The effective mechanism of the polysaccharides from Panax ginseng on chronic fatigue syndrome.
Study Design
- نوع الدراسة
- In Vitro
- المجتمع المدروس
- Mice with chronic fatigue syndrome model
- المدة
- 2 weeks
- التدخل
- The effective mechanism of the polysaccharides from Panax ginseng on chronic fatigue syndrome. None
- المقارن
- Control mice
- النتيجة الأولية
- Antifatigue activity and CFS mechanism
- اتجاه التأثير
- Positive
- خطر التحيز
- Unclear
Abstract
Ginseng acidic polysaccharide WGPA isolated from the root of Panax ginseng C. A. Meyer was fractionated into WGPA-A and WGPA-N by anion-exchange chromatography. The antifatigue activity of ginseng acidic polysaccharide WGPA has been reported in our previous research. This present study was designed to identify its active component and elucidate the mechanism for preventing chronic fatigue syndrome (CFS). WGPA, WGPA-A and WGPA-N were orally administered to mice once daily for 15 days. The effects of these compounds on physiological biomarkers of oxidative stress and on the morphology of the mitochondria in striated skeletal muscle were assessed. The results of forced swimming test-induced indicated that WGPA and WGPA-A could lengthen the swimming time, while WGPA-N could not. In addition, malondialdehyde and lactate dehydrogenase levels in serum were enhanced; while those of superoxide dismutase and glutathione peroxidase were lowered. Interestingly, the structural degeneration of mitochondria were all ameliorated. These findings suggested that WGPA-A is the active component of WGPA, it might have potential therapeutic effects for CFS and the oxidative stress might be involved in the pathogenesis. Our results also provided essential data for a better understanding of the antifatigue effects of P. ginseng extracts.
باختصار
WGPA-A is the active component of WGPA, it might have potential therapeutic effects for CFS and the oxidative stress might be involved in the pathogenesis.
Used In Evidence Reviews
Similar Papers
BMC medicine · 2015
The many roads to mitochondrial dysfunction in neuroimmune and neuropsychiatric disorders.
Journal of internal medicine · 2005
Chronic fatigue syndrome: assessment of increased oxidative stress and altered muscle excitability in response to incremental exercise.
Molecular neurobiology · 2014
The glutathione system: a new drug target in neuroimmune disorders.
Free radical biology & medicine · 2000
Specific oxidative alterations in vastus lateralis muscle of patients with the diagnosis of chronic fatigue syndrome.
Journal of clinical and diagnostic research : JCDR · 2013
Role of reactive oxygen species and antioxidants in atopic dermatitis.
NMR in biomedicine · 2012