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1. Preserving Vascular Integrity Protects Mice against Multidrug-Resistant Gram-Negative Bacterial Infection

2. Control of intestinal stem cell function and proliferation by mitochondrial pyruvate metabolism

3. Endothelial TLR4 and the microbiome drive cerebral cavernous malformations.

4. Small Molecule-Induced Complement Factor D (Adipsin) Promotes Lipid Accumulation and Adipocyte Differentiation

5. Netrin-1 exerts oncogenic activities through enhancing Yes-associated protein stability

6. Tumor-specific interendothelial adhesion mediated by FLRT2 facilitates cancer aggressiveness

7. Netrins Promote Developmental and Therapeutic Angiogenesis

8. roundabout4 Is Essential for Angiogenesis in vivo

12. Evidence of Glycolysis Up-Regulation and Pyruvate Mitochondrial Oxidation Mismatch During Mechanical Unloading of the Failing Human Heart: Implications for Cardiac Reloading and Conditioning

13. Small GTPase ARF6 controls VEGFR2 trafficking and signaling in diabetic retinopathy

14. Data from The Small GTPase ARF6 Activates PI3K in Melanoma to Induce a Prometastatic State

15. Figure S2 from The Small GTPase ARF6 Activates PI3K in Melanoma to Induce a Prometastatic State

16. Table S1 from The Small GTPase ARF6 Activates PI3K in Melanoma to Induce a Prometastatic State

19. Heart Failure Strategically Focused Research Network: Summary of Results and Future Directions

23. PI3Ka-Akt1-mediated Prdm4 induction in adipose tissue increases energy expenditure, inhibits weight gain, and improves insulin resistance in diet-induced obese mice

24. Cerebral cavernous malformations arise from endothelial gain of MEKK3-KLF2/4 signalling

30. Distinct Function of 2 Chromatin Remodeling Complexes That Share a Common Subunit, Williams Syndrome Transcription Factor (WSTF)

31. Promoter Polymorphism of the Erythropoietin Gene in Severe Diabetic Eye and Kidney Complications

33. Proteasome function is required for platelet production

37. Intravitreal AAV2.COMP-Ang1 Prevents Neurovascular Degeneration in a Murine Model of Diabetic Retinopathy

41. Dysregulated exocytosis of angiopoietin-2 drives cerebral cavernous malformation

45. Interleukin receptor activates a MYD88-ARNO-ARF6 cascade to disrupt vascular stability

47. Mutations in 2 distinct genetic pathways result in cerebral cavernous malformations in mice

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