Publications by authors named "Hui-Hui Shao"

Article Synopsis
  • Researchers found new pyrrolamide-type inhibitors targeting the GyrB/ParE subunits of type II topoisomerase to combat super drug-resistant bacterial infections, addressing safety concerns linked with an earlier candidate, AZD5099.
  • One notable compound demonstrated strong inhibition of Gyrase with an IC of 49 nmol/L and significant antibacterial activity against both Gram-positive and resistant bacteria at very low concentrations.
  • The new compound also showed better effectiveness and lower toxicity than existing treatments like DS-2969 and vancomycin, making it a promising candidate for pre-clinical evaluation against drug-resistant infections.
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Appropriate light intensity is favorable for the photosynthesis, biomass accumulation, key enzyme activity, and secondary metabolite synthesis of medicinal plants. This study aims to explore the influence of light intensity on growth and quality of Panax quinquefolius. To be specific, sand culture experiment was carried out in a greenhouse under the light intensity of 40, 80, 120, and 160 μmol·m~(-2)·s~(-1), respectively.

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The soil fertility quality is one of the most critical indicators of soil productivity. It directly affects the yield, quality and agricultural efficiency of Chinese medicinal materials. In order to establish the American ginseng planting soil fertility quality evaluation method based on the effective components of American ginseng, Wendeng district, Weihai city, Shandong province, the main producing area of American ginseng, was cited as a case for the study.

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Mineral nutrient elements are the key factors to maintain the growth and quality of American ginseng. In order to understand the comprehensive effect of different nutrient elements deficiency on American ginseng, 2-year-old American ginsengs were cultivated by Hoagland solution(CK) or 10 different nutrients deficiency solution in sand culture. During the cultivation, the deficient symptom was observed.

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A magnetic nano-sized carrier for 10-hydroxycamptothecin (HCPT) was prepared by using Fe(3)O(4) nanoparticles as cores and chitosan (CS) as a polymeric shell by a novel reverse ultrasonic emulsification method. Poly(ethylene glycol) (PEG) chains were then coupled onto the magnetic particles (CS-Fe(3)O(4)) to improve their biocompatibility (PEG-CS-Fe(3)O(4)). HCPT was loaded onto PEG-CS-Fe(3)O(4) by a subtle precipitation method.

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