|
[1]
|
Hilkens, N.A., Casolla, B., Leung, T.W. and de Leeuw, F. (2024) Stroke. The Lancet, 403, 2820-2836.[CrossRef] [PubMed]
|
|
[2]
|
Kremer, R., Williams, A. and Wardlaw, J. (2025) Endothelial Cells as Key Players in Cerebral Small Vessel Disease. Nature Reviews Neuroscience, 26, 179-188.[CrossRef] [PubMed]
|
|
[3]
|
László, M.J., Vigh, J.P., Kocsis, A.E., Porkoláb, G., Hoyk, Z., Polgár, T., et al. (2025) n, n-Dimethyltryptamine Mitigates Experimental Stroke by Stabilizing the Blood-Brain Barrier and Reducing Neuroinflammation. Science Advances, 11, eadx5958.[CrossRef] [PubMed]
|
|
[4]
|
Claassen, J.A.H.R., Thijssen, D.H.J., Panerai, R.B. and Faraci, F.M. (2021) Regulation of Cerebral Blood Flow in Humans: Physiology and Clinical Implications of Autoregulation. Physiological Reviews, 101, 1487-1559.[CrossRef] [PubMed]
|
|
[5]
|
Wälchli, T., Ghobrial, M., Schwab, M., Takada, S., Zhong, H., Suntharalingham, S., et al. (2024) Single-Cell Atlas of the Human Brain Vasculature across Development, Adulthood and Disease. Nature, 632, 603-613.[CrossRef] [PubMed]
|
|
[6]
|
Hansen, L.M.B., Dam, V.S., Guldbrandsen, H.Ø., Staehr, C., Pedersen, T.M., Kalucka, J.M., et al. (2025) Spatial Transcriptomics and Proteomics Profiling after Ischemic Stroke Reperfusion: Insights into Vascular Alterations. Stroke, 56, 1036-1047.[CrossRef] [PubMed]
|
|
[7]
|
Shin, J., Hong, J., Edwards-Glenn, J., Krukovets, I., Tkachenko, S., Adelus, M.L., et al. (2024) Unraveling the Role of Sex in Endothelial Cell Dysfunction: Evidence from Lineage Tracing Mice and Cultured Cells. Arteriosclerosis, Thrombosis, and Vascular Biology, 44, 238-253.[CrossRef] [PubMed]
|
|
[8]
|
Zheng, C., Chu, M., Chen, Q., Chen, C., Wang, Z. and Chen, X. (2022) The Role of Lncrna OIP5-AS1 in Cancer Development and Progression. Apoptosis, 27, 311-321.[CrossRef] [PubMed]
|
|
[9]
|
Zhang, Y., Guo, S., Wang, S., Li, X., Hou, D., Li, H., et al. (2021) Lncrna OIP5-AS1 Inhibits Ferroptosis in Prostate Cancer with Long-Term Cadmium Exposure through miR-128-3p/SLC7A11 Signaling. Ecotoxicology and Environmental Safety, 220, Article ID: 112376.[CrossRef] [PubMed]
|
|
[10]
|
Wang, X.L. and Zhu, Y.L. (2025) Research Progress on Modern Clinical Application and Mechanism of Tianma Gouteng Decoction and Its Single Herbs in Prevention and Treatment of Stroke. Traditional Chinese Medicine Research, 38, 89-96. (In Chinese)
|
|
[11]
|
Zhang, Y.Y., Li, J.J., Long, Y.L., et al. (2024) Review on the Application of Tianma Gouteng Decoction in Prevention and Treatment of Cardiovascular and Cerebrovascular Diseases. Chinese Journal of Basic Medicine in Traditional Chinese Medicine, 30, 152-157. (In Chinese)
|
|
[12]
|
Duan, J.P., Zhang, J., Wang, X., et al. (2024) Tianma Gouteng Decoction in Treatment of Neurological Diseases: A Research Review. Chinese Journal of Experimental Traditional Medical Formulae, 30, 255-264. (In Chinese)
|
|
[13]
|
Zhou, Y.D., Li, J.P., Zhang, M.Y., et al. (2025) Protective Effect and Mechanism of Xiongshao Capsule PFG on Vascular Endothelial Cell Injury Induced by Oxidized Low-Density Lipoprotein. Journal of Huazhong University of Science and Technology (Medical Edition), 54, 513-522. (In Chinese)
|
|
[14]
|
Sui, Y.H., He, H., Luo, T.H., et al. (2026) Exploring the Mechanism of Si Jun Zi Decoction Against Atherosclerosis Based on Network Pharmacology, Transcriptomics and Molecular Docking. World Science and Technology-Modernization of Traditional Chinese Medicine, 28, 348-363. (In Chinese)
|
|
[15]
|
Niu, X.W. (2019) Experimental Study of Angelica Polysaccharide Improving Myocardial Ischemia-Reperfusion Injury through Oip5-as1 Regulating SIRT1-AMPK-PGC1α Pathway. Ph.D. Thesis, Lanzhou University.
