisiae has been used by humans for many centuries in microbial fermentat...
Fed-batch cultivation of Saccharomyces cerevisae is the dominating technique in high cell density cu...
The yeast Candida utilis (fodder yeast) is a popular microorganism for physiological studies and is...
Increase in air or oxygen pressure in microbial cell cultures can cause oxidative stress and consequ...
Fed-batch is the dominating mode of operation in high-cell-density cultures of Saccharomyces cerevis...
Yeast fields of application are extensive, ranging from food, brewing to green energy. The yeast Sac...
Yeast fields of application are extensive, ranging from food, brewing to green energy. The yeast Sac...
Induction of the oxidative stress response has been described under many physiological conditions in...
Yeast fields of application are extensive, ranging from food, brewing to green energy. The yeast Sac...
Fed-batch cultivation of Saccharomyces cerevisae is the dominating technique in high cell density c...
The use of air pressure as a way of improving oxygen transfer in aerobic bioreactors was investigate...
Fed-batch is the dominating mode of operation in high-cell-density cultures of Saccharomyces cerevi...