All Stories

  1. Exosomes‐transferred LINC00668 Contributes to Thrombosis by Promoting NETs Formation in Inflammatory Bowel Disease
  2. circACTA2 inhibits NLRP3 inflammasome-mediated inflammation via interacting with NF-κB in vascular smooth muscle cells
  3. SF3B4 promotes Twist1 expression and clear cell renal cell carcinoma progression by facilitating the export of KLF 16 mRNA from the nucleus to the cytoplasm
  4. KLF4-PFKFB3-driven glycolysis is essential for phenotypic switching of vascular smooth muscle cells
  5. Disturbing NLRP3 acetylation and inflammasome assembly inhibits androgen receptor‐promoted inflammatory responses and prostate cancer progression
  6. miR-155 down-regulation protects the heart from hypoxic damage by activating fructose metabolism in cardiac fibroblasts
  7. 17β-Estradiol Inhibits Proliferation and Oxidative Stress in Vascular Smooth Muscle Cells by Upregulating BHLHE40 Expression
  8. circACTA2 mediates Ang II-induced VSMC senescence by modulation of the interaction of ILF3 with CDK4 mRNA
  9. Downregulation of lncRNA MIR181A2HG by high glucose impairs vascular endothelial cell proliferation and migration through the dysregulation of the miRNAs/AKT2 axis
  10. CDK13 upregulation-induced formation of the positive feedback loop among circCDK13, miR-212-5p/miR-449a and E2F5 contributes to prostate carcinogenesis
  11. Salvia miltiorrhiza bunge exerts anti-oxidative effects through inhibiting KLF10 expression in vascular smooth muscle cells exposed to high glucose
  12. Salvia miltiorrhiza-Derived Sal-miR-58 Induces Autophagy and Attenuates Inflammation in Vascular Smooth Muscle Cells
  13. Klf5 down-regulation induces vascular senescence through eIF5a depletion and mitochondrial fission
  14. Tanshinone ⅡA inhibits VSMC inflammation and proliferation in vivo and in vitro by downregulating miR-712-5p expression
  15. NeuroD1 overexpression in spinal neurons accelerates axonal regeneration after sciatic nerve injury
  16. Salvia miltiorrhiza-derived miRNAs suppress vascular remodeling through regulating OTUD7B/KLF4/NMHC IIA axis
  17. CDK13 Upregulation-Induced Formation of the Positive Feedback Loop Among circCDK13, miR-212-5p/miR-449a and E2F5 Contributes to Prostate Carcinogenesis
  18. Morin Inhibits Proliferation and Induces Apoptosis by Modulating the miR-188-5p/PTEN/AKT Regulatory Pathway in CML Cells
  19. Salvianolic acid B inhibits Ang II-induced VSMC proliferation in vitro and intimal hyperplasia in vivo by downregulating miR-146a expression
  20. Ascorbic Acid Facilitates Neural Regeneration After Sciatic Nerve Crush Injury
  21. Dysregulation of p53-RBM25-mediated circAMOTL1L biogenesis contributes to prostate cancer progression through the circAMOTL1L-miR-193a-5p-Pcdha pathway
  22. Inhibition of RhoA-Subfamily GTPases Suppresses Schwann Cell Proliferation Through Regulating AKT Pathway Rather Than ROCK Pathway
  23. RhoA regulates Schwann cell differentiation through JNK pathway
  24. Regulatory crosstalk between KLF5, miR-29a and Fbw7/CDC4 cooperatively promotes atherosclerotic development
  25. Oxidative Stress Induces Neuronal Apoptosis Through Suppressing Transcription Factor EB Phosphorylation at Ser467
  26. Silencing of miR-193a-5p increases the chemosensitivity of prostate cancer cells to docetaxel
  27. iNOS-derived peroxynitrite mediates high glucose-induced inflammatory gene expression in vascular smooth muscle cells through promoting KLF5 expression and nitration
  28. A Novel Regulatory Mechanism of Smooth Muscle α-Actin Expression by NRG-1/circACTA2/miR-548f-5p Axis
  29. Exosome-Mediated miR-155 Transfer from Smooth Muscle Cells to Endothelial Cells Induces Endothelial Injury and Promotes Atherosclerosis
  30. Tissue engineering with peripheral blood-derived mesenchymal stem cells promotes the regeneration of injured peripheral nerves
  31. Inhibition of KLF5–Myo9b–RhoA Pathway–Mediated Podosome Formation in Macrophages Ameliorates Abdominal Aortic Aneurysm
  32. 1, 25(OH) 2 D 3 -induced interaction of vitamin D receptor with p50 subunit of NF-κB suppresses the interaction between KLF5 and p50, contributing to inhibition of LPS-induced macrophage proliferation
  33. miR-29a regulates vascular neointimal hyperplasia by targeting YY1
  34. SUMOylation of KLF4 acts as a switch in transcriptional programs that control VSMC proliferation
  35. Lentivirus-Mediated RNA Interference Targeting RhoA Slacks the Migration, Proliferation, and Myelin Formation of Schwann Cells