|
|
[16]
|
Ulitsky, I., Shkumatava, A., Jan, C.H., Sive, H. and Bartel, D.P. (2011) Conserved Function of LincRNAs in Vertebrate Embryonic Development Despite Rapid Sequence Evolution. Cell, 147, 1537-1550.[CrossRef] [PubMed]
|
|
[17]
|
Smith, K.N., Starmer, J. and Magnuson, T. (2018) Interactome Determination of a Long Noncoding RNA Implicated in Embryonic Stem Cell Self-Renewal. Scientific Reports, 8, Article No. 17568.[CrossRef] [PubMed]
|
|
[18]
|
Tani, H., Numajiri, A., Aoki, M., Umemura, T. and Nakazato, T. (2019) Short-Lived Long Noncoding RNAs as Surrogate Indicators for Chemical Stress in HepG2 Cells and Their Degradation by Nuclear RNases. Scientific Reports, 9, Article No. 20299.[CrossRef] [PubMed]
|
|
[19]
|
Kim, J., Noh, J.H., Lee, S., Munk, R., Sharov, A., Lehrmann, E., et al. (2017) LncRNA OIP5-AS1/Cyrano Suppresses GAK Expression to Control Mitosis. Oncotarget, 8, 49409-49420.[CrossRef] [PubMed]
|
|
[20]
|
Do, D.V., Ueda, J., Messerschmidt, D.M., Lorthongpanich, C., Zhou, Y., Feng, B., et al. (2013) A Genetic and Developmental Pathway from STAT3 to the OCT4-NANOG Circuit Is Essential for Maintenance of ICM Lineages in Vivo. Genes & Development, 27, 1378-1390.[CrossRef] [PubMed]
|
|
[21]
|
Li, A., Peng, R., Sun, Y., Liu, H., Peng, H. and Zhang, Z. (2018) LincRNA 1700020I14Rik Alleviates Cell Proliferation and Fibrosis in Diabetic Nephropathy via miR-34a-5p/Sirt1/HIF-1α Signaling. Cell Death & Disease, 9, Article No. 461.[CrossRef] [PubMed]
|
|
[22]
|
Zhang, C., Yang, H., Li, Y., Huo, P. and Ma, P. (2020) LNCRNA OIP5-AS1 Regulates Oxidative Low-Density Lipoprotein-Mediated Endothelial Cell Injury via miR-320a/LOX1 Axis. Molecular and Cellular Biochemistry, 467, 15-25.[CrossRef] [PubMed]
|
|
[23]
|
Xu, J., Chen, Z., Fang, Z., Chen, S., Guo, Y., Liu, X., et al. (2021) Long Non-Coding RNA OIP5-AS1 Promotes the Progression of Esophageal Cancer by Regulating miR-30a/VOPP1 Expression. Oncology Letters, 22, Article No. 651.[CrossRef] [PubMed]
|
|
[24]
|
Zhao, Y., Chen, M., Lian, D., Li, Y., Li, Y., Wang, J., et al. (2019) Non-Coding RNA Regulates the Myogenesis of Skeletal Muscle Satellite Cells, Injury Repair and Diseases. Cells, 8, Article 988.[CrossRef] [PubMed]
|
|
[25]
|
Yang, J., Chang, M., Tsitsipatis, D., Yang, X., Martindale, J.L., Munk, R., et al. (2022) LncRNA OIP5-AS1-Directed miR-7 Degradation Promotes MYMX Production during Human Myogenesis. Nucleic Acids Research, 50, 7115-7133.[CrossRef] [PubMed]
|
|
[26]
|
Yang, J., Chang, M., Pandey, P.R., Tsitsipatis, D., Yang, X., Martindale, J.L., et al. (2020) Interaction of OIP5-AS1 with MEF2C mRNA Promotes Myogenic Gene Expression. Nucleic Acids Research, 48, 12943-12956.[CrossRef] [PubMed]
