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Keyword [SCAP]
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1. Mechamisms Of Foam Cell Formation Caused By Dysfunction Of SCAP Under Inflammatory Stress
2. The Study Of The SREBPs
3. The Clinical Study About The Effect Of Tuina(Chinese Massage) On Curing Stable Coronary Angina Pectoris
4. Effect Of TNF-α On The SCAP-SREBP-1c Pathway Of Lipid Synthesis In A Model Of Hepatocyte Steatosis
5. The Related Research Of Sputum-Chingning On Efficiency And PCT Of SCAP Patients
6. The Related Research Of Sputum-Chingning On Efficiency And NO,TNF Of SCAP Patients
7. The Related Research Of Sputum-Chingning On Efficiency And SP Of SCAP Patients
8. The Related Research Of Sputum-Chingning On Efficiency And IL-6,IL-10 Of Scap Patients
9. Inflammation Stress Exacerbate The Disturbance Of Lipid Metabolism Via LDL Receptor Pathway In APOE/SRA/CD36 Knock Out Mice And The Molecular Mechanism
10. Preparation Of The Nanosized And Release-controlled RhBMP-7 Microsphere And Its Effect On Proliferation And Differentiation Of Pdlscs And SCAP.
11. The Clinical Analysis Of 20 Patients With MODS Caused By Severe Community Acquired Pneumonia
12. Using Three-dimensional Root End Tooth Papilla Regeneration Complex Pulp Tissue Stem Cell Aggregates And Dentin Matrix Fragments
13. Discussion From The SCAP / SREBP Signaling Pathways Of Lipid Metabolism Through Bitter Sour Tone Square Regulation Of Type 2 Diabetes Insulin Resistance Mechanism
14. The Effect Of SCAP Dysregulation On Cholesterol Metabollism Pathway
15. Molecular Mechanism Of Advanced Glycation End Products (AGEs) Mediated Renal Lipid Deposition In Diabetic Nephropathy
16. Influence Of Two Different Mineralization-Inducing Media On Osteo/Odontoblastic Differentiation Capacity Of Stem Cells From Apical Papilla
17. The Study Of The Effect And Mechanism Of Daxx Regulates Cholesterol Contents In HepG2Cells
18. The Clinical Analysis Of54Patients Caused By Severe Community Acquired Pneumonia
19. Comparative Analysis Of In Vitro Characteristics Of Stem Cells From Apical Papilla (SCAP) And Periodontal Ligament Stem Cells (PDLSCs)
20. Effects Of Assisted Reproductive Technologies On Mouse Growth And Blood Lipid Metabolism And Mechanism Involved
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