1. The restraining effect of baicalein and U0126 on human cervical cancer cell line HeLa
    Haiqiong Ye et al, 2017 CrossRef
  2. The Fascinating Effects of Baicalein on Cancer: A Review
    Hui Liu et al, 2016, IJMS CrossRef
  3. Long noncoding RNA NKILA enhances the anti-cancer effects of baicalein in hepatocellular carcinoma via the regulation of NF-κB signaling
    Xiaolan Yu et al, 2018, Chemico-Biological Interactions CrossRef
  4. Flavonoids in Cancer and Apoptosis
    Mariam Abotaleb et al, 2018, Cancers CrossRef
  5. null
    Yangchun Xie et al, 2019 CrossRef
  6. Apoptosis, autophagy and unfolded protein response pathways in Arbovirus replication and pathogenesis
    Mahmoud Iranpour et al, 2016, Expert Rev. Mol. Med. CrossRef
  7. Baicalein blocked cervical carcinoma cell proliferation by targeting CCND1 via Wnt/β-catenin signaling pathway
    Xiulian Xia et al, 2019, Artificial Cells, Nanomedicine, and Biotechnology CrossRef
  8. Co-delivery of baicalein and doxorubicin by hyaluronic acid decorated nanostructured lipid carriers for breast cancer therapy
    Qian Liu et al, 2015, Drug Delivery CrossRef
  9. Baicalein inhibits hepatocellular carcinoma cells through suppressing the expression of CD24
    Zhengquan Han et al, 2015, International Immunopharmacology CrossRef
  10. γ-Tocotrienol upregulates aryl hydrocarbon receptor expression and enhances the anticancer effect of baicalein
    Shuya Yamashita et al, 2016, Biochemical and Biophysical Research Communications CrossRef
  11. Coix lacryma-jobi var. ma-yuen Stapf sprout extract induces cell cycle arrest and apoptosis in human cervical carcinoma cells
    Eun Suk Son et al, 2019, BMC Complement Altern Med CrossRef
  12. Baicalein restrains proliferation, migration, and invasion of human malignant melanoma cells by down-regulating colon cancer associated transcript-1
    Xiaoliang Yang et al, 2019, Braz J Med Biol Res CrossRef
  13. Molecular insight into apoptosis mediated by flavones in cancer (Review)
    Ritu Raina et al, 2020, World Acad Sci J CrossRef
  14. Inhibitory effect of baicalein combined with gemcitabine in human pancreatic cancer cell lines
    Zhenlei Li et al, 2018, Oncol Lett CrossRef
  15. Liposome‑delivered baicalein induction of myeloid leukemia K562 cell death via reactive oxygen species generation
    Scarlet Wang et al, 2018, Mol Med Report CrossRef
  16. Erianin inhibits human cervical cancer cell through regulation of tumor protein p53 via the extracellular signal‑regulated kinase signaling pathway
    Mengting Li et al, 2018, Oncol Lett CrossRef
  17. MicroRNA216b mediated downregulation of HSP27 / STAT3 / AKT signaling is critically involved in lambertianic acid induced apoptosis in human cervical cancers
    Jae Chul Lee et al, 2020, Phytotherapy Research CrossRef
  18. Baicalein Represses Cervical Cancer Cell Growth, Cell Cycle Progression and Promotes Apoptosis via Blocking AKT/mTOR Pathway by the Regulation of circHIAT1/miR-19a-3p Axis
    Jiaojiao Hu et al, 2021, OTT CrossRef
  19. Ligand decorated biodegradable nanomedicine in the treatment of cancer
    Ejaj Ahmad et al, 2021, Pharmacological Research CrossRef
  20. Bioactive Compounds from Herbal Medicine Targeting Multiple Myeloma
    Coralia Cotoraci et al, 2021, Applied Sciences CrossRef
  21. Potential of baicalein in the prevention and treatment of cancer: A scientometric analyses based review
    Elika Verma et al, 2021, Journal of Functional Foods CrossRef
  22. Potential Mechanisms of Plant-Derived Natural Products in the Treatment of Cervical Cancer
    Meizhu He et al, 2021, Biomolecules CrossRef
  23. Baicalein Inhibits the Proliferation of Cervical Cancer Cells Through the GSK3β-Dependent Pathway
    Xiaoling Wu et al, 2018, oncol res CrossRef
  24. The Flavonoid Baicalein Negatively Regulates Progesterone Target Genes in the Uterus in Vivo
    Kailiang Li et al, 2021, J. Nat. Prod. CrossRef
  25. Therapeutic Effects of Natural Products on Cervical Cancer: Based on Inflammatory Pathways
    Zi-Wei Zhou et al, 2022, Front. Pharmacol. CrossRef
  26. Deciphering the pharmacological mechanisms of Scutellaria baicalensis Georgi on oral leukoplakia by combining network pharmacology, molecular docking and experimental evaluations
    Fanfan Hou et al, 2022, Phytomedicine CrossRef
  27. Designing a novel fusion protein from Streptococcus agalactiae with apoptosis induction effects on cervical cancer cells
    Zeynab Marzhoseyni et al, 2022, Microbial Pathogenesis CrossRef
  28. Crosstalk between xanthine oxidase (XO) inhibiting and cancer chemotherapeutic properties of comestible flavonoids- a comprehensive update
    Md Sohanur Rahaman et al, 2022, The Journal of Nutritional Biochemistry CrossRef
  29. Flavones: Six Selected Flavones and Their Related Signaling Pathways That Induce Apoptosis in Cancer
    Se Hyo Jeong et al, 2022, IJMS CrossRef
  30. The mechanism of flavonoids from Cyclocarya paliurus on inhibiting liver cancer based on in vitro experiments and network pharmacology
    Jinggang Mo et al, 2023, Front. Pharmacol. CrossRef
  31. Designing a Novel Fusion Protein from Streptococcus Agalactiae with Apoptosis Induction Effects on Cervical Cancer Cells
    Zeynab Marzhoseyni et al, 2022, SSRN Journal CrossRef
  32. Baicalein as Promising Anticancer Agent: A Comprehensive Analysis on Molecular Mechanisms and Therapeutic Perspectives
    A K M Helal Morshed et al, 2023, Cancers CrossRef
  33. Effects of Flavonoids on Cancer, Cardiovascular and Neurodegenerative Diseases: Role of NF-κB Signaling Pathway
    Maria Magdalena Barreca et al, 2023, IJMS CrossRef
  34. ROS-mediated Genotoxicity and Apoptosis Induced by a Novel Salicylaldimine Derivatives in Human Cervical Cancer Cells
    Yasin Tülüce et al, 2023, CMC CrossRef
  35. Therapeutic efficacy and anti-inflammatory mechanism of baicalein on endometriosis progression in patient-derived cell line and mouse model
    Wonhyoung Park et al, 2024, Phytomedicine CrossRef