|
|
[27]
|
Kleaveland, B., Shi, C.Y., Stefano, J. and Bartel, D.P. (2018) A Network of Noncoding Regulatory RNAs Acts in the Mammalian Brain. Cell, 174, 350-362.e17.[CrossRef] [PubMed]
|
|
[28]
|
Wang, P., Wang, Z., Zhang, M., Wu, Q. and Shi, F. (2021) Lnc-OIP5-AS1 Exacerbates Aorta Wall Injury during the Development of Aortic Dissection through Upregulating TUB via Sponging miR-143-3p. Life Sciences, 271, Article ID: 119199.[CrossRef] [PubMed]
|
|
[29]
|
Zhang, J., Zhao, T., Tian, L. and Li, Y. (2019) LncRNA OIP5-AS1 Promotes the Proliferation of Hemangioma Vascular Endothelial Cells via Regulating miR-195-5p/NOB1 Axis. Frontiers in Pharmacology, 10, Article 449.[CrossRef] [PubMed]
|
|
[30]
|
Barros Ferreira, L., Ashander, L.M., Appukuttan, B., Ma, Y., Williams, K.A. and Smith, J.R. (2022) Expression of Long Non-Coding RNAs in Activated Human Retinal Vascular Endothelial Cells. Ocular Immunology and Inflammation, 31, 1813-1818.[CrossRef] [PubMed]
|
|
[31]
|
Zhao, M., Yang, Y., Li, J., Lu, M. and Wu, Y. (2021) Silencing of OIP5-AS1 Protects Endothelial Cells from OX-LDL-Triggered Injury by Regulating KLF5 Expression via Sponging miR-135a-5p. Frontiers in Cardiovascular Medicine, 8, Article 596506.[CrossRef] [PubMed]
|
|
[32]
|
Xie, Y., She, Z., Li, R., et al. (2024) H3K27 Acetylation Promotes lncRNA OIP5-AS1 Transcription and Induces Apoptosis of Nasal Epithelial Cells in Allergic Rhinitis through Up-Regulation of TLR4. Chinese Journal of Cellular and Molecular Immunology, 40, 419-427. (In Chinese)
|
|
[33]
|
Liu, Y., Zheng, Y., Wei, C. and Cai, X. (2024) DMRT3-Mediated LncRNA OIP5-AS1 Promotes the Pyroptosis of Bronchial Epithelial Cells by Binding with EIF4A3 to Enhance YAP mRNA Stability. Immunologic Research, 72, 1365-1383.[CrossRef] [PubMed]
|
|
[34]
|
Yu, H., Li, T., Liu, J., Hu, F., Yu, L. and Wang, Y. (2026) OIP5-AS1/miR-223-3p Provides Potential Biomarkers for Chronic Periodontitis and Its Regulatory Role in Inflammatory Responses. Scientific Reports, 16, Article No. 916.[CrossRef]
|
|
[35]
|
Xie, R., Liu, L., Lu, X., He, C., Yao, H. and Li, G. (2024) N6-Methyladenosine Modification of OIP5-AS1 Promotes Glycolysis, Tumorigenesis, and Metastasis of Gastric Cancer by Inhibiting Trim21-Mediated hnRNPA1 Ubiquitination and Degradation. Gastric Cancer, 27, 49-71.[CrossRef] [PubMed]
|
|
[36]
|
Wang, Y., Lin, C. and Liu, Y. (2022) Molecular Mechanism of miR-34b-5p and RNA Binding Protein Hur Binding to LncRNA OIP5-AS1 in Colon Cancer Cells. Cancer Gene Therapy, 29, 612-624.[CrossRef] [PubMed]
