A Comprehensive Review of Chemistry, Sources and Bioavailability of Omega-3 Fatty Acids
Всесторонний обзор химии, источников и биодоступности омега-3-жирных кислот
2018-11-04
SCID: 54.1/prf8yxep
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bioavailabilityblood-brain barrierfatty acid oxidationomega-3 fatty acidsomega-3 polyunsaturated fatty acids
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Abstract (AI)
Omega-3 fatty acids, one of the key building blocks of cell membranes, have been of particular interest to scientists for many years. However, only a small group of the most important omega-3 polyunsaturated fatty acids are considered. This full-length review presents a broad and relatively complete cross-section of knowledge about omega-3 monounsaturated fatty acids, polyunsaturates, and an outline of their modifications. This is important because all these subgroups undoubtedly play an important role in the function of organisms. Some monounsaturated omega-3s are pheromone precursors in insects. Polyunsaturates with a very long chain are commonly found in the central nervous system and mammalian testes, in sponge organisms, and are also immunomodulating agents. Numerous modifications of omega-3 acids are plant hormones. Their chemical structure, chemical binding (in triacylglycerols, phospholipids, and ethyl esters) and bioavailability have been widely discussed indicating a correlation between the last two. Particular attention is paid to the effective methods of supplementation, and a detailed list of sources of omega-3 acids is presented, with meticulous reference to the generally available food. Both the oral and parenteral routes of administration are taken into account, and the omega-3 transport through the blood-brain barrier is mentioned. Having different eating habits in mind, the interactions between food fatty acids intake are discussed. Omega-3 acids are very susceptible to oxidation, and storage conditions often lead to a dramatic increase in this exposure. Therefore, the effect of oxidation on their bioavailability is briefly outlined.
Key Findings
1
Chemical structure and binding forms—including triacylglycerols, phospholipids, and ethyl esters—are discussed in relation to omega-3 bioavailability.
2
Omega-3 fatty acids serve diverse biological roles, including pheromone precursor functions, central nervous system and testicular components, and immunomodulatory activity.
3
Omega-3 transport across the blood-brain barrier, interactions among dietary fatty acids, and the adverse effects of oxidation and storage conditions on bioavailability are addressed.
4
The review evaluates omega-3 sources and supplementation strategies, covering commonly available foods and both oral and parenteral administration routes.
5
The review provides a broad overview of omega-3 monounsaturated fatty acids, polyunsaturated fatty acids, and their chemical modifications.
Research Object
Omega-3 fatty acids, including omega-3 monounsaturated and polyunsaturated fatty acids and their chemical derivatives
Research Subject
Their chemical structures, sources, biological roles, chemical forms, bioavailability, supplementation, transport, dietary interactions, and susceptibility to oxidation
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2018-11-04
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