[1] Li W*, Sinclair SH, Xu GT*. Effects of Intravitreal Erythropoietin Therapy for Patients with Chronic and Progressive Diabetic Macular Edema. Ophthalmic Surgery, Lasers and Imaging 2009; (in press) (Co-corresponding authors)
[2] Xiao YQ, Lu ZZ, Liu K, Shen JS, Xu GT*, Ye W*. SB431542 inhibits the scar formation after the filtering surgery Invest Ophthalmal Vis Sci. 2008 Dec.; Epub ahead of print (*Co-corresponding authors).
[3] Zhang Y, Wang Q, Zhang J, Lei X, Xu GT*, Ye W*. Protection of exendin-4 analogue in early experimental diabetic retinopathy. Graefe's Archive for clinical and experimental ophthalmology. 2009; Epub ahead of print (*Co-corresponding authors).
[4] Xiao W, Wu Y, Zhang J, Ye W*, Xu GT*. Selecting highly sensitive non-obese diabetic mice for improving the study of Sj gren's syndrome. Graefes Arch Clin Exp Ophthalmol. 2009; 247(1):59-66. (Co-corresponding authors)
[5] Zhang JF, Wu YL, Xu JY, Ye W, Zhang Y, Weng H, Shi WD, Xu GX, Lu L, Dai W, Sinclair SH, Li WY*, Xu GT*. Pharmacokinetic and toxicity study of intravitreal erythropoietin in rabbits. Acta Pharmacol Sin. 2008; 29:1383-90. (Co-corresponding author)
[6] Zhang J, Wu Y, Jin Y, Ji F, Sinclair SH, Luo Y, Xu G, Lu L, Dai W, Yanoff M, Li W*, Xu GT*. Intravitreal injection of erythropoietin protects both retinal vascular and neuronal cells in early diabetes. Invest Ophthalmol Vis Sci. 2008 Feb; 49(2):732-42. (Co-corresponding author)
[7] Wang Z, Xu GT, Wu Y, Liu S, Sun B, Dai Q. Neuregulin-1 promotes cardiomyocyte differentiation of genetically engineered embryonic stem cell clones. BMB Rep. 2008; 41(10):699-704.
[8] Wang Z, Xu GT, Wu Y, Guan Y, Cui L, Lei X, Zhang J, Mou L, Sun B, Dai Q. Neuregulin-1 enhances differentiation of cardiomyocytes from embryonic stem cells. Med Biol Eng Comput. 2008.
[9] Yang YL, Duan Q, Guo TB, Wang XX, Ruan Q, Xu GT, Zhang JW, Lu ZY, Xu M, Lu L, Dai W. BubR1 deficiency results in enhanced activation of MEK and ERKs upon microtubule stresses. Cell Prolif. 2007; 40(3):397-410.
[10] Guo TB, Lu J, Li T, Lu Z, Xu GT, Xu M, Lu L, Dai W. Insulin-activated, K+-channel-sensitive Akt pathway is primary mediator of ML-1 cell proliferation. Am J Physiol Cell Physiol. 2005, 289(2): C257-63.