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2. The unfolded protein response regulator ATF6 promotes mesodermal differentiation

3. Mutant RAMP2 causes primary open-angle glaucoma via the CRLR-cAMP axis

4. Complement factor H genotypes impact risk of age-related macular degeneration by interaction with oxidized phospholipids

6. Reduced in vivo aortic uptake of radiolabeled oxidation-specific antibodies reflects changes in plaque composition consistent with plaque stabilization.

7. Pneumococcal vaccination decreases atherosclerotic lesion formation: molecular mimicry between Streptococcus pneumoniae and oxidized LDL

8. Human-Derived Anti-Oxidized LDL Autoantibody Blocks Uptake of Oxidized LDL by Macrophages and Localizes to Atherosclerotic Lesions In Vivo

9. Natural antibodies with the T15 idiotype may act in atherosclerosis, apoptotic clearance, and protective immunity

14. Oxidation-specific epitopes are dominant targets of innate natural antibodies in mice and humans

17. Innate and acquired immunity in atherogenesis

24. The Unfolded Protein Response Regulator, ATF6, Promotes Mesodermal Differentiation

25. KLF9 and JNK3 Interact to Suppress Axon Regeneration in the Adult CNS

32. Oxidation-specific epitopes are danger-associated molecular patterns recognized by pattern recognition receptors of innate immunity

34. Oxidative stress, innate immunity, and age-related macular degeneration.

35. High Temperature Requirement Factor A1 (HTRA1) Gene Regulates Angiogenesis through Transforming Growth Factor-β Family Member Growth Differentiation Factor 6

37. Oxidation-Specific Epitopes Are Danger-Associated Molecular Patterns Recognized by Pattern Recognition Receptors of Innate Immunity

38. Targeted Iron Oxide Particles for In Vivo Magnetic Resonance Detection of Atherosclerotic Lesions With Antibodies Directed to Oxidation-Specific Epitopes

40. The role of innate immunity in atherogenesis

42. Targeted Molecular Probes for Imaging Atherosclerotic Lesions With Magnetic Resonance Using Antibodies That Recognize Oxidation-Specific Epitopes

48. TCF7L2 Variation and Proliferative Diabetic Retinopathy.

49. JNK inhibition reduces apoptosis and neovascularization in a murine model of age-related macular degeneration.

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