4.6 Article

Differential Effects of the Flavonolignans Silybin, Silychristin and 2,3-Dehydrosilybin on Mesocestoides vogae Larvae (Cestoda) under Hypoxic and Aerobic In Vitro Conditions

期刊

MOLECULES
卷 23, 期 11, 页码 -

出版社

MDPI
DOI: 10.3390/molecules23112999

关键词

silybin; 2,3-dehydrosilybin; silychristin; Mesocestoides vogae larvae; aerobic and hypoxic cultivation

资金

  1. project VEGA of the Ministry of Education, Science, Research and Sport of the Slovak Republic [02/0091/17]
  2. bilateral mobility project SAV-AV CR [18-24]
  3. Czech Science Foundation [18-00150S]
  4. Ministry of Education, Youth and Sports of the Czech Republic (MEYS) [LTC18071]
  5. COST Action [CM1307]
  6. MEYS [LO1509]

向作者/读者索取更多资源

Mesocestoides vogae larvae represent a suitable model for evaluating the larvicidal potential of various compounds. In this study we investigated the in vitro effects of three natural flavonolignans-silybin (SB), 2,3-dehydrosilybin (DHSB) and silychristin (SCH)-on M. vogae larvae at concentrations of 5 and 50 mu M under aerobic and hypoxic conditions for 72 h. With both kinds of treatment, the viability and motility of larvae remained unchanged, metabolic activity, neutral red uptake and concentrations of neutral lipids were reduced, in contrast with a significantly elevated glucose content. Incubation conditions modified the effects of individual FLs depending on their concentration. Under both sets of conditions, SB and SCH suppressed metabolic activity, the concentration of glucose, lipids and partially motility more at 50 mu M, but neutral red uptake was elevated. DHSB exerted larvicidal activity and affected motility and neutral lipid concentrations differently depending on the cultivation conditions, whereas it decreased glucose concentration. DHSB at the 50 mu M concentration caused irreversible morphological alterations along with damage to the microvillus surface of larvae, which was accompanied by unregulated neutral red uptake. In conclusion, SB and SCH suppressed mitochondrial functions and energy stores, inducing a physiological misbalance, whereas DHSB exhibited a direct larvicidal effect due to damage to the tegument and complete disruption of larval physiology and metabolism.

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