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diterpene lactone/ginkgo

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Ginkgo diterpene lactones are compounds that are extracted from the Ginkgo biloba leaf and possess pharmacologic activities with neuroprotective effects. To address the poor bioavailability of ginkgo diterpene lactones, ginkgo diterpene lactone meglumine injection (GDLI) was formulated and is

[¹H-NMR quantitative analysis and fingerprints of ginkgo diterpene lactone raw material].

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Ginkgo diterpene lactone raw material, as a raw material for ginkgo diterpene lactone meglumine injection, is extracted and purified from ginkgo leaf. ¹H-NMR content determination method and fingerprint analysis method were respectively established for ginkgo diterpene lactone raw material. Content

[Effects of ginkgo diterpene lactones meglumine injection's activated carbon adsorption technology on officinal components].

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With the diversion rate of ginkgolide A, B, K as comprehensive evaluation indexes, the amount of activated carbon, ad- sorption time, mix rate, and adsorption temperature were selected as factors, orthogonal design which based on the evaluation method of information entropy was used to optimize
Ginkgo diterpene lactone (GDL) is the raw material for ginkgo diterpene lactone meglumine injection (GDLI), which is used for treating cerebral ischemia. The aims of this study were to explore cellular pharmacokinetic (PK) of GDL in whole cell and subcellular fractions, detect cellular
Ginkgo diterpene lactones meglumine injection (GDLI) is a commercially available product used for neuroprotection. However, the pharmacokinetic properties of the prototypes and hydrolyzed carboxylic forms of the primary components in GDLI, i.e., ginkgolide A (GA), ginkgolide B (GB), and ginkgolide K

Applying risk management to analytical methods for the desorbing process of ginkgo diterpene lactone meglumine injection.

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Analysis errors can occur in the desorbing process of ginkgo diterpene lactone meglumine injection (GDMI) by a conventional analysis method, due to several factors, such as easily crystallized samples, solvent volatility, time-consuming sample pre-processing, fixed method, and offline analysis.

[Post-marketing study on clinical safety of ginkgo diterpene lactone meglumine injection in 6 300 patients with ischemic stroke].

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To further evaluate the safety of ginkgo diterpene lactone meglumine injection in the clinical use in ischemic stroke patients. Clinical safety study was conducted in 82 clinical units and 6 300 cases were completed and included from June 2013 to December 2014 by using multicenter, prospective, open

[Cerebral vascular protective effect of ginkgo diterpene lactone meglumine injection].

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The left middle cerebral artery occlusion (MCAO) model was made by inserting the nylon thread plug into the internal carotid artery. The behavioral score, cerebral infarction area, brain water content, ethidium bromide (EB) spillover, coagulation four indices, occludin and MMP-9 expression in brain
Ginkgo biloba L. is a kind of traditional Chinese medicinal material with a long history. Its main active components, ginkgolides, can be used for the treatment of stroke and other cardio-cerebrovascular diseases. Ginkgo Diterpene Lactone Meglumine Injection (GDLI) as a modernized TCM
Ginkgo biloba L. (Ginkgoaceae) is a traditional Chinese medicine known to treating stroke and other cardio-cerebrovascular diseases for thousands of years in China. Ginkgo diterpene lactones (GDL) attracted much attention because of their neuroprotective
Ginkgo biloba is one of the oldest living tree species and has been extensively investigated as a source of bioactive natural compounds, including bioactive flavonoids, diterpene lactones, terpenoids and polysaccharides which accumulate in foliar tissues. Despite this chemical diversity, relatively

[Protective effects of Ginkgo Terpene Lactones Meglumine Injection on focal cerebral ischemia in rats].

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To investigate the protective effects of ginkgo diterpene lactone meglumine injection (GDLMI) on cerebral focal ischemia reperfusion injury induced by middle cerebral artery occlusion (MCAO) in rats, and explore its possible mechanism. One hundred and forty male SD rats were randomly divided into

Systems pharmacology reveals the multi-level synergetic mechanism of action of Ginkgo biloba L. leaves for cardiomyopathy treatment

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Ethnopharmacological relevance: Cardiomyopathy is a common cause of heart failure and may lead to increased risk of sudden cardiac death, lacking simple, safe and effective treatment strategies due to unclear pathogenesis. Ginkgo biloba
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