| Literature DB >> 34836215 |
Iwona Mirończuk-Chodakowska1, Karolina Kujawowicz1, Anna Maria Witkowska1.
Abstract
Beta-glucans comprise a group of polysaccharides of natural origin found in bacteria, algae, and plants, e.g., cereal seeds, as well as microfungi and macrofungi (mushrooms), which are characterized by diverse structures and functions. They are known for their metabolic and immunomodulatory properties, including anticancer, antibacterial, and antiviral. Recent reports suggest a potential of beta-glucans in the prevention and treatment of COVID-19. In contrast to β-glucans from other sources, β-glucans from mushrooms are characterized by β-1,3-glucans with short β-1,6-side chains. This structure is recognized by receptors located on the surface of immune cells; thus, mushroom β-glucans have specific immunomodulatory properties and gained BRM (biological response modifier) status. Moreover, mushroom beta-glucans also owe their properties to the formation of triple helix conformation, which is one of the key factors influencing the bioactivity of mushroom beta-glucans. This review summarizes the latest findings on biological and health-promoting potential of mushroom beta-glucans for the treatment of civilization and viral diseases, with particular emphasis on COVID-19.Entities:
Keywords: COVID-19; SARS-CoV-2; food; macrofungi; mushrooms; β-glucans
Mesh:
Substances:
Year: 2021 PMID: 34836215 PMCID: PMC8623785 DOI: 10.3390/nu13113960
Source DB: PubMed Journal: Nutrients ISSN: 2072-6643 Impact factor: 5.717
Figure 1Classification of fungal polysaccharides [17,23,24].
Examples of studied beta-glucans of macrofungi.
| Name of β-Glucan | Abbreviation | Mushroom Species | Glucan Structure | Reference |
|---|---|---|---|---|
| Krestin | PSK |
| 1,3-β-glucan | [ |
| Tylopilan | - | 1,3-1,6-β-glucan | [ | |
| Lentinan | LNT |
| 1,3-1,6-β-glucan | [ |
| Pleuran | - |
| 1,3-β- glucan with galactose and mannose | [ |
| Schizophyllan | SPG |
| 1,3-1,6-β-glucan | [ |
| MD-fraction |
| 1,6-1,3-β-glucan | [ | |
| Grifolan | GRN | 1,3-1,6-β-glucan | [ | |
| Scleroglucan | SSG |
| 1,3-1,6-β-glucan | [ |
Figure 2Chemical structure of lentinan [42].
Figure 3Chemical structure of schizophyllan [44].
Figure 4Chemical structure of the krestin repeat unit [63].
Figure 5Chemical structure of the grifolan repeat unit [67].
Figure 6Chemical structure of the pleuran repeat unit [49].
Figure 7Biological activities of beta-glucans in the human body. SOD, superoxide dismutase; LH, polyunsaturated fatty acid; ROS, reactive oxygen species.; L•, alkyl radical; LOO•, superoxide radical.
Figure 8Mechanism of immunomodulatory action of beta-glucans. Authors’ elaboration based on [6,8,91].
Figure 9Possible mechanism of action of beta-glucans during SARS-CoV-2 infection. Authors’ elaboration based on [172,175].
Potential of yeast and mushroom glucans for the prevention, course, and complications of COVID-19.
| No. | Type of Glucan | Mechanism of Action in Prevention and Treatment of COVID-19 | References |
|---|---|---|---|
| 1. | AFO-202-β–glucan | Potential as a vaccine adjuvant against COVID-19; | [ |
| 2. | AFO-202 -β-glucans | Regulation of blood glucose and lipid levels by β-Glucans as an indispensable tool of defense against COVID-19. | [ |
| 3. | AFO-202-β–glucan | Immune enhancement by | [ |
| 4. | AFO-202-β–glucan | Immune regulatory and enhancing immune system; | [ |
| 5. | 1,3-β-D-glucan (from | Prevention and treatment of excessive microglia activation during chronic inflammation characteristic of COVID-19 course. | [ |
| 6. | 1,3-β-D-glucan | Potentials to enhance microglial function and | [ |
| 7. | 1,3-1,6-β-D glucans | Immunomodulatory and pulmonary cytoprotective effects. | [ |
| 8. | β-glucans (from mushrooms as | Immunomodulating effects. | [ |
| 9. | β-glucan | Interrupts AR (androgen receptor)-mediated TMPRSS2 (Transmembrane protease serine 2) expression that is involved in viral entry, through its AR antagonistic activity; | [ |
| 10. | 1,4-α–glucan | Modulation and activation of | [ |
| 11. | β-glucans | Support the immune system before, during, and after COVID-19. | [ |
| 12. | Aminated β-glucan (AβG) | Potential vaccine adjuvant, immunopotentiator for simulation of antigen-presenting cells for T cells’ activation. | [ |
| 13. | β-glucan | Decreasing platelet activation by increasing TGF-β1 production. | [ |