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Keyword [Myocardin]
Result: 21 - 40 | Page: 2 of 3
21. Isolation,Culture, And Identification Of Rats’adipose Derived Stem Cells (ADSCs) And Construction Of Lentiviral Vector Carrying Rat Myocardin Gene
22. Expression And Mechanism Of NF-κB P65and Myocardin In Uterine Leiomyoma
23. ERα Inhibits Uterine Smooth Muscle Cell Differentiation Induced By Myocardin
24. Effects Of Raloxifene On The Expression Of Proliferation-related Genes In Rats’ VSMCs
25. The Role Of PDGFBB Down-regulating Myocardin In Hypoxia-induced Phenotypic Modulation Of Rat CCSM Cells
26. Cooperation Of PDX-1 And MKL-1/Myocardin Promotes Insulin Transcription
27. Phenotypic Modulation Of Bladder Smooth Muscle In Diabetic Rats
28. Effects Of Estrogen On Growth And Smooth Muscle Differentiation Of Vascular Wall-resident CD34~+ Stem/ Progenitor Cells
29. Responses Of Adventitial CD34~+ Vascular Wall-resident Stem/Progenitor Cells And Smooth Muscle Cells To Carotid Injury
30. Study The Role Of Myocardin/miR-206/Connexin43 Pathway On Vascular Smooth Muscle Cell Proliferation And Atherosclerosis
31. The Transcriptional Regulation Of L-Ca2+ Channel Mediated By Myocardin
32. A Study On The Mechanism Of MiR-9-dependent Regulation Of MYOCD In PASMCs Phenotypic Modulation And Proliferation Induced By CBDL Rat Serum
33. Salvia Miltiorrhiza Inhibits The H2O2-induced Oxidative Damage On Myocardial Cells Via Activating The Expression Of Nrf2
34. Studies On Mechanisms Underlying The Cardiac Hypertrophy Induced By Myocardin And PKC?
35. Myocardin Gene Therapy Ameliorates Erectile Dysfunction In Bilateral Cavernous Nerve Injury Rats
36. Regulatory Mechanism Of SRFBP1 On Phenotypic Transition Of Vascular Smooth Muscle Cells
37. The Research On Myocardin Gene-modified ASCs Transplantation To Restore ED In Diabetic Rats
38. Myocardin Inhibits Atherosclerosis By Upregulating Abca1 Expression And The Regulatory Mechanism Of Mir-1192
39. Pivotal Role Of LncRNA-mhrt In CardiacHypertrophy And Its Underlyingmechanisms
40. Mechanistic Study Of The Regulatory Effect Of TEAD1 On Embryonic Cardiovascular Development Through Targeting Pitx2c And Myocardin
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