Shiitake, Hua Gu · 2023 · Journal Article
Medium relevanceDistinctions in structure, rheology, antioxidation, and α-glucosidase inhibitory activity of β-glucans from different species.
Lentinula edodes
Key points
- To investigate the distinctions between β-glucans from different species, Lentinula edodes β-glucan (LG), yeast β-glucan (YG), and oat β-glucan (OG) were extracted with hot water and determined as β-d-glucopyranose form by HPLC and FT-IR analysis
- The molecular weight (M w ) of LG, YG, and OG was 670 kDa, 341 kDa, and 66 kDa, respectively
- Scanning electron microscopy exhibited different micro surfaces of three β-glucans and the relative crystallinity of YG was the highest (29.8 %), followed by that of LG (23.2 %) and OG (20.3 %) determined by X-ray diffraction
- Congo red analysis and atomic force microscopy showed that LG and YG have triple helical structures
- The apparent viscosity, storage modulus (G'), and loss modulus (G") of β-glucans were increased with the increase of M w
- DPPH·, ABTS + ·, HO·, and reducing power assays showed that β-glucans from different species exhibited different antioxidant activities, and the DPPH· scavenging rate of 2 mg/mL LG reached >80 % higher than that of YG and OG. The α-glucosidase inhibitory activity of OG was better than YG and LG. In summary, β-glucans from different species have different structures, physicochemical properties, and physiological functions, which provides theoretical evidence for the precise processing and utilization of β-glucan
Metadata-grounded summary
Citation abstract
To investigate the distinctions between β-glucans from different species, Lentinula edodes β-glucan (LG), yeast β-glucan (YG), and oat β-glucan (OG) were extracted with hot water and determined as β-d-glucopyranose form by HPLC and FT-IR analysis. The molecular weight (M w ) of LG, YG, and OG was 670 kDa, 341 kDa, and 66 kDa, respectively. Scanning electron microscopy exhibited different micro surfaces of three β-glucans and the relative crystallinity of YG was the highest (29.8 %), followed by that of LG (23.2 %) and OG (20.3 %) determined by X-ray diffraction. Congo red analysis and atomic force microscopy showed that LG and YG have triple helical structures. The apparent viscosity, storage modulus (G'), and loss modulus (G") of β-glucans were increased with the increase of M w. DPPH·, ABTS + ·, HO·, and reducing power assays showed that β-glucans from different species exhibited different antioxidant activities, and the DPPH· scavenging rate of 2 mg/mL LG reached >80 % higher than that of YG and OG. The α-glucosidase inhibitory activity of OG was better than YG and LG. In summary, β-glucans from different species have different structures, physicochemical properties, and physiological functions, which provides theoretical evidence for the precise processing and utilization of β-glucan.
Citation
Cui Y, Han X, Hu X, Li T, Li S (2023). Distinctions in structure, rheology, antioxidation, and α-glucosidase inhibitory activity of β-glucans from different species. International journal of biological macromolecules https://doi.org/10.1016/j.ijbiomac.2023.127684 PMID: 37890753
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