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1.
Chinese Journal of Experimental Traditional Medical Formulae ; (24): 254-264, 2023.
Artículo en Chino | WPRIM | ID: wpr-996832

RESUMEN

Paridis Rhizoma, a traditional valuable Chinese herbal medicine, has the functions of clearing heat and removing toxin, relieving edema and pain, cooling liver and calming convulsion, which can be used to treat various diseases such as mumps, abscess, burn, bleeding, and tumor. It has been used in folk medicine for a long time and is the main raw material of various Chinese patent medicines such as Gongxuening Capsules and Yunnan Baiyao. Polyphyllin Ⅰ, an isospirostanol saponin and one of the main active components in Paridis Rhizoma, is distributed in the rhizome, pericarp, and leaves of Paris polyphylla. With high polarity, polyphyllin Ⅰ is mainly extracted by n-butanol extraction and macroporous adsorption resin chromatography, separated by silica gel column chromatography and preparative high performance liquid chromatography, and purified with the combination of methods. With anti-tumor, anti-inflammatory, antibacterial, and anti-virus effects, it is generally employed to treat liver cancer, lung cancer, gastric cancer and other cancers as well as arthritis, influenza, sore toxin, and bacterial infection. However, polyphyllin Ⅰ may cause stomach irritation, hemolysis, liver damage, kidney damage, heart damage, and other adverse reactions. Pharmacokinetic studies show that it has problems such as low bioavailability and poor intestinal absorption and permeability, which affect the clinical application of polyphyllin Ⅰ. This paper summarizes the research on the plant sources, extraction and separation methods, pharmacological effects, adverse reactions, and pharmacokinetics of polyphyllin Ⅰ in recent years, which is expected to provide a reference for the rational clinical application and other in-depth research work of polyphyllin Ⅰ.

2.
Electron. j. biotechnol ; 48: 86-94, nov. 2020. tab, graf, ilus
Artículo en Inglés | LILACS | ID: biblio-1254836

RESUMEN

BACKGROUND: Chinese hamster ovary (CHO) cells are the workhorse for obtaining recombinant proteins. Proteomic studies of these cells intend to understand cell biology and obtain more productive and robust cell lines for therapeutic protein production in the pharmaceutical industry. Because of the great importance of precipitation methods for the processing of samples in proteomics, the acetone, methanol-chloroform (M/C), and trichloroacetic acid (TCA)-acetone protocols were compared for CHO cells in terms of protein recovery, band pattern resolution, and presence on SDS-PAGE. RESULTS: Higher recovery and similar band profile with cellular homogenates were obtained using acetone precipitation with ultrasonic bath cycles (104.18 ± 2.67%) or NaOH addition (103.12 ± 5.74%), compared to the other two protocols tested. TCA-acetone precipitates were difficult to solubilize, which negatively influenced recovery percentage (77.91 ± 8.79%) and band presence. M/C with ultrasonic homogenization showed an intermediate recovery between the other two protocols (94.22 ± 4.86%) without affecting protein pattern on SDS-PAGE. These precipitation methods affected the recovery of low MW proteins (< 15 kDa). CONCLUSIONS: These results help in the processing of samples of CHO cells for their proteomic study by means of an easily accessible, fast protocol, with an almost complete recovery of cellular proteins and the capture of the original complexity of the cellular composition. Acetone protocol could be incorporated to sample-preparation workflows in a straightforward manner and can probably be applied to other mammalian cell lines as well.


Asunto(s)
Animales , Proteínas Recombinantes , Células CHO , Proteómica/métodos , Acetona , Precipitación Química , Solubilidad , Ácido Tricloroacético , Separación Celular , Cloroformo , Técnicas de Cultivo de Célula , Metanol , Electroforesis en Gel de Poliacrilamida
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