1. Plant Natural Product Formononetin Protects Rat Cardiomyocyte H9c2 Cells against Oxygen Glucose Deprivation and Reoxygenation via Inhibiting ROS Formation and Promoting GSK-3βPhosphorylation
    Yuanyuan Cheng et al, 2016, Oxidative Medicine and Cellular Longevity CrossRef
  2. The Effect of Tou Nong San on Transplanted Tumor Growth in Nude Mice
    Liang-Hua Fang et al, 2015, Evidence-Based Complementary and Alternative Medicine CrossRef
  3. An in vivo molecular response analysis of colorectal cancer treated with Astragalus membranaceus extract
    AILUN TSENG et al, 2016 CrossRef
  4. Expression profiles of 507 proteins from a biotin label-based antibody array in human colorectal cancer
    HISAAKI MIYOSHI et al, 2014 CrossRef
  5. Mushrooms: A Pandora Box of Cardioprotective Phytochemicals
    Marthandam Asokan Shibu et al, 2017 CrossRef
  6. Association Between Use of Traditional Chinese Medicine Herbal Therapy and Survival Outcomes in Patients With Stage II and III Colorectal Cancer: A Multicenter Prospective Cohort Study
    Yun Xu et al, 2017 CrossRef
  7. Formononetin inhibits human bladder cancer cell proliferation and invasiveness via regulation of miR-21 and PTEN
    Yiying Wu et al, 2017, Food Funct. CrossRef
  8. Formononetin inhibits lipopolysaccharide-induced release of high mobility group box 1 by upregulating SIRT1 in a PPARδ-dependent manner
    Jung Seok Hwang et al, 2018 CrossRef
  9. Metabolomic approach for a rapid identification of natural products with cytotoxic activity against human colorectal cancer cells
    Vittoria Graziani et al, 2018, Sci Rep CrossRef
  10. Formononetin-induced oxidative stress abrogates the activation of STAT3/5 signaling axis and suppresses the tumor growth in multiple myeloma preclinical model
    Chulwon Kim et al, 2018, Cancer Letters CrossRef
  11. Preparation and evaluation of temperature and magnetic dual-responsive molecularly imprinted polymers for the specific enrichment of formononetin
    Yu-Zhen Zhang et al, 2018, J. Sep. Sci. CrossRef
  12. Shenqi Fuzheng Injection (SFI) Enhances IFN-α Inhibitory Effect on Hepatocellular Carcinoma Cells by Reducing VEGF Expression: Validation by Gene Silencing Technique
    Xiaoheng Chen et al, 2019, BioMed Research International CrossRef
  13. Formononetin promotes angiogenesis through the estrogen receptor alpha-enhanced ROCK pathway
    Shang Li et al, 2015, Sci Rep CrossRef
  14. Focus on Formononetin: Anticancer Potential and Molecular Targets
    null Ong et al, 2019, Cancers CrossRef
  15. Formononetin Regulates Multiple Oncogenic Signaling Cascades and Enhances Sensitivity to Bortezomib in a Multiple Myeloma Mouse Model
    Chulwon Kim et al, 2019, Biomolecules CrossRef
  16. Formononetin: A Review of Its Anticancer Potentials and Mechanisms
    Kai-Ching Tay et al, 2019, Front. Pharmacol. CrossRef
  17. In vitro and in vivo anti-cancer activity of formononetin on human cervical cancer cell line HeLa
    Yue-mei Jin et al, 2014, Tumor Biol. CrossRef
  18. Astragalus membranaceus: A Review of its Protection Against Inflammation and Gastrointestinal Cancers.
    Kathy K Auyeung et al, 2016, Am J Chin Med CrossRef
  19. Formononetin induces apoptosis in PC-3 prostate cancer cells through enhancing the Bax/Bcl-2 ratios and regulating the p38/Akt pathway.
