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1.
Chinese Journal of Experimental Traditional Medical Formulae ; (24): 226-234, 2019.
Article in Chinese | WPRIM | ID: wpr-801922

ABSTRACT

Leukemia is a hematopoietic hyperplastic disease with an increasing incidence year by year, involving bone marrow and lymphatic system. The disease is complex and a highly heterogeneous disease, including a variety of subtypes, with difficulties in treatment and a poor prognosis. Currently, retinoic acid and its derivatives, arsenic are commonly used in clinical treatment as leukemia cell differentiation inducers. However, their clinical range of treatment is mostly restricted to granulocytic leukemia, with a high price and certain toxic and side effects. With the development of molecular genetics, molecular biology, second-generation sequencing and other technologies, the etiology and pathology of leukemia has been significantly studied, but the specific pathogenesis of leukemia has still been unclear. With the further promotion of molecular targeted drugs, chimeric antigen receptor T-cell immunotherapy (CAR-T) and hematopoietic stem cell transplantation, although the treatment of leukemia has entered a new field, compared with traditional chemotherapy, these therapies have high costs, and the long-term efficacy is yet to be further confirmed. After years of basic research and clinical research, traditional Chinese medicine(TCM) volatile oil in the treatment of leukemia has made remarkable achievements. Essential oil can alleviate the toxic and side effect of chemotherapy drugs, effectively prolong or prevent the relapse of leukemia, inhibit the proliferation of leukemia cells, and promote the apoptosis of leukemia cells. In this paper, the authors reviewed relevant domestic and foreign literatures by literature tracking method, summarized the anti-leukemia mechanism of essential oil of TCM, analyzed the characteristics and existing problems of essential oil of TCM, and proposed the improvement direction, in order to provide reference for accelerating the research and development and innovation of essential oil in the treatment of leukemia.

2.
Chinese Journal of Experimental Traditional Medical Formulae ; (24): 211-218, 2019.
Article in Chinese | WPRIM | ID: wpr-801753

ABSTRACT

Rosmarini Officinalis Herba is a common shrubby aromatic plant, which is widely used in traditional food and folk medicine. At present, most of relevant researches focus on rosemary's essential oil, ethanol and water extract, which not only plays an important role in food preservation, preservation and condiments, but also is often used to improve acne, dandruff, circulation function, alleviate muscle pain and fatigue and treat asthma, bronchitis. It has a high application value, and a variety of other pharmacological effects. However, Rosmarini Officinalis Herba has not been included in the Chinese Pharmacopoeia, with no quality evaluation standard for its medicinal use. The products in the market may have some potential safety hazards in the use process. Therefore, the full understanding of the chemical constituents and pharmacological effects of rosemary is crucial for a comprehensive study of the properties and applications of Rosmarini Officinalis Herba. Through the collation and analysis of relevant literatures at home and abroad, it is concluded that Rosmarini Officinalis Herba has anti-cancer, anti-bacterial, anti-oxidation, anti-inflammatory, anti-depression and other pharmacological effects. The chemical constituents extracted from Rosmarini Officinalis Herba are rich in acid phenols, flavonoids, terpenoids and essential oils. Up to now, there are no systematic and comprehensive report on the chemical constituents and pharmacological effects of Rosmarini Officinalis Herba. This paper reviews the progress of the researches on the chemical constituents and pharmacological effects of Rosmarini Officinalis Herba, and discusses its application, in the expectation to lay a foundation for the future research on food development, drug research and clinical application of rosemary.

3.
Chinese Journal of Tissue Engineering Research ; (53): 5443-5448, 2017.
Article in Chinese | WPRIM | ID: wpr-665409

ABSTRACT

BACKGROUND: In the early study, hydroxyapatite coatings containing magnesium (Mg-HA) were successfully prepared on the carbon/carbon composite surface by electromagnetic induction deposition. The effects of different induction deposition time on the morphology of Mg-HA coating were analyzed. OBJECTIVE:To investigate the in vitro properties of Mg-HA coating on the carbon/carbon composites. METHODS: HA (control group) and Mg-HA (experimental group) coating were prepared on the surface of carbon/carbon composites.(1)In vitro solubility:Carbon/carbon composites with different coatings were immersed in low-glucose DMEM medium, and surface morphology, ion concentration, and coating adhesion were tested before and after immersion. (2) Cytocompatibility: Carbon/carbon composites with different coatings were respectively cultured with mouse bone marrow mesenchymal stem cells for 6 days, and cell proliferation was measured by scanning electron microscope. RESULTS AND CONCLUSION: (1) One day after soaking, sediments formed on the coating surface in both groups, but there were more sediments in the experimental group than the control group. Six days after soaking, the sediments completely covered the coating surface in the experimental group, while there were still some gaps in the control group; Ca and P were both detected on the coating surface in the two groups, and the Mg content on the coating surface was obviously higher in the experimental group than the control group. (2) Six days after soaking, the concentrations of Ca, P and Mg in the control group continued to fall; in the experimental group, the concentrations of Ca and P were also reduced gradually, but the Mg concentration arose gradually. Moreover, the Mg concentration was significantly higher in the experimental group than the control group (P < 0.05). (3) The bonding strength of the coating in the experimental group was higher than that in the control group before and after 6 days soaking. In summary, the Mg-HA coating has better bonding strength and cell compatibility.

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