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1.
Artigo em Chinês | WPRIM | ID: wpr-873326

RESUMO

Objective::Histomorphological study of the Nandinae Radix, Nandinae Caulis, Nandinae Folium, Nandinae Fructus were conducted to provide the basis for the identification of its authenticity and falsehood. Method::The origin and macroscopic identification were used to describe the plant morphology and the appearance characteristics of all medicinal parts. The microscopic characteristics of the medicinal parts, such as roots, stems, leaves, flowers, fruits, were observed and photographed by paraffin section and powder preparation techniques. Result::It was found that the morphological characteristics of the original plant were consistent with the descriptions in herbaceous books. There was no pith on the cross-section of roots. In the transverse section of stems, there were intermittent circular fiber bundles in the cortex and a cap-shaped fibrous bundle in the inner part of the xylem. In the transverse section of the leaves, the palisade tissue was wider and the fiber bundles around the main vascular bundles formed a ring. In the transverse section of petiole, the fiber bundles were arranged intermittently into rings. In the transverse section of fruit, multi-layered sclereids formed a ring in the mesocarp. The powder characteristics of root and stem mainly contained crystalliferous sclereids. There were crystal sheath fibers and stomatal infinitive in the leaf powder, and pollen grains in the flower powder, with 3-hole grooves, obvious reticulate engraving pattern in the outer wall and more reticulate cells. There were a large number of branched sclereids and calcium oxalate square crystals in the fruit powder. Conclusion::The above-mentioned morphological and microscopic features have identification significance, and provide scientific basis for the authenticity identification, the quality standard and the utilization of resources of Nandina domestica.

2.
Artigo em Chinês | WPRIM | ID: wpr-873327

RESUMO

Objective::To study the effect of total alkaloids of Nandina domestica in attenuating arsenic trioxide, and analyze chemical constituents of alkaloids extract of Nandina, in order to provide the theoretical basis for studying the effect of N. domestica in attenuating arsenic trioxide with alkaloids extract of N. domestica as effective fraction. Method::The model of acute liver injury induced by arsenic trioxide was used to compare the effects on heart and liver functions of mice between arsenic trioxide alone and total alkaloids of N. domestica combined with arsenic trioxide. The detoxification of total alkaloids on arsenic trioxide was evaluated based on biochemical parameters and pathological report. Peakview (Version1.2, AB SCIEX) software was used to process the mass spectrometry data of total alkaloids of N. domestica. The structures of determined compounds were identified by molecular weight of compound (molecular formula), secondary fragments, chromatographic peak retention and literature information. Result::Among biochemical indicators, creatine kinase(CK), lactate dehydrogenase(LDH), blood urea nitrogen(BUN), malondialdehyde(MDA), alanine aminotransferase(ALT) and amino transferase of aspartate(AST) of the arsenic trioxide group were increased, while elimination rates of Na+ -K+ -adenosine triphosphate(ATP), superoxide dismutase(SOD), catalase(CAT) and serum creatinine(SCr) were decreased, compared with those of the combination group. CK and LDH of the alkaloids extract group were more obviously increased than those of the N. domestica extract group, but with no remarkable difference. In histomorphometric examination, edema of mouse heart cells was improved, and some kidney and liver damages in rats were alleviated. Totally 25 alkaloids of alkaloid extract were identified. Among them, 18 were known, and 7 were unknown, including 3 structural types, in which apomorphine alkaloids were mostly. Conclusion::Heart, kidney and liver damage degrees of the combination group were significantly alleviated compared with the arsenic trioxide group. The total alkaloids fraction extracted and purified have a significant attenuation in arsenic trioxide toxicity. The detoxification of total alkaloids extract was equal to that of N. domestica extract. Furthermore, apomorphine alkaloids, such as nantenine and domesticine, can be used as index components to establish a quality control method for total alkaloids.

3.
Artigo em Chinês | WPRIM | ID: wpr-873328

RESUMO

Objective::To compare the effect of different medicinal parts of Nandina domestica in reducing toxicity of anti-tumor drug arsenic trioxide, so as to provide the scientific basis for its further development and application. Method::Chronic arsenic trioxide poisoning model was used in this paper. Totally 56 SD rats were randomly divided into normal group, model group (arsenolite 40 mg·kg-1), sodium 2, 3-dimercapto-1-propanesulfonate group (sodium 2, 3-dimercapto-1-propanesulfonate 25 mg·kg-1+ arsenolite 40 mg·kg-1), Nandinae Radix group (Nandinae Radix 20 g·kg-1+ arsenolite 40 mg·kg-1), Nandinae Caulis group (Nandinae Caulis 20 mg·kg-1+ arsenolite 40 mg·kg-1), Nandinae Folium group (Nandinae Folium 20 g·kg-1+ arsenolite 40 mg·kg-1), and Nandinae Fructus group (Nandinae Fructus 20 g·kg-1+ arsenolite 40 mg·kg-1). The intragastric administration lasted for 10 days. After the last administration, urine was collected within 24 hours, serum, kidney and liver tissue samples were collected after operation, and serum creatinine (SCr) and urine creatinine (UCr) levels were measured, in order to calculate endogenous creatinine clearance rate (CCr). At the same time, the levels of malondialdehyde (MDA), superoxide dismutase (SOD) and catalase (CAT) in liver and kidney of rats in each group were detected. Some kidneys and livers were fixed with formaldehyde, and the histopathological changes were observed under microscope after hematoxylin-eosin staining. Result::Compared with the model group, the rats in combination group of Nandinae Radix, Nandinae Caulis, Nandinae Fructus have a heavier body mass (P<0.01), the kidney coefficient was lower (P<0.01), the levels of UCr and CCr were significantly increased (P<0.01), the content of MDA in renal tissue was decreased significantly (P < 0.01), the level of MDA in liver tissue was decreased (P < 0.05), whereas the activities of SOD and CAT were significantly increased (P<0.01), the pathological damage of liver and kidney was alleviated. There was no significant difference in the activity of SOD in the liver between the Nandinae Folium combination group and the model group, but the changes of the other indexes were consistent with those of the above three groups. Conclusion::Nandinae Radix, Nandinae Caulis, Nandinae Fructus have significant protective effects on liver and kidney toxicity induced by arsenic trioxide oxidative stress, and Nandinae Folium was the least effective among them.

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