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541 results on '"Ependymoglial Cells metabolism"'

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1. Single-Cell Multiomics Profiling Reveals Heterogeneity of Müller Cells in the Oxygen-Induced Retinopathy Model.

2. Estrogen, via ESR2 receptor, prevents oxidative stress-induced Müller cell death and stimulates FGF2 production independently of NRF2, attenuating retinal degeneration.

3. The novel secretome ST266 activates Akt and protects against oxidative stress-mediated injury in human RPE and Müller cells.

4. Müller Cells Harboring Exosomal lncRNA OGRU Modulate Microglia Polarization in Diabetic Retinopathy by Serving as miRNA Sponges.

5. The Circadian Clock of Müller Glia Is Necessary for Retinal Homeostasis and Neuronal Survival.

6. Proteomic analysis of CD29+ Müller cells reveals metabolic reprogramming in rabbit myopia model.

7. Neuroinflammation as a cause of differential Müller cell regenerative responses to retinal injury.

8. Fetuin-B Interacts With Insulin Receptor-β and Promotes Insulin Resistance in Retina Cells.

9. HIF-1α-dependent regulation of angiogenic factor expression in Müller cells by mechanical stimulation.

10. Protocol for generating human cortical organoids enriched in outer radial glia by guided differentiation.

11. Tanycyte radial morphology and proliferation are influenced by fibroblast growth factor receptor 1 and high-fat diet.

12. Tanycytic transcytosis inhibition disrupts energy balance, glucose homeostasis and cognitive function in male mice.

13. Estrogen receptor-α signaling in tanycytes lies at the crossroads of fertility and metabolism.

14. Experimental Framework for Assessing Mouse Retinal Regeneration Through Single-Cell RNA-Sequencing.

15. Induction, amplification, and propagation of diabetic retinopathy-associated inflammatory cytokines between human retinal microvascular endothelial and Müller cells and in the mouse retina.

16. Isolation of Primary Mouse Retinal Glial Müller Cells.

17. Suppression of inner blood-retinal barrier breakdown and pathogenic Müller glia activation in ischemia retinopathy by myeloid cell depletion.

18. A multi-layered integrative analysis reveals a cholesterol metabolic program in outer radial glia with implications for human brain evolution.

19. Fasting induces metabolic switches and spatial redistributions of lipid processing and neuronal interactions in tanycytes.

20. CD44 signaling in Müller cells impacts photoreceptor function and survival in healthy and diseased retinas.

21. Her4.3 + radial glial cells maintain the brain vascular network through activation of Wnt signaling.

22. FTY720 Suppresses Pathogenic Retinal Müller Cell Activation and Chronic Progression by Inhibiting the mTOR/NF-κB Signaling Pathway and Regulating Autophagy.

23. Mycb and Mych stimulate Müller glial cell reprogramming and proliferation in the uninjured and injured zebrafish retina.

24. Robust reprogramming of glia into neurons by inhibition of Notch signaling and nuclear factor I (NFI) factors in adult mammalian retina.

25. A single-cell transcriptomic study of heterogeneity in human embryonic tanycytes.

26. ID factors regulate the ability of Müller glia to become proliferating neurogenic progenitor-like cells.

27. Exploring the role of Müller cells-derived exosomes in diabetic retinopathy.

28. Prohibitin 2 deficiency in photoreceptors leads to progressive retinal degeneration and facilitated Müller glia engulfing microglia debris.

29. Spermidine Synthase Localization in Retinal Layers: Early Age Changes.

30. [Experimental study on treatment of retinitis pigmentosa by inducing Müller cell reprogramming with Lycii Fructus and Salviae Miltiorrhizae Radix et Rhizoma].

31. Dynamic changes in mitochondrial localization in human neocortical basal radial glial cells during cell cycle.

32. Knockdown of thioredoxin interacting protein in Müller cells attenuates photoreceptor apoptosis in streptozotocin-induced diabetic mouse model.

33. Protein phosphatases regulate the formation of Müller glia-derived progenitor cells in the chick retina.

34. Small extracellular vesicles of organoid-derived human retinal stem cells remodel Müller cell fate via miRNA: A novel remedy for retinal degeneration.

35. Tanycytes release glucose using the glucose-6-phosphatase system during hypoglycemia to control hypothalamic energy balance.

36. Saturated fatty acids stimulate cytokine production in tanycytes via the PP2Ac-dependent signaling pathway.

37. Müller cells under hydrostatic pressure modulate retinal cell survival via TRPV1/PLCγ1 complex-mediated calcium influx in experimental glaucoma.

38. AQP4 regulates ferroptosis and oxidative stress of Muller cells in diabetic retinopathy by regulating TRPV4.

39. c-fos induction in the choroid plexus, tanycytes and pars tuberalis is an early indicator of spontaneous arousal from torpor in a deep hibernator.

40. Astrogliosis in the GFAP-Cre ERT2 :Rosa26 iDTR Mouse Model Does Not Exacerbate Retinal Microglia Activation or Müller Cell Gliosis under Hypoxic Conditions.

41. Deciphering Müller cell heterogeneity signatures in diabetic retinopathy across species: an integrative single-cell analysis.

42. A novel HDAC8 inhibitor H7E exerts retinoprotective effects against glaucomatous injury via ameliorating aberrant Müller glia activation and oxidative stress.

43. Central neurocytoma exhibits radial glial cell signatures with FGFR3 hypomethylation and overexpression.

44. Effects of aflibercept and bevacizumab on cell viability, cell metabolism and inflammation in hypoxic human Müller cells.

45. ESCRT-I protein UBAP1 controls ventricular expansion and cortical neurogenesis via modulating adherens junctions of radial glial cells.

46. ERK signaling expands mammalian cortical radial glial cells and extends the neurogenic period.

47. Seasonal biology: Tanycytes give the hypothalamus a spring makeover.

48. Identifying Hmga2 preserving visual function by promoting a shift of Müller glia cell fate in mice with acute retinal injury.

49. The impact of timing and injury mode on induced neurogenesis in the adult mammalian retina.

50. Hypothalamic tanycytes as mediators of maternally programmed seasonal plasticity.

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