|
|
[37]
|
Qian, C., Xia, M., Yang, X., Chen, P. and Ye, Q. (2021) Long Noncoding RNAs in the Progression of Atherosclerosis: An Integrated Analysis Based on Competing Endogenous RNA Theory. DNA and Cell Biology, 40, 283-292.[CrossRef] [PubMed]
|
|
[38]
|
Cao, K., Zhang, W. and Li, L. (2026) The Effect of LncRNA OIP5-AS1 on Hypoxia/Reoxygenation-Induced Cardiomyocyte Injury by Targeting miR-126-5p/TRAF3 Axis. Chinese Journal of Cell Biology, 48, 727-736. (In Chinese)
|
|
[39]
|
Cai, X., Huang, L., Zhu, Y. and Huang, Y. (2020) LncRNA OIP5AS1 Aggravates House Dust Mite-Induced Inflammatory Responses in Human Bronchial Epithelial Cells via the miR-143-3p/HMGB1 Axis. Molecular Medicine Reports, 22, 4509-4518.[CrossRef] [PubMed]
|
|
[40]
|
Singh, V., Kaur, R., Kumari, P., Pasricha, C. and Singh, R. (2023) ICAM-1 and VCAM-1: Gatekeepers in Various Inflammatory and Cardiovascular Disorders. Clinica Chimica Acta, 548, Article ID: 117487.[CrossRef] [PubMed]
|
|
[41]
|
Jia, W., Liu, J., Tian, X., Jiang, P., Cheng, Z. and Meng, C. (2022) Correction to: MircoRNA-126-5p Inhibits Apoptosis of Endothelial Cell in Vascular Arterial Walls via NF-κB/PI3K/AKT/mTOR Signaling Pathway in Atherosclerosis. Journal of Molecular Histology, 53, 869-869.[CrossRef] [PubMed]
|
|
[42]
|
Yin, Z., Dong, J., Meng, Y., Yang, Z., Zhao, C. and Wu, Q. (2025) Dysregulation of lncRNA OIP5-AS1 Participants in the Progression of Diabetic Retinopathy and Affects the Proliferation in Retinal Vascular Endothelial Cell. Journal of Diabetes Investigation, 16, 1993-2004.[CrossRef]
|
|
[43]
|
Zhu, X.N. (2024) The Role and Mechanism of OIP5-AS1 in Nerve Injury after Cerebral Ischemia-Reperfusion. Master’s Thesis, Soochow University.
|
|
[44]
|
Chen, Y., Liu, W., Chen, M., Sun, Q., Chen, H. and Li, Y. (2021) Up-Regulating LncRNA OIP5-AS1 Protects Neuron Injury against Cerebral Hypoxia-Ischemia Induced Inflammation and Oxidative Stress in Microglia/Macrophage through Activating CTRP3 via Sponging miR-186-5p. International Immunopharmacology, 92, Article ID: 107339.[CrossRef] [PubMed]
|
|
[45]
|
Peng, D., Lan, C., Dong, L., Jiang, M., Xiao, H., D’Amato, R.J., et al. (2022) Anti-Angiogenic Properties of MicroRNA-29a in Preclinical Ocular Models. Proceedings of the National Academy of Sciences of the United States of America, 119, e2204795119.[CrossRef] [PubMed]
|
|
[46]
|
Zhang, Y., Han, L., Ning, Q., Zhang, X., Zhang, M., Peng, J., et al. (2025) Gastrodin Attenuates Hypercholesterolaemia through Regulating the PCSK9/LDLR Signalling Pathway by Suppressing HNF-1α and Activating FoxO3a. Phytomedicine, 142, Article ID: 156778.[CrossRef] [PubMed]
