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Application of fructus cnidii coumarin in preparation of antifungal medicament synergist product

An antifungal drug, Cnidium chinensis technology, applied in the field of medicine, can solve the problem of synergistic antifungal effect that has not been reported publicly, and achieve good application prospects, improve antifungal effect, and wide application prospects

Inactive Publication Date: 2013-10-30
SECOND MILITARY MEDICAL UNIV OF THE PEOPLES LIBERATION ARMY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, when used in combination with other drugs, there is no public report on the synergistic antifungal effect

Method used

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  • Application of fructus cnidii coumarin in preparation of antifungal medicament synergist product
  • Application of fructus cnidii coumarin in preparation of antifungal medicament synergist product
  • Application of fructus cnidii coumarin in preparation of antifungal medicament synergist product

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0011] Example 1: The effect of the combination of methoxycarvacrol and fluconazole on different clinical fungal strains

[0012] Materials and methods

[0013] 1. Test drug:

[0014] Methoxyparscreol: provided by Xi'an Luquan Biotechnology Co., Ltd., prepared with DMSO.

[0015] Fluconazole injection: Pfizer Pharmaceutical Co., Ltd., batch number 9149102.

[0016] All reagents were stored at -20°C. Before the experiment, the drug was taken out and placed in a 35°C incubator to melt, mixed well, and pharmacodynamic tests were carried out respectively.

[0017] 2. Strains:

[0018] Clinical strains: Drug-resistant Candida albicans (100, J35, 32, 557, 842, 901, 103, J28, J5, 904, 953), all provided by the Fungi Department of Shanghai Changhai Hospital, collected from clinical samples of different departments of Changhai Hospital , and were identified morphologically and biochemically.

[0019] All the experimental strains were activated on sandcastle dextrose agar (SDA) m...

Embodiment 2

[0044] Example 2: Diffusion experiment on agar plate in combination with methoxyparvacrol and fluconazole

[0045] Materials and methods

[0046] Strains: Clinical drug-resistant Candida albicans No. 0304103, provided by the Fungi Department of Changhai Hospital, and identified by morphology and biochemistry.

[0047] Drug: fluconazole injection (Diflucan, Diflucan) is produced by Pfizer Biopharmaceutical Co., Ltd. of the United States. Methoxyparserol (osthol) was provided by Xi'an Luquan Biotechnology Co., Ltd. and prepared in DMSO.

[0048] Reagents: YEPD culture fluid, YEPD solid medium, DMSO, 0.9% physiological saline, sterile white paper (diameter 6mm).

[0049]YEPD solid medium: 10g of yeast extract, 20g of peptone, 20g of glucose, 20g of agar, add 900ml of triple distilled water to dissolve, adjust the volume to 1000ml with triple distilled water, autoclave (121°C, 15min), spread the liquid while hot Store in a sterile petri dish (diameter 90mm) at 4°C for later us...

Embodiment 3

[0054] Example 3: The protective effect of combined use of methoxyparvacrol and fluconazole on systemic fungal infection in mice

[0055] Test design:

[0056] 50 ICR mice were injected into the tail vein with 5×10 6 CFU / ml logarithmic growth phase Candida albicans suspension 0.2ml, replicate systemic mouse deep fungal infection model, and randomly divide into the following 5 groups: model group, fluconazole 0.5mg / ml group, fluconazole Azole 0.5mg / ml+methoxyparscreol 75mg / ml group, fluconazole 0.5mg / ml+methoxyparscreol 150mg / ml group, fluconazole 0.5mg / ml+methoxyparscreol 300mg / ml Group.

[0057] Two hours after modeling, the drug was administered by intragastric administration, with a volume of 0.2ml / 10g, once a day for four consecutive days. The mice were observed for death within 30 days after the start of administration.

[0058] statistical methods:

[0059] Kaplan-Meier survival analysis, statistical software SPSS17.0.

[0060] Experimental results

[0061] The ...

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Abstract

The invention relates to the technical field of medicines, and in particular relates to an application of fructus cnidii coumarin in preparation of an antifungal medicament synergist product. External and internal experiences prove that fructus cnidii coumarin can remarkably improve the treatment effect on deep fungal infection by combination with fluconazole, and can restore effects of an antifungal medicament on medicament-resisting fungus, therefore the fructus cnidii coumarin can be used as a synergist of the antifungal medicament.

Description

Technical field: [0001] The invention relates to the technical field of medicine, and relates to the application of cnidium coumarin in preparing antifungal drug synergist products. Background technique [0002] The traditional Chinese medicine Cnidium is the fruit of Cnidium monnieric (L.) Cuss, an annual herb of Umbelliferae. Modern chemical research shows that the main components are coumarins and terpenoids. At present, the pharmacological action and application research of the active ingredients in Cnidium Fructus mainly focuses on coumarins, which are called Total Cnidium Coumarin (TCCM). There are 6 monomers that have been separated from TCCM, including methoxy Parsvelol, bergamot lactone, isoxaxifragenin, xanthoxylin, xanthoxylin, parsley element B. It has a broad-spectrum antibacterial effect, and has a strong inhibitory effect on beard, toe, and perianal ringworm, and has an inhibitory effect on vaginal trichomonas. However, there is no public report on the syner...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61K36/234A61K31/37A61P31/10
Inventor 姜远英李林鹏曹永兵林辉李洪娇
Owner SECOND MILITARY MEDICAL UNIV OF THE PEOPLES LIBERATION ARMY
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