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1. Using Zebrafish to Study Multiciliated Cell Development and Disease States.

2. Corticosteroids alter kidney development and increase glomerular filtration rate in larval zebrafish (Danio rerio).

3. Characteristics of the Erythron of the Head Kidney and Circulating Blood of the European Flounder (Platichthys flesus) throughout Its Annual Cycle.

4. Percentage of Leukocytes in Peripheral Blood, Head Kidney, and Spleen of the Abramis brama (Cyprinidae) Bream of the Upper Volga Reservoirs.

5. Using Zebrafish to Study Multiciliated Cell Development and Disease States

6. A Comparative Study of the Leukocyte Formula of the Peripheral Blood, Head Kidney and Spleen of the Bream Abramis brama (Cyprinidae) in the Middle Volga Reservoirs.

7. Acute exposure of early-life stage zebrafish (Danio rerio) to Deepwater Horizon crude oil impairs glomerular filtration and renal fluid clearance capacity.

8. Appropriate Amounts and Activity of the Wilms' Tumor Suppressor Gene, wt1 , Are Required for Normal Pronephros Development of Xenopus Embryos.

9. Destabilization Processes in the Hemopoietic Organs of Goldfish as a Consequence of the Survival Strategy of Cestode Ligula (Digramma) interrupta (Cestoda: Pseudophyllidea).

10. Evolutionary Transition in the Regulation of Vertebrate Pronephros Development: A New Role for Retinoic Acid.

11. Corpuscles of Stannius development requires FGF signaling.

12. Advanced in vivo imaging of the interactions between vascular and renal development in the zebrafish pronephric kidney

14. Appropriate Amounts and Activity of the Wilms’ Tumor Suppressor Gene, wt1, Are Required for Normal Pronephros Development of Xenopus Embryos

15. Methods to generate and evaluate zebrafish models of human kidney diseases.

16. Chibby functions in Xenopus ciliary assembly, embryonic development, and the regulation of gene expression

17. Role of OCRL1 in zebrafish early development and kidney function

18. Single-cell mRNA profiling reveals changes in solute carrier expression and suggests a metabolic switch during zebrafish pronephros development.

19. Evolutionary Transition in the Regulation of Vertebrate Pronephros Development: A New Role for Retinoic Acid

20. In vivo High-Content Screening in Zebrafish for Developmental Nephrotoxicity of Approved Drugs

21. EF-hand domain containing 2 (Efhc2) is crucial for distal segmentation of pronephros in zebrafish

23. Zebrafish Paralogs brd2a and brd2b Are Needed for Proper Circulatory, Excretory and Central Nervous System Formation and Act as Genetic Antagonists during Development

24. A beautiful, complex simplicity: the origins of nephron segmentation uncovered by single-cell sequencing of the pronephros

25. Senescence gives insights into the morphogenetic evolution of anamniotes

26. Clonotypic IgH Response against Systemic Viral infection in Pronephros and Spleen of a Teleost Fish

27. Dynamin Binding Protein Is Required for Xenopus laevis Kidney Development

28. Prostaglandin signaling regulates renal multiciliated cell specification and maturation.

29. Dynamin Binding Protein Is Required for Xenopus laevis Kidney Development.

30. Deficiency of lrp4 in zebrafish and human LRP4 mutation induce aberrant activation of Jagged-Notch signaling in fin and limb development.

31. Gulo Acts as a de novo Marker for Pronephric Tubules in Xenopus laevis

32. Loss of vhl in the zebrafish pronephros recapitulates early stages of human clear cell renal cell carcinoma

33. A Multiparametric Assay Platform for Simultaneous In Vivo Assessment of Pronephric Morphology, Renal Function and Heart Rate in Larval Zebrafish

34. ppargc1a controls nephron segmentation during zebrafish embryonic kidney ontogeny

35. Nephron Patterning: Lessons from Xenopus, Zebrafish, and Mouse Studies

36. Genetic Renal Diseases: The Emerging Role of Zebrafish Models.

37. lrpap1 as a specific marker of proximal pronephric kidney tubuli in Xenopus laevis embryos.

38. The embryonic development of the pig excretory system.

39. Exploration of zebrafish larvae as an alternative whole-animal model for nephrotoxicity testing

40. Histone Deacetylases Cooperate with NF-κB to Support the Immediate Migratory Response after Zebrafish Pronephros Injury

41. Retinoic acid control of pax8 during renal specification of Xenopus pronephros involves hox and meis3

42. Single-cell mRNA profiling reveals changes in solute carrier expression and suggests a metabolic switch during zebrafish pronephros development

43. Illuminating a Dark Kinase: Structure-Guided Design, Synthesis, and Evaluation of a Potent Nek1 Inhibitor and Its Effects on the Embryonic Zebrafish Pronephros

44. The zebrafish kidney mutant zeppelin reveals that brca2/fancd1 is essential for pronephros development.

45. HAEMATOPOIETIC POTENTIAL OF TENCH (TINCA TINCA) PRONEPHROS IN RELATION TO AMBIENT TEMPERATURE AND RELATIVE CONDITION FACTOR.

46. Wnt8a expands the pool of embryonic kidney progenitors in zebrafish.

47. Xenopus: leaping forward in kidney organogenesis.

48. Pronephric tubule formation in zebrafish: morphogenesis and migration.

49. The tbx2a/b transcription factors direct pronephros segmentation and corpuscle of Stannius formation in zebrafish.

50. Pronephros and mesonephros characterization during the embryonic development of the giant South American river turtle, Podocnemis expansa (Podocnemididae: Testudines).

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