    Xing Zhang et al, 2014, Nutr Cancer CrossRef
  20. Molecular cloning and characterization of an isoflavone 7-O-glucosyltransferase from Pueraria lobata
    Jia Li et al, 2014, Plant Cell Rep CrossRef
  21. Flavonoids as a scaffold for development of novel anti-angiogenic agents: An experimental and computational enquiry
    R.N. Gacche et al, 2015, Archives of Biochemistry and Biophysics CrossRef
  22. Novel Etoposide Analogue Modulates Expression of Angiogenesis Associated microRNAs and Regulates Cell Proliferation by Targeting STAT3 in Breast Cancer
    Chatla Srinivas et al, 2015, PLoS ONE CrossRef
  23. A systematic review of anticancer effects of Radix Astragali
    Yeehong Jung et al, 2016, Chin. J. Integr. Med. CrossRef
  24. Development and Certification of Formononetin Reference Material for Quality Control of Functional Foods and Botanical Supplements
    Ningbo Gong et al, 2019, CAC CrossRef
  25. Bidirectional regulation of angiogenesis by phytoestrogens through estrogen receptor-mediated signaling networks
    Hai-Xin LIU et al, 2016, Chinese Journal of Natural Medicines CrossRef
  26. Characterization of three small molecule inhibitors of enterovirus 71 identified from screening of a library of natural products
    Guiming Li et al, 2017, Antiviral Research CrossRef
  27. Formononetin, a novel FGFR2 inhibitor, potently inhibits angiogenesis and tumor growth in preclinical models
    Xiao Yu Wu et al, 2015, Oncotarget CrossRef
  28. Silibinin A decreases statin‑induced PCSK9 expression in human hepatoblastoma HepG2 cells
    Zhewen Dong et al, 2019, Mol Med Report CrossRef
  29. Formononetin protects against balloon injury‑induced neointima formation in rats by regulating proliferation and migration of vascular smooth muscle cells via the TGF‑β1/Smad3 signaling pathway
    Tao Song et al, 2018, Int J Mol Med CrossRef
  30. Formononetin inhibits colon carcinoma cell growth and invasion by microRNA‑149‑mediated EphB3 downregulation and inhibition of PI3K/AKT and STAT3 signaling pathways
    Ai‑Lei Wang et al, 2018, Mol Med Report CrossRef
  31. Formononetin ameliorates oxaliplatin-induced peripheral neuropathy via the KEAP1-NRF2-GSTP1 axis
    Yuan Fang et al, 2020, Redox Biology CrossRef
  32. Integrated metabolomics and transcriptomics study of traditional herb Astragalus membranaceus Bge. var. mongolicus (Bge.) Hsiao reveals global metabolic profile and novel phytochemical ingredients
    Xueting Wu et al, 2020, BMC Genomics CrossRef
  33. Formononetin exhibits anticancer activity in gastric carcinoma cell and regulating miR ‐542‐5p
    Wei‐Song Wang et al, 2020, The Kaohsiung Journal of Medical Sciences CrossRef
  34. Multifaceted implementation of nanotechnology in ameliorating therapeutic efficacy of Soy phytoestrogens: Comprehensive review on the state of art
    Abdelrahaman MM. Othman et al, 2020, Journal of Drug Delivery Science and Technology CrossRef
  35. Letters to the Editor
    Shailendra Kapoor, 2013 CrossRef
  36. Natural isoflavonoids in invasive cancer therapy: From bench to bedside
    Lorena Cayetano‐Salazar et al, 2021, Phytotherapy Research CrossRef
  37. Phytochemistry, Pharmacology, and Pharmacokinetics of Phytoestrogens from Red Clover Extract: An Exhaustive Overview
    Swati Chaturvedi et al, 2021 CrossRef
  38. A large cervical lymphatic malformation in a neonate successfully treated with Kampo medicine
    Kengo Nakahata et al, 2021 CrossRef
  39. Combination of UPLC–Q-TOF/MS and Network Pharmacology to Reveal the Mechanism of Qizhen Decoction in the Treatment of Colon Cancer