  36. Osteogenesis of peripheral blood mesenchymal stem cells in self assembling peptide nanofiber for healing critical size calvarial bony defect
  37. KLF4 mediates the link between TGF-β1-induced gene transcription and H3 acetylation in vascular smooth muscle cells
  38. TMEM16A and Myocardin Form a Positive Feedback Loop That Is Disrupted by KLF5 During Ang II–Induced Vascular Remodeling
  39. miR-155-dependent regulation of mammalian sterile 20-like kinase 2 (MST2) coordinates inflammation, oxidative stress and proliferation in vascular smooth muscle cells
  40. Tongxinluo (TXL), a Traditional Chinese Medicinal Compound, Improves Endothelial Function After Chronic Hypoxia Both In Vivo and In Vitro
  41. miR-200c-SUMOylated KLF4 feedback loop acts as a switch in transcriptional programs that control VSMC proliferation
  42. Chinese medicine Tongxinluo increases tight junction protein levels by inducing KLF5 expression in microvascular endothelial cells
  43. A rare self-injurious case of multiple penetrating brain injury by nails in a young patient with depressive disorder
  44. Vascular calcification is coupled with phenotypic conversion of vascular smooth muscle cells through Klf5-mediated transactivation of the Runx2 promoter
  45. Tongxinluo inhibits vascular inflammation and neointimal hyperplasia through blockade of the positive feedback loop between miR-155 and TNF-α
  46. A novel artificial nerve graft for repairing long-distance sciatic nerve defects: a self-assembling peptide nanofiber scaffold-containing poly(lactic-co-glycolic acid) conduit
  47. PPAR-γ agonist stabilizes KLF4 protein via activating Akt signaling and reducing KLF4 ubiquitination
  48. Synthetic retinoid Am80 up-regulates apelin expression by promoting interaction of RARα with KLF5 and Sp1 in vascular smooth muscle cells
  49. Localization and function of KLF4 in cytoplasm of vascular smooth muscle cell
  50. Novel insight into Y‐box binding protein 1 in the regulation of vascular smooth muscle cell proliferation through targeting GC box‐dependent genes
  51. KLF5 and hhLIM cooperatively promote proliferation of vascular smooth muscle cells
  52. TGF-β1 Downregulates AT1 Receptor Expression via PKC-δ-Mediated Sp1 Dissociation From KLF4 and Smad-Mediated PPAR-γ Association With KLF4
  53. Retinoic Acid Receptor α Mediates All-trans-retinoic Acid-induced Klf4 Gene Expression by Regulating Klf4 Promoter Activity in Vascular Smooth Muscle Cells
  54. Erratum: Celecoxib and acetylbritannilactone interact synergistically to suppress breast cancer cell growth via COX-2-dependent and -independent mechanisms
  55. Acetylbritannilactone suppresses growth via upregulation of kr�ppel-like transcription factor 4 expression in HT-29 colorectal cancer cells
  56. Erratum: Baicalin inhibits PDGF-BB-stimulated vascular smooth muscle cell proliferation through suppressing PDGFRβ-ERK signaling and increase in p27 accumulation and prevents injury-induced neointimal hyperplasia
  57. Celecoxib and acetylbritannilactone interact synergistically to suppress breast cancer cell growth via COX-2-dependent and -independent mechanisms
  58. Acetylbritannilactone induces G1 arrest and apoptosis in vascular smooth muscle cells
  59. Flavonoids fromInula britannicareduces oxidative stress through inhibiting expression and phosphorylation of p47phoxin VSMCs
  60. HDAC2 phosphorylation-dependent Klf5 deacetylation and RARα acetylation induced by RAR agonist switch the transcription regulatory programs of p21 in VSMCs
  61. ATRA activates and PDGF-BB represses the SM22α promoter through KLF4 binding to, or dissociating from, its cis-DNA elements
  62. miR‐146a and Krüppel‐like factor 4 form a feedback loop to participate in vascular smooth muscle cell proliferation
  63. Krüppel-like factor 4 interacts with p300 to activate mitofusin 2 gene expression induced by all-trans retinoic acid in VSMCs
  64. Baicalin inhibits PDGF-BB-stimulated vascular smooth muscle cell proliferation through suppressing PDGFRβ-ERK signaling and increase in p27 accumulation and prevents injury-induced neointimal hyperplasia
  65. Krüppel-like Factor 4 Promotes Differentiation by Transforming Growth Factor-β Receptor-mediated Smad and p38 MAPK Signaling in Vascular Smooth Muscle Cells
  66. Blockade of the Ras–Extracellular Signal–Regulated Kinase 1/2 Pathway Is Involved in Smooth Muscle 22α–Mediated Suppression of Vascular Smooth Muscle Cell Proliferation and Neointima Hyperplasia
  67. ABL-N-induced apoptosis in human breast cancer cells is partially mediated by c-Jun NH2-terminal kinase activation
