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Polygonum

About: Polygonum is a research topic. Over the lifetime, 1230 publications have been published within this topic receiving 12765 citations.


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Patent
31 May 2017
TL;DR: The polygonum multiflorum drink as mentioned in this paper is prepared from the following raw materials in parts by weight: 90-120 parts of polygonal multiflorume, 5-10 parts of American ginseng, 5 -10 parts rehmannia roots, 1-3 parts of radix pseudostellariae, 1 -3 parts acanthopanax roots, 3 parts of dried tangerine or orange peel, 1 −3 part of fingered citron, and 1 − 3 parts radix zanthoxyli.
Abstract: The invention relates to the field of biological medicines, and in particular relates to polygonum multiflorum drink and a preparation method thereof. The polygonum multiflorum drink is prepared from the following raw materials in parts by weight: 90-120 parts of polygonum multiflorum, 5-10 parts of American ginseng, 5-10 parts of prepared rehmannia roots, 1-3 parts of radix pseudostellariae, 1-3 parts of acanthopanax roots, 1-3 parts of dried tangerine or orange peel, 1-3 parts of fingered citron and 1-3 parts of radix zanthoxyli. The polygonum multiflorum drink is scientific and reasonable in formula, free of toxic or side effect, simple in process and applicable to industrial production, and as multiple medicines are combined and assisted by one another, yin and yang balance of a body can be achieved, and the human body immunity can be improved.
Journal ArticleDOI
TL;DR: In this article , a datasheet on Polygonum arenarium covers Identity, Distribution, Further Information, and Distribution of Polygonal Arenarium, including a detailed discussion of its properties.
Abstract: This datasheet on Polygonum arenarium covers Identity, Distribution, Further Information.
Journal ArticleDOI
TL;DR: Polygonum subaphyllum is reported as a new species for the flora of Russia based on collections from several Siberian regions (Novosibirsk Region, Altai Territory, Trans-Baikal Territory and Republic of Sakha (Yakutia)) revealed among the materials of NS and KRAS as discussed by the authors .
Abstract: Polygonum subaphyllum is reported here as a new species for the flora of Russia based on collections from several Siberian regions (Novosibirsk Region, Altai Territory, Trans-Baikal Territory and Republic of Sakha (Yakutia)) revealed among the materials of NS and KRAS. In Siberia, Polygonum subaphyllum grows in solonetzic steppes, on sands, on agricultural fields and along the roads. It belongs to Polygonum sect. Polygonum subsect. Patula (Polygonaceae). The key for identification of Siberian species of subsection Patula (P. subaphyllum, P. novoascanicum and P. patulum) is given.
Patent
22 Dec 2017
TL;DR: In this paper, a measurement device is used in the polygonum multiflorum planting method and comprises a tank body with opened upper and lower parts, wherein a display screen is arranged on the tank body, a film sleeve is arranged in the tank, a plurality of through holes are uniformly formed in the film sleeve, and the sensors are uniformly distributed on the inner wall of film sleeve and are used for monitoring the expansibility of the film.
Abstract: The invention discloses a polygonum multiflorum planting method, belonging to the technical field of plant cultivation A measurement device is used in the polygonum multiflorum planting method and comprises a tank body with opened upper and lower parts, wherein a display screen is arranged on the tank body, a film sleeve is arranged in the tank body, a plurality of through holes are uniformly formed in the film sleeve, a plurality of sensors are uniformly distributed on the inner wall of the film sleeve and are used for monitoring the expansibility of the film sleeve, and the display screen is connected with the sensors through electric signals By utilizing the scheme, the growth condition of the polygonum multiflorum can be precisely observed without taking out the polygonum multiflorum
Journal ArticleDOI
TL;DR: In this paper , the co-assemblies of TSG/C3G were found, and their structure was characterized by electronic microscopy and a small angle X-ray scattering (SAXS) technique.
Abstract: Elucidating the underlying mechanism of the processing of Chinese herbal medicine (CHM) is crucial and also challenging for the modernization of Traditional Chinese Medicine (TCM). Herein, inspired by the traditional method for processing the Chinese herb Polygonum multiflorum (PM) Thunb with excipient black beans, the representative herbal components trans-2,3,5,4'-tetrahydroxystilbene 2-O-β-D-glucopyranoside (TSG) and cyanidin-3-O-β-glucoside (C3G) from each herbal medicine were selected to investigate the processing mechanism at the supramolecular level. The co-assemblies of TSG/C3G were found to be formed, and their structure was characterized by electronic microscopy and a small angle X-ray scattering (SAXS) technique. In addition, the supramolecular interactions between TSG and C3G were fully probed with UV-Vis, fluorescence, XRD, and NMR spectroscopy. Molecular dynamics were further performed to simulate the assembly processes of TSG and C3G. Notably, the formation of TSG/C3G co-assemblies was found to significantly enhance the stability of TSG against light, Fe3+, and simulated intestinal fluids. The co-assembly of TSG and C3G that leads to supramolecular aggregates discovered here may imply the underlying mechanism of processing PM with black beans. Our results may also suggest that a new effective form of TCM is supramolecular aggregates rather than each component.

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Performance
Metrics
No. of papers in the topic in previous years
YearPapers
202333
2022109
202114
202037
201937
201856