    Xianbin Kong et al, 2021, ACS Omega CrossRef
  40. Insights into the molecular mechanisms of Huangqi decoction on liver fibrosis via computational systems pharmacology approaches
    Biting Wang et al, 2021, Chin Med CrossRef
  41. Formononetin inhibits enterovirus 71 replication by regulating COX- 2/PGE2 expression
    Huiqiang Wang et al, 2015, Virol J CrossRef
  42. Nutritional Characterization and Untargeted Metabolomics of Oyster Mushroom Produced Using Astragalus membranaceus var. mongolicus Stems and Leaves as Substrates
    Xu Zeng et al, 2022, Front. Plant Sci. CrossRef
  43. Heterocyclic Anti-cancer Compounds Derived from Natural Sources with their Mechanism of Action
    Sitesh C. Bachar et al, 2022 CrossRef
  44. Pull the plug: Anti‐angiogenesis potential of natural products in gastrointestinal cancer therapy
    Yanling Ai et al, 2022, Phytotherapy Research CrossRef
  45. Identification of key pharmacological components and targets for Aidi injection in the treatment of pancreatic cancer by UPLC-MS, network pharmacology, and in vivo experiments
    Haojia Wang et al, 2023, Chin Med CrossRef
  46. Uncovering the effects and molecular mechanism of Astragalus membranaceus (Fisch.) Bunge and its bioactive ingredients formononetin and calycosin against colon cancer: An integrated approach based on network pharmacology analysis coupled with experimental validation and molecular docking
    Yu Hu et al, 2023, Front. Pharmacol. CrossRef
  47. Phenolic Phytochemicals for Prevention and Treatment of Colorectal Cancer: A Critical Evaluation of In Vivo Studies
    Samhita De et al, 2023, Cancers CrossRef
  48. Formononetin Inhibits Non-Small Cell Lung Cancer Proliferation via Regulation of mir-27a-3p through p53 Pathway
    Chunya Hu et al, 2021 CrossRef
  49. Inhibitory effects of Formononetin on CoCrMo particle-induced osteoclast activation and bone loss through downregulating NF-κB and MAPK signaling
    Xin Yu et al, 2023, Cellular Signalling CrossRef
  50. Potential Therapeutic Targets of Formononetin, a Type of Methoxylated Isoflavone, and Its Role in Cancer Therapy through the Modulation of Signal Transduction Pathways
    Saleh A. Almatroodi et al, 2023, IJMS CrossRef
  51. Based on Network Pharmacology and Molecular Docking Technology, the Mechanism of Linggan Wuwei Jiangxin Banxia Decoction in Treating Cough Was Explored
    猛 王, 2023, TCM CrossRef
  52. Formulation and Characterization of Phytosomes as Drug Delivery System of Formononetin: An Effective Anti-Osteoporotic Agent
    Arun Agarwal et al, 2024, CDD CrossRef
  53. Modulation of hypoxia-inducible factor-1 signaling pathways in cancer angiogenesis, invasion, and metastasis by natural compounds: a comprehensive and critical review
    Sajad Fakhri et al, 2024, Cancer Metastasis Rev CrossRef
  54. Unveiling the Potential of Natural Compounds: A Comprehensive Review on Adipose Thermogenesis Modulation
    Jaeeun Shin et al, 2024, IJMS CrossRef
  55. Pharmacological potential of natural medicine Astragali Radix in treating intestinal diseases
    Xiunan Wei et al, 2024, Biomedicine & Pharmacotherapy CrossRef
  56. Research Progress in the Medicine–Food Dual Use of Astragalus for Gastrointestinal Tumors
    Jiaqing Li et al, 2024, Journal of Medicinal Food CrossRef
  57. Novel Products as Promising Therapeutic Agents for Angiogenesis Inhibition
    Shaheen Sultana et al, 2025, CDD CrossRef
  58. Metabolomics Profiling of Edible Mushrooms: Challenges, Applications, and Future
    Aruwa E. Christiana et al, 2025 CrossRef