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1.
Chinese Journal of Experimental Traditional Medical Formulae ; (24): 39-45, 2020.
Artigo em Chinês | WPRIM | ID: wpr-873017

RESUMO

Objective:The effects of Atractylodes lancea, A. coreana, A. japonica, A. chinensis and Atractylodis Macrocephalae Rhizoma on spleen-Qi deficiency rats were compared. Method:A model of spleen-Qi deficiency was induced in rats by diet and overwork.The rats are given different suspensions of A.japonica, A.chinesis, A.coreana, A.lancea and Atractylodis Macrocephalae Rhizoma To test the indicators of the digestive system, immune system and antioxidant enzyme system related to spleen deficiency.Compare the similarities and differences between Atractylodis Macrocephalae Rhizoma and Atractylodis Rhizoma from four different sources. Result:All the drug-administered groups can increase the levels of γ interferon (IFN-γ), gastric secrete element(GAS),serum amylase (AMS) and catalase(CAT) in rats with spleen-deficiency syndrome,in addition to the CAT index, the other indicators of the A. coreana, A.japonica, and A.lancea were significantly increased(P<0.05). The MTL content of the A.chinesis, A.lancea, A.coreana and A.japonica increased and was significant(P<0.05). The SDH content of A.japonica.and A.chinesis increased, and the difference was not significant.The increase of GSH-Px in the A.chinesis is significant(P<0.05). All the drug-administered groups can reduce the content of IgG, TNF-α and MDA in rats with spleen deficiency and deficiency syndrome. Among them, the IgG content of the A.chinesis. and the A.lancea was significantly decreased(P<0.05). The content of TNF-α in A.japonica group was significantly decreased(P<0.05). The content of MDA in the A.chinesis, the A.lancea, the A.coreana,the A.japonica and the Atractylodis Macrocephalae Rhizoma were significantly decreased(P<0.05).The decrease of IL-6 in the A.lancea was significant(P<0.05). Conclusion:Four different sources of Atractylodes Rhizome and A.macrocephala have certain therapeutic effects on spleen-deficiency rats with deficiency syndrome.The therapeutic effect of A.lancea and A.japonica is basically the same,regulating the absorption,secretion and elimination of inflammation in the digestive system of rats with spleen deficiency A.coreana, A.chinesis, and Atractylodis Macrocephalae Rhizoma have certain regulatory effects in the digestive system, digestive tract inflammation, and antioxidant enzymes.

2.
Chinese Journal of Experimental Traditional Medical Formulae ; (24): 171-175, 2019.
Artigo em Chinês | WPRIM | ID: wpr-801781

RESUMO

Objective: To identify the genetic relationship of cultivated and wild Atractylodes and its closely related species by using the Internal Transcribed Spacer 2(ITS2)barcode,in order to explore the cultivation origin of A. coreana from Northeast China. Method: Genomic DNAs were extracted from 40 samples of Atractylodes and its closely related species from different cultivated habitats,and 7 samples of wild A. coreana. were also extracted. The ITS2 sequences of these samples were amplified, and bidirectional sequencing was conducted by polymerase chain reaction(PCR). Totally 47 ITS2 sequences were aligned by using MEGA 5.0,5.8S and 28S sequences were removed to obtain the complete ITS2 sequence and build neighbor-joining (NJ) tree. Result: The lengths of ITS2 sequences of all samples were 232 bp. The NJ tree and the secondary structures of ITS2 showed that various varieties could be distinguished obviously except A. chinesis and A. coreana,which showed a good monophyly. The NJ tree showed that cultivated and wild A. coreana can also get together very well. Conclusion: As a DNA barcode,ITS2 sequences can be used to stably and accurately distinguish various varieties of Atractylodes. The relationship between A. chinesis and A. coreana is very close. A. coreana can be considered as a variant of A. coreana in North China. It is recommended to incorporate A. coreana into A. chinesis. The large-scale cultivation of A. coreana may originate from local wild population in Liaoning province,and the provenance may come from Xiuyan and other places in Liaoning province.

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