[1] Stevens G A, White R A, Flaxman S R, et al. Global prevalence of vision impairment and blindness:Magnitude and temporal trends, 1990-2010[J]. Ophthalmology, 2013, 120(12):2377-2384.
[2] Visser N, Bauer N J, Nuijts R M. Toric intraocular lenses:Historical overview, patient selection, IOL calculation, surgical techniques, clinical outcomes, and complications[J]. Journal of Cataract & Refract Surgery, 2013, 39(4):624-637.
[3] Mamalis N, Davis B, Nilson C D, et al. Complications of foldable intraocular lenses requiring explantation or secondary intervention:2003 survey update[J]. Journal of Cataract & Refract Surgery, 2004, 30(10):2209-2218.
[4] Bothun E D, Cleveland J, Lynn M J, et al. One-year strabismus outcomes in the Infant Aphakia Treatment Study[J]. Ophthalmology, 2013, 120(6):1227-1231.
[5] Infant Aphakia Treatment Study Group, Lambert S R, Buckley E G, et al. A randomized clinical trial comparing contact lens with intraocular lens correction of monocular aphakia during infancy:Grating acuity and adverse events at age 1 year[J]. Archives of Ophthalmology, 2010, 128(7):810-818.
[6] Barde Y. Caution urged in trial of stem cells to treat spinalcord injury[J]. Nature, 2009, 458(7234):29.
[7] Zarzeczny A, Caulfield T. Emerging ethical, legal and social issues associated with stem cell research & and the current role of the moral status of the embryo[J]. Stem Cell Reviews and Reports, 2009, 5(2):96-101.
[8] Ohnishi K, Semi K, Yamamoto T, et al. Premature termination of reprogramming in vivo leads to cancer development through altered epigenetic regulation[J]. Cell, 2014, 156(4):663-677.
[9] Gore A, Li Z, Fung H L, et al. Somatic coding mutations in human induced pluripotent stem cells[J]. Nature, 2011, 471(7336):63-67.
[10] Lister R, Pelizzola M, Kida Y S, et al. Hotspots of aberrant epigenomic reprogramming in human induced pluripotent stem cells[J]. Nature, 2011, 471(7336):68-73.
[11] Kim K, Doi A, Wen B, et al. Epigenetic memory in induced pluripotent stem cells[J]. Nature, 2010, 467(7313):285-290.
[12] Hyun I, Hochedlinger K, Jaenisch R, et al. New advances in iPS cell research do not obviate the need for human embryonic stem cells[J]. Cell Stem Cell, 2007, 1(4):367-368.
[13] Shimazaki J, Shimmura S, Tsubota K. Donor source affects the outcome of ocular surface reconstruction in chemical or thermal burns of the cornea[J]. Ophthalmology, 2004, 111(1):38-44.
[14] Moore K A, Lemischka I R. Stem cells and their niches[J]. Science, 2006, 311(5769):1880-1885.
[15] Blanpain C, Lowry W E, Geoghegan A, et al. Self-renewal, multipotency, and the existence of two cell populations within an epithelial stem cell niche[J]. Cell, 2004, 118(5):635-648.
[16] Kalluri R, Weinberg R A. The basics of epithelial-mesenchymal transition[J]. The Journal of Clinical Investigation, 2009, 119(6):1420-1428.
[17] Fuchs E, Tumbar T, Guasch G. Socializing with the neighbors:Stem cells and their niche[J]. Cell, 2004, 116(6):769-778.
[18] Purnell B A, Hines P J. Steps to the clinic[J]. Science, 2009, 324(5935):1661.
[19] Blanpain C, Horsley V, Fuchs E. Epithelial stem cells:Turning over new leaves[J]. Cell, 2007, 128(3):445-458.
[20] Miller F D, Kaplan D R. Mobilizing endogenous stem cells for repair and regeneration:Are we there yet[J]. Cell Stem Cell, 2012, 10(6):650-652.
[21] Sato T, Van Es J H, Snippert H J, et al. Paneth cells constitute the niche for Lgr5 stem cells in intestinal crypts[J]. Nature, 2011, 469(7330):415-418.
[22] Sanberg P R, Eve D J, Metcalf C, et al. Advantages and challenges of alternative sources of adult-derived stem cells for brain repair in stroke[J]. Progress in Brain Research, 2012, 201:99-117.
[23] Huang S X, Islam M N, O'Neill J, et al. Efficient generation of lung and airway epithelial cells from human pluripotent stem cells[J]. Nature Biotechnology, 2014, 32(1):84-91.
[24] Beebe D C, Holekamp N M, Shui Y B. Oxidative damage and the prevention of age-related cataracts[J]. Ophthalmic Research, 2010, 44(3):155-165.
[25] Lin H T, Ouyang H, Zhu Jie, et al. Lens regeneration using endogenous stem cells with gain of visual function[J]. Nature, 2016, 531(7594):323-328
[26] Park I K, Qian D, Kiel M, et al. Bmi-1 is required for maintenance of adult self-renewing haematopoietic stem cells[J]. Nature, 2003, 423(6937):302-305.
[27] Lessard J, Sauvageau G. Bmi-1 determines the proliferative capacity of normal and leukaemic stem cells[J]. Nature, 2003, 423(6937):255-260.
[28] Molofsky A V, Pardal R, Iwashita T, et al. Bmi-1 dependence distinguishes neural stem cell self-renewal from progenitor proliferation[J]. Nature, 2003, 425(6961):962-967.
[29] Sugiyama Y, Lovicu F J, McAvoy J W. Planar cell polarity in the mammalian eye lens[J]. Organogenesis, 2011, 7(3):191-201.
[30] Gwon A. Lens regeneration in mammals:A review[J]. Survey of Ophthalmology, 2006, 51(1):51-62.
[31] Gwon A E, Gruber L J, Mundwiler K E. A histologic study of lens regeneration in aphakic rabbits[J]. Investigative Ophthalmology & Visual Science, 1990, 31(3):540-547.