Search

Your search keyword '"Yokoi, Hideki"' showing total 205 results

Search Constraints

Start Over You searched for: Author "Yokoi, Hideki" Remove constraint Author: "Yokoi, Hideki" Database Unpaywall Remove constraint Database: Unpaywall
205 results on '"Yokoi, Hideki"'

Search Results

4. Dual deletion of guanylyl cyclase-A and p38 mitogen-activated protein kinase in podocytes with aldosterone administration causes glomerular intra-capillary thrombi

5. Matrix metalloproteinase-10 deficiency has protective effects against peritoneal inflammation and fibrosis via transcription factor NFκΒ pathway inhibition

7. Sacubitril/valsartan ameliorates renal tubulointerstitial injury through increasing renal plasma flow in a mouse model of type 2 diabetes with aldosterone excess

8. Supplementary Figure 3 from CTGF Mediates Tumor–Stroma Interactions between Hepatoma Cells and Hepatic Stellate Cells to Accelerate HCC Progression

9. Supplementary Figure 5 from CTGF Mediates Tumor–Stroma Interactions between Hepatoma Cells and Hepatic Stellate Cells to Accelerate HCC Progression

10. Supplementary Figure 6 from CTGF Mediates Tumor–Stroma Interactions between Hepatoma Cells and Hepatic Stellate Cells to Accelerate HCC Progression

11. Supplementary Figure 5 from CTGF Mediates Tumor–Stroma Interactions between Hepatoma Cells and Hepatic Stellate Cells to Accelerate HCC Progression

12. Supplementary materials from CTGF Mediates Tumor–Stroma Interactions between Hepatoma Cells and Hepatic Stellate Cells to Accelerate HCC Progression

13. Supplementary Figure 2 from CTGF Mediates Tumor–Stroma Interactions between Hepatoma Cells and Hepatic Stellate Cells to Accelerate HCC Progression

14. Supplementary Figure 1 from CTGF Mediates Tumor–Stroma Interactions between Hepatoma Cells and Hepatic Stellate Cells to Accelerate HCC Progression

15. Supplementary Figure 4 from CTGF Mediates Tumor–Stroma Interactions between Hepatoma Cells and Hepatic Stellate Cells to Accelerate HCC Progression

16. Supplementary Figure 3 from CTGF Mediates Tumor–Stroma Interactions between Hepatoma Cells and Hepatic Stellate Cells to Accelerate HCC Progression

17. Supplementary Figure 4 from CTGF Mediates Tumor–Stroma Interactions between Hepatoma Cells and Hepatic Stellate Cells to Accelerate HCC Progression

18. Supplementary materials from CTGF Mediates Tumor–Stroma Interactions between Hepatoma Cells and Hepatic Stellate Cells to Accelerate HCC Progression

19. Supplementary Figure 2 from CTGF Mediates Tumor–Stroma Interactions between Hepatoma Cells and Hepatic Stellate Cells to Accelerate HCC Progression

20. Supplementary Figure 1 from CTGF Mediates Tumor–Stroma Interactions between Hepatoma Cells and Hepatic Stellate Cells to Accelerate HCC Progression

21. Supplementary Figure 6 from CTGF Mediates Tumor–Stroma Interactions between Hepatoma Cells and Hepatic Stellate Cells to Accelerate HCC Progression

27. STAT3 is Activated by CTGF-mediated Tumor-stroma Cross Talk to Promote HCC Progression

28. PS-BPB05-9: DUAL DELETION OF GUANYLYL CYCLASE-A AND P38 MAPK IN PODOCYTES WITH ALDOSTERONE ADMINISTRATION CAUSES GLOMERULAR INTRACAPILLARY THROMBI

30. Genome-wide association study of the risk of chronic kidney disease and kidney-related traits in the Japanese population: J-Kidney-Biobank

31. Inhibition of mitochondrial fission protects podocytes from albumin-induced cell damage in diabetic kidney disease

38. Osteocrin ameliorates adriamycin nephropathy via p38 mitogen-activated protein kinase inhibition

39. Osteocrin, a bone-derived humoral factor, exerts a renoprotective role in ischemia–reperfusion injury in mice

41. Peritoneal Dialysis Guidelines 2019 Part 1 (Position paper of the Japanese Society for Dialysis Therapy)

42. Dysregulation of PI3K and Hippo signaling pathways synergistically induces chronic pancreatitis via CTGF upregulation

43. Monoclonal gammopathy of renal significance (MGRS)-related AL amyloidosis complicated by amyloid myopathy: a case report

44. MAGI-2 orchestrates the localization of backbone proteins in the slit diaphragm of podocytes

45. Proteolytic cleavage of Podocin by Matriptase exacerbates podocyte injury

46. Intensified hemodialysis for complicated pregnancy in a primigravida with advanced maternal age: a case report with literature review focusing on appropriate hemodialysis management during pregnancy

47. Classification of glomerular pathological findings using deep learning and nephrologist–AI collective intelligence approach

49. Transcription factor MafB in podocytes protects against the development of focal segmental glomerulosclerosis

Catalog

Books, media, physical & digital resources