|
|
[47]
|
Liu, Z., Wang, M., Ding, X., Tian, J., Sun, D., Gao, X., et al. (2024) Exploration the Effective Components of Gastrodia Elata in Improving Cerebral Ischemia Reperfusion Injury Based on “Spectrum-Effect” Correlation and Zebrafish Verification Experiment. Phytomedicine, 135, Article ID: 156211.[CrossRef] [PubMed]
|
|
[48]
|
Buchroithner, B., Mayr, S., Hauser, F., Priglinger, E., Stangl, H., Santa-Maria, A.R., et al. (2021) Dual Channel Microfluidics for Mimicking the Blood-Brain Barrier. ACS Nano, 15, 2984-2993.[CrossRef] [PubMed]
|
|
[49]
|
Baek, N., Choi, S.Y., Park, J.K., Cho, S., Ahn, E., Jeon, S.G., et al. (1999) Isolation and Identification of Succinic Semialdehyde Dehydrogenase Inhibitory Compound from the Rhizome Ofgastrodia Elata Blume. Archives of Pharmacal Research, 22, 219-224.[CrossRef] [PubMed]
|
|
[50]
|
Xiao, G., Tang, R., Yang, N. and Chen, Y. (2023) Review on Pharmacological Effects of Gastrodin. Archives of Pharmacal Research, 46, 744-770.[CrossRef] [PubMed]
|
|
[51]
|
Zhang, L., Lan, M., Chen, H., Ward, R., Zhao, Y., Guo, J., et al. (2024) Activation of the Melatonin Receptor MT1 by the Natural Product Gastrodin to Promote Sleep. Journal of Pineal Research, 76, e70016.[CrossRef] [PubMed]
|
|
[52]
|
He, X., Chen, X., Yang, Y., Gu, J., Xie, Y., Liu, Y., et al. (2024) The Role of Gastrodin in the Management of CNS-Related Diseases: Underlying Mechanisms to Therapeutic Perspectives. Phytotherapy Research, 38, 5107-5133.[CrossRef] [PubMed]
|
|
[53]
|
Chen, L., Lv, Y., Wu, H., Wang, Y., Xu, Z., Liu, G., et al. (2024) Gastrodin Exerts Perioperative Myocardial Protection by Improving Mitophagy through the PINK1/Parkin Pathway to Reduce Myocardial Ischemia-Reperfusion Injury. Phytomedicine, 133, Article ID: 155900.[CrossRef] [PubMed]
|
|
[54]
|
Jou, S., Tsai, C., Fang, C., Yi, P. and Chang, F. (2021) Effects of N6-(4-Hydroxybenzyl) Adenine Riboside in Stress‐Induced Insomnia in Rodents. Journal of Sleep Research, 30, e13156.[CrossRef] [PubMed]
|
|
[55]
|
Li, Y., Yu, X., Liu, Y., Miao, S., Liu, X., Wang, Z., et al. (2025) Pharmacodynamic Components and Molecular Mechanism of Gastrodia Elata Blume in Treating Hypertension: Absorbed Components, Network Pharmacology Analysis, Molecular Docking and in Vivo Experimental Verification. Journal of Ethnopharmacology, 345, Article ID: 119583.[CrossRef] [PubMed]
|
|
[56]
|
Cui, G.Q., Zha, Y.F. and Wang, K.Y. (2014) Comparison of HPLC Fingerprints of Stems, Branches and Leaves of Uncaria rhynchophylla from Guizhou Province. Chinese Journal of Experimental Traditional Medical Formulae, 20, 120-123.
