The larches, the Larix genus of plants are known as a natural source of taxifolin (dihydroquercetin), and extracts of its taxifolin rich xylem are used in dietary supplements to maintain health. In the present study, to assess biological activities of a methanol extract of the Japanese larch, Larix kaempferi (LK-ME), the effects of LK-ME on cell viability, inflammatory cytokine expression, and glycation were investigated. The effects of taxifolin which is known to be a main compound of LK-ME, and its related flavonoids, quercetin and luteolin were also examined. The results show that taxifolin exhibits lower growth inhibition activity and lesser induction activity of inflammatory cytokines in a human monocyte derived cell line, THP-1 cells, while in vitro anti-glycation activities of taxifolin were inhibiting at comparable levels to those of quercetin and luteolin. The growth inhibition and the cytokine induction activities, and the anti-glycation effects of LK-ME are assumed to have properties similar to taxifolin. The results of high performance liquid chromatography (HPLC) analysis indicated that taxifolin was detected as the main peak of LK-ME at the absorbance of 280 nm, and the concentration of taxifolin was measured as 3.12 mg/ml. The actual concentration of taxifolin in LK-ME is lower than the concentration estimated from the IC50 values calculated by the results of glycation assays, suggesting that other compounds contained in LK-ME are involved in the an
This 2019 study examined whether taxifolin — a flavonoid with known anti-inflammatory properties — could enhance the immunostimulatory effects of β-glucan from Aureobasidium pullulans.
Taxifolin in combination with AP β-glucan demonstrated enhanced anti-glycation and cell cytotoxicity activities compared to either compound alone. The synergistic interaction suggests complementary mechanisms: taxifolin's antioxidant/anti-inflammatory activity combined with β-glucan's immune activation produced additive or synergistic biological effects.
Combination approaches pairing AP β-glucan with complementary bioactives like taxifolin may enhance its therapeutic profile. This research supports development of AP-glucan-containing combination supplements with enhanced anti-aging and immune benefit.
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Muramatsu D., Uchiyama H., Kida H., Iwai A.. Cell cytotoxity and anti-glycation activity of taxifolin-rich extract from Japanese larch, Larix kaempferi. Heliyon. 2019. DOI: 10.1016/j.heliyon.2019.e02047.
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