1. System Pharmacology-Based Dissection of the Synergistic Mechanism of Huangqi and Huanglian for Diabetes Mellitus
    Shi-Jun Yue et al, 2017, Frontiers in Pharmacology CrossRef
  2. The natural compound, formononetin, extracted from Astragalus membranaceus increases adipocyte thermogenesis by modulating PPARγ activity
    Tao Nie et al, 2018, British Journal of Pharmacology CrossRef
  3. Astragalus membranaceus-Polysaccharides Ameliorates Obesity, Hepatic Steatosis, Neuroinflammation and Cognition Impairment without Affecting Amyloid Deposition in Metabolically Stressed APPswe/PS1dE9 Mice
    Yung-Cheng Huang et al, 2017, International Journal of Molecular Sciences CrossRef
  4. A lipid droplet-specific fluorescence probe for atherosclerotic plaque imaging
    Jingruo Chen et al, 2022, The Analyst CrossRef
  5. Qizhi Jiangtang Jiaonang Improves Insulin Signaling and Reduces Inflammatory Cytokine Secretion and Reactive Oxygen Species Formation in Insulin Resistant HepG2 Cells
    Xiao-Tian Zhang et al, 2015, Evidence-Based Complementary and Alternative Medicine CrossRef
  6. Anti-diabetic polysaccharides from natural sources: A review
    Peng-Cheng Wang et al, 2016, Carbohydrate Polymers CrossRef
  7. Advances on Bioactive Polysaccharides from Medicinal Plants
    Jian-Hua Xie et al, 2016, Critical Reviews in Food Science and Nutrition CrossRef
  8. Extraction, structure, and activity of polysaccharide from Radix astragali
    Zhenjie Tang et al, 2022, Biomedicine & Pharmacotherapy CrossRef
  9. Introduction
    Shaoping Nie et al, 2018, Bioactive Polysaccharides CrossRef
  10. Astragalus polysaccharides exerts anti‐infective activity by inducing human cathelicidin antimicrobial peptide LL‐37 in respiratory epithelial cells
    Lin Zhao et al, 2018, Phytotherapy Research CrossRef
  11. Novel two-photon fluorescent probe with high fluorescence quantum yields for tracking lipid droplets in biological systems
    Jie Niu et al, 2019, Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy CrossRef