Shaofu Zhuyu Decoction Inhibits Fibrosis in a Mouse Model of Endometriosis Through the Ampk/Tgf-Β1/Smads Pathway: Integrating Network Pharmacology and Experimental Validation in Vivo
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Shaofu Zhuyu Decoction reduces endometriosis-associated fibrosis in mice by activating the AMPK/TGF-β1/Smads pathway, as confirmed by network pharmacology and in vivo experiments.
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References (36)
- A Meta-analysis of the Efficacy and Safety of Traditional Chinese Medicine in Treating Endometriosis via openalex
- Antifibrotic properties of epigallocatechin-3-gallate in endometriosis via openalex
- Autoimmune Disease-Related Hub Genes are Potential Biomarkers and Associated with Immune Microenvironment in Endometriosis via openalex
- Complementary authentication of Chinese herbal products to treat endometriosis using DNA metabarcoding and HPTLC shows a high level of variability via openalex
- Curcumin treats endometriosis in mice by the HIF signaling pathway. via openalex
- Dienogest May Reduce Estradiol- and Inflammatory Cytokine-Induced Cell Viability and Proliferation and Inhibit the Pathogenesis of Endometriosis: A Cell Culture- and Mouse Model-Based Study via openalex
- Effect of the estrus cycle stage on the establishment of murine endometriosis lesions via openalex
- Endometriotic mesenchymal stem cells promote the fibrosis process of endometriosis through paracrine <scp>TGF</scp>‐β1 mediated <scp>RASAL1</scp> inhibition via openalex
- Epigenetic Modulation of Collagen 1A1: Therapeutic Implications in Fibrosis and Endometriosis1 via openalex
- Luoshi Neiyi Prescription inhibits estradiol synthesis and inflammation in endometriosis through the HIF1A/EZH2/SF-1 pathway via openalex
- Lysine acetyltransferase 14 mediates TGF-β-induced fibrosis in ovarian endometrioma via co-operation with serum response factor via openalex
- Multi-omics integration highlights the role of ubiquitination in endometriosis fibrosis via openalex
- Patterns of proliferation and fibrosis in a rat model of endometriosis following administration of Allium cepa via openalex
- Persistent activation of signal transducer and activator of transcription 3 via interleukin-6 trans-signaling is involved in fibrosis of endometriosis via openalex
- Platelets are an unindicted culprit in the development of endometriosis: clinical and experimental evidence via openalex
- Re-evaluation of mouse models of endometriosis for pathological and immunological research via openalex
- Rethinking mechanisms, diagnosis and management of endometriosis via openalex
- Role of AMPK/mTOR, mitochondria, and ROS in the pathogenesis of endometriosis via openalex
- Role of Betaglycan in TGF-β Signaling and Wound Healing in Human Endometriotic Epithelial Cells and in Endometriosis via openalex
- The Expression of TGF-β1, SMAD3, ILK and miRNA-21 in the Ectopic and Eutopic Endometrium of Women with Endometriosis via openalex
- The role of fibrosis in endometriosis: a systematic review via openalex
- Wenshen Xiaozheng Tang alleviates fibrosis in endometriosis by regulating differentiation and paracrine signaling of endometrium-derived mesenchymal stem cells via openalex
- W4403845131 via openalex
- W2130203785 via openalex
- W2132577372 via openalex
- W2276317604 via openalex
- W2946955396 via openalex
- W3134885188 via openalex
- W4206217022 via openalex
- W4377232102 via openalex
- W4382501196 via openalex
- W4391815479 via openalex
- W4400306966 via openalex
- W4401665353 via openalex
- W4401671587 via openalex
- W4403692186 via openalex
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