Javascript must be enabled to continue!
A REVIEW ON THE β-CAROTENE: PRODUCTION, EXTRACTION, SYNTHESIS AND BIOLOGICAL PROPERTIES
View through CrossRef
The presence of double bonds gives β-carotene its distinctive hue, making it an oxygen-deficient isoprene-containing molecule. There are cyclic rings at both ends of the molecule. The present review was based on the production, extraction, synthesis and biological properties of β-carotene. Mammals can't produce carotenoids from scratch; therefore, they must get them from somewhere else. Algae, higher plants (in fruits and flowers as esters), fungi, and animals all have these yellow, red, and orange pigments in their natural forms. Carotenoids are found in human breast milk and can be modified through the mother's diet. Hexane, tetrahydrofuran, and acetone are examples of aprotic organic solvents that can be used for solvent-based extraction of -carotene from algae after and before they have been treated. The -carotene in algae, fungi, and plants can be extracted with the help of these solvents. The extraction process for -carotene is sped up and improved by the use of supercritical fluids. Increasing beta-carotene production can be accomplished by tailoring a number of environmental factors, including the type of organism used in the cultivation process, the amount of light available, the amount of salt present, the pH level, and the type and availability of carbon sources. Microalgae, plants, and fungus have all been optimised to increase their beta-carotene synthesis. It concluded that when administered in different doses, it has been shown to have effects like antioxidant and anti-inflammatory. it is also effective against cancer, cardiovascular diseases, Covid-19 and various other diseases.
Title: A REVIEW ON THE β-CAROTENE: PRODUCTION, EXTRACTION, SYNTHESIS AND BIOLOGICAL PROPERTIES
Description:
The presence of double bonds gives β-carotene its distinctive hue, making it an oxygen-deficient isoprene-containing molecule.
There are cyclic rings at both ends of the molecule.
The present review was based on the production, extraction, synthesis and biological properties of β-carotene.
Mammals can't produce carotenoids from scratch; therefore, they must get them from somewhere else.
Algae, higher plants (in fruits and flowers as esters), fungi, and animals all have these yellow, red, and orange pigments in their natural forms.
Carotenoids are found in human breast milk and can be modified through the mother's diet.
Hexane, tetrahydrofuran, and acetone are examples of aprotic organic solvents that can be used for solvent-based extraction of -carotene from algae after and before they have been treated.
The -carotene in algae, fungi, and plants can be extracted with the help of these solvents.
The extraction process for -carotene is sped up and improved by the use of supercritical fluids.
Increasing beta-carotene production can be accomplished by tailoring a number of environmental factors, including the type of organism used in the cultivation process, the amount of light available, the amount of salt present, the pH level, and the type and availability of carbon sources.
Microalgae, plants, and fungus have all been optimised to increase their beta-carotene synthesis.
It concluded that when administered in different doses, it has been shown to have effects like antioxidant and anti-inflammatory.
it is also effective against cancer, cardiovascular diseases, Covid-19 and various other diseases.
Related Results
Effects of monochromatic LED light qualities on the photosynthetic capacity and pigment content of Dunaliella salina
Effects of monochromatic LED light qualities on the photosynthetic capacity and pigment content of Dunaliella salina
Abstract
Light quality is a crucial abiotic environmental factor that influences the growth and β-carotene accumulation on Dunaliella salina. However, the influence of the ...
Enhanced β-carotene production in Yarrowia lipolytica through the metabolic and fermentation engineering
Enhanced β-carotene production in Yarrowia lipolytica through the metabolic and fermentation engineering
Abstract
β-Carotene is a kind of high-value tetraterpene compound, which shows various applications in medical, agricultural and industrial areas owing to its antioxidant, ...
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Abstract
The Physical Activity Guidelines for Americans (Guidelines) advises older adults to be as active as possible. Yet, despite the well documented benefits of physical a...
Evaluation of novel and superior formulation CaroTexTM developed by Biofusion Technology
Evaluation of novel and superior formulation CaroTexTM developed by Biofusion Technology
Per WHO, vitamin A deficiency is a systemic disease affecting cells, organs throughout the body. The gradual depletion of vitamin A stores results in xerophthalmia, night blindness...
β‐Carotene content of novel orange‐fleshed honey dew ‘Orange Dew’ melons
β‐Carotene content of novel orange‐fleshed honey dew ‘Orange Dew’ melons
'Orange Dew' (OD) melon is a cross between orange‐fleshed cantaloupe (CAN) and green‐fleshed honey dew fruits. CAN has a rough, netted peel while honey dew has a smooth peel. OD fr...
Effect of Spraying of Beta Carotene on Growth Behaviour and Chemical Constituents of Acalypha wilkesiana Plants
Effect of Spraying of Beta Carotene on Growth Behaviour and Chemical Constituents of Acalypha wilkesiana Plants
In July 2020 and 2021, a pot experiment was carried out in a greenhouse of National Research Centre, Dokki, Giza, Egypt to evaluate the effect of Beta-Carotene (0,150, 200 and 250 ...
Enhanced β-carotene and Biomass Production by Induced Mixotrophy in Dunaliella salina across a Combined Strategy of Glycerol, Salinity, and Light
Enhanced β-carotene and Biomass Production by Induced Mixotrophy in Dunaliella salina across a Combined Strategy of Glycerol, Salinity, and Light
Current mixotrophic culture systems for Dunaliella salina have technical limitations to achieve high growth and productivity. The purpose of this study was to optimize the mixotrop...
Nutrition of Zebu Cattle in Northern Nigeria 2. The Importance of Carotene Supplements
Nutrition of Zebu Cattle in Northern Nigeria 2. The Importance of Carotene Supplements
SummaryThe importance of carotene supplements in the feeding of White Fulani Zebu cattle has been studied in three experiments. The live weight gains of heifers, with and without c...