  68. Role of Krüppel-like factor 4 in phenotypic switching and proliferation of vascular smooth muscle cells
  69. Krüppel-like factor (KLF) 5 mediates cyclin D1 expression and cell proliferation via interaction with c-Jun in Ang II-induced VSMCs
  70. Polymorphisms of the ICAM-1 exon 6 (E469K) are associated with differentiation of colorectal cancer
  71. Flavonoids from Inula britannica L. inhibit injury-induced neointimal formation by suppressing oxidative-stress generation
  72. All-trans retinoic acid increases KLF4 acetylation by inducing HDAC2 phosphorylation and its dissociation from KLF4 in vascular smooth muscle cells
  73. Krüppel-like Factor 4 Inhibits Proliferation by Platelet-derived Growth Factor Receptor β-mediated, Not by Retinoic Acid Receptor α-mediated, Phosphatidylinositol 3-Kinase and ERK Signaling in Vascular Smooth Muscle Cells
  74. Angiotensin II Stimulates KLF5 Phosphorylation and its Interaction with c-Jun Leading to Suppression of p21 Expression in Vascular Smooth Muscle Cells
  75. Nuclear actin and actin-binding proteins in the regulation of transcription and gene expression
  76. Synthetic retinoid Am80 inhibits interaction of KLF5 with RARα through inducing KLF5 dephosphorylation mediated by the PI3K/Akt signaling in vascular smooth muscle cells
  77. 1,6-O,O-diacetylbritannilactones inhibits IκB kinase β-dependent NF-κB activation
  78. Smooth muscle 22 alpha maintains the differentiated phenotype of vascular smooth muscle cells by inducing filamentous actin bundling
  79. Synergistic co-operation of signal transducer and activator of transcription 5B with activator protein 1 in angiotensin II-induced angiotensinogen gene activation in vascular smooth muscle cells
  80. Kruppel-like Factor 4 is Required for the Expression of Vascular Smooth Muscle Cell Differentiation Marker Genes Induced by All-Trans Retinoic Acid
  81. hhLIM is a novel F‐actin binding protein involved in actin cytoskeleton remodeling
  82. Human heart LIM protein activates atrial-natriuretic-factor gene expression by interacting with the cardiac-restricted transcription factor Nkx2.5
  83. Roscovitine inhibits ERK1/2 activation induced by angiotensin II in vascular smooth muscle cells
  84. Acetylbritannilactone suppresses lipopolysaccharide-induced vascular smooth muscle cell inflammatory response
  85. Acetylbritannilactone Inhibits Neointimal Hyperplasia after Balloon Injury of Rat Artery by Suppressing Nuclear Factor-κB Activation
  86. Blockade of integrin β3–FAK signaling pathway activated by osteopontin inhibits neointimal formation after balloon injury
  87. Livin/ML-IAP as a new target for cancer treatment
  88. Osteopontin stimulates vascular smooth muscle cell migration by inducing FAK phosphorylation and ILK dephosphorylation
  89. Intermedin1–53 protects the heart against isoproterenol-induced ischemic injury in rats
  90. Hyperplasia suppressor gene associates with smooth muscle α-actin and is involved in the redifferentiation of vascular smooth muscle cells
  91. Serum deprivation results in redifferentiation of human umbilical vascular smooth muscle cells
  92. hhLIM is involved in cardiomyogenesis of embryonic stem cells
  93. Expression of HSG is essential for mouse blastocyst formation
  94. Matrix metalloproteinase-2 and tissue inhibitor of metallo-proteinase-2 in colorectal carcinoma invasion and metastasis
  95. Application of genomics and proteomics in study of traditional Chinese medicine
  96. hhLIM protein is involved in cardiac hypertrophy
  97. Acetylbritannilatone suppresses NO and PGE2 synthesis in RAW 264.7 macrophages through the inhibition of iNOS and COX-2 gene expression
  98. Triterpenoids fromSchisandra henryi with cytotoxic effect on leukemia and hela cellsin vitro
  99. Supplementing Qi and activating blood circulation in gene regulation of vascular smooth muscle cells
  100. Erratum to “Comparison of gene expression patterns and migration capability at quiescent and proliferating vascular smooth muscle cells stimulated by cytokines”
  101. Comparison of gene expression patterns and migration capability at quiescent and proliferating vascular smooth muscle cells stimulated by cytokines
  102. 10.1007/s10541-008-3018-1
  103. Mitochondrial DNA variation in cattle of South China: origin and introgression
  104. Two -acting regulatory sequences in the peroxisome proliferator-responsive enhancer region of rat acyl-CoA oxidase gene
  105. Molecular analysis of human acatalasemia