Protective effect of Angelica sinensis polysaccharides on subacute renal damages induced by D-galactose in mice and its mechanism.
- Author:
Yan-ling FAN
;
Jie-yu XIA
;
Dao-yong JIA
;
Meng-si ZHANG
;
Yan-yan ZHANG
;
Lu WANG
;
Guo-ning HUANG
;
Ya-ping WANG
- Publication Type:Journal Article
- MeSH:
Angelica sinensis;
chemistry;
Animals;
Deoxyguanosine;
analogs & derivatives;
metabolism;
Drugs, Chinese Herbal;
administration & dosage;
Galactose;
adverse effects;
Humans;
Kidney;
anatomy & histology;
drug effects;
injuries;
Kidney Diseases;
chemically induced;
drug therapy;
metabolism;
prevention & control;
Male;
Mice;
Mice, Inbred C57BL;
Oxidative Stress;
drug effects;
Polysaccharides;
administration & dosage;
Protective Agents;
administration & dosage
- From:
China Journal of Chinese Materia Medica
2015;40(21):4229-4233
- CountryChina
- Language:Chinese
-
Abstract:
To explore the protective effect of Angelica sinensis polysaccharides(ASP) on subacute renal damages induced by D-galactose in mice and its mechanism. Male C57BL/6J mice were randomly divided into 3 groups, with 10 mice in each group. The D-galactose model group was subcutaneously injected with D-galactose (120 mg x kg(-1)), qd x 42; the ASP + D-galactose model group was intraperitoneally injected with ASP since the 8th day of the replication of the D-galactose model, qd x 35; and the normal control group was subcutaneously injected with saline at the same dose and time. On the 2nd day of after the injection, the peripheral blood was collected to measure the content of BUN, Crea, UA, Cys-C; paraffin sections were made to observe the renal histomorphology by HE staining; senescence-associated β-g-alactosidase (SA-β-Gal) stain was used to observe the relative optical density (ROD) in renal tissues; transmission electron microscopy was assayed to observe the renal ultrastructure; the renal tissue homogenate was prepared to measure the content of SOD, GSH-PX, MDA; the content of AGEs and 8-OH-dG were measured by ELISA. According to the result, compared with the D-galactose model group, the ASP + D-galactose model group showed obviously decreases in the content of BUN, Crea, UA, Cysc, AGES, 8-OH-dG, the number of hardening renal corpuscle, renal capsular space and renal tubular lumen, ROD of SA-β-Gal staining positive kidney cells, mesangial cells, basement membrane thickness, podocyte secondary processes fusion and MDA and increases in the number of normal renal corpuscle, ribosome and rough endoplasmic reticulum in podocytes, the activity of SOD and GSH-PX. In Conclusion, A. sinensis polysaccharides can antagonize kidney subacute damages induced by D-galactose in mice. Its protective mechanism may be correlated with the inhibition of the oxidative stress injury.