|
|
[57]
|
Zhang, Z., Zhang, W., Kang, F., Ip, F.C.F., Ip, N.Y. and Tong, R. (2019) Asymmetric Total Syntheses of Rhynchophylline and Isorhynchophylline. The Journal of Organic Chemistry, 84, 11359-11365.[CrossRef] [PubMed]
|
|
[58]
|
Zhang, Y., Sun, J., Zhu, S., Xu, T., Lu, J., Han, H., et al. (2016) The Role of Rhynchophylline in Alleviating Early Brain Injury Following Subarachnoid Hemorrhage in Rats. Brain Research, 1631, 92-100.[CrossRef] [PubMed]
|
|
[59]
|
Li, J., Chen, B., Li, Z., Wang, Y., Alberts, I., Sun, K., et al. (2024) Rhynchophylline Alleviates Hyperactivity and Cognitive Flexibility Impairment Associated with Inhibition of Inflammatory Responses in Mice That Partly Lack the Dopamine Transporter Protein. Brain and Behavior, 14, e70121.[CrossRef] [PubMed]
|
|
[60]
|
Wang, L., Wang, Y., Chen, Y., Liu, B., Chou, D., Bian, X., et al. (2023) Rhynchophylline Ameliorates Cerebral Ischemia by Improving the Synaptic Plasticity in a Middle Cerebral Artery Occlusion Induced Stroke Model. European Journal of Pharmacology, 940, Article ID: 175390.[CrossRef] [PubMed]
|
|
[61]
|
Yang, D., Wei, J., Lin, W., Feng, L. and Tuo, Q. (2026) The Role of Long Non-Coding RNA in Atherosclerosis: Mechanism and Intervention of Traditional Chinese Medicine. International Journal of Molecular Sciences, 27, Article 3194.[CrossRef]
|
|
[62]
|
Zhang, S., Wang, Y., Li, H., Zhi, H., Zhai, X., Ruan, W., et al. (2024) Tongmai Zhuke Decoction Restrains the Inflammatory Reaction of Macrophages for Carotid Artery Atherosclerosis by Up-Regulating LincRNA-Cox2. Biotechnology and Genetic Engineering Reviews, 40, 1758-1773.[CrossRef] [PubMed]
|
|
[63]
|
Song, Z., Li, F., He, C., Yu, J., Li, P., Li, Z., et al. (2020) In-Depth Transcriptomic Analyses of LncRNA and mRNA Expression in the Hippocampus of APP/PS1 Mice by Danggui-Shaoyao-San. Aging, 12, 23945-23959.[CrossRef] [PubMed]
|
|
[64]
|
Chen, D., Liu, J., Meng, J., Li, D., Zhao, P., Duan, Y., et al. (2020) Integrative Analysis of Long Non-Coding RNAs (lncRNAs), miRNAs, and mRNA-Associated ceRNA Network in Lung Tissue of Aging Mice and Changes after Treatment with Codonopsis pilosula. Medical Science Monitor, 26, e921580.[CrossRef] [PubMed]
|
|
[65]
|
Chen, G., He, Q., Xiao, Q., Ai, J., Qin, Z., Zhong, Z., et al. (2025) The Role of Chinese Medicines in Targeting Non-Coding RNAs to Overcome Cancer Drug Resistance: Mechanisms and Clinical Translation Challenges. Pharmacological Research, 222, Article ID: 108049.[CrossRef]
|
|
[66]
|
Xu, C., Wang, Z., Liu, Y., Wei, B., Liu, X., Duan, K., et al. (2023) Extracellular Vesicles Derived from Bone Marrow Mesenchymal Stem Cells Loaded on Magnetic Nanoparticles Delay the Progression of Diabetic Osteoporosis via Delivery of miR-150-5p. Cell Biology and Toxicology, 39, 1257-1274.[CrossRef] [PubMed]
|
|
[67]
|
Qiu, C., Liu, Z., Zhang, F., Zhang, L., Li, F., Liu, S., et al. (2019) Post-Stroke Gastrodin Treatment Ameliorates Ischemic Injury and Increases Neurogenesis and Restores the Wnt/β-Catenin Signaling in Focal Cerebral Ischemia in Mice. Brain Research, 1712, 7-15.[CrossRef] [PubMed]
|
|
[68]
|
Yao, Y., Bian, L., Yang, P., Sui, Y., Li, R., Chen, Y., et al. (2019) Gastrodin Attenuates Proliferation and Inflammatory Responses in Activated Microglia through Wnt/β-Catenin Signaling Pathway. Brain Research, 1717, 190-203.[CrossRef] [PubMed]
|
|
[69]
|
Liu, B., Li, F., Xu, Y., Wu, Q. and Shi, J. (2023) Gastrodin Improves Cognitive Dysfunction in REM Sleep-Deprived Rats by Regulating TLR4/NF-κB and Wnt/β-Catenin Signaling Pathways. Brain Sciences, 13, Article 179.[CrossRef] [PubMed]
|
|
[70]
|
Sun, Y., Jiang, H., Pan, L., Han, Y., Chen, Y., Jiang, Y., et al. (2023) LncRNA OIP5-AS1/miR-410-3p/Wnt7b Axis Promotes the Proliferation of Rheumatoid Arthritis Fibroblast-Like Synoviocytes via Regulating the Wnt/β-Catenin Pathway. Autoimmunity, 56, Article ID: 2189136.[CrossRef] [PubMed]
|