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Titlebook: Studies on the Cornea and Lens; Mark A. Babizhayev,David Wan-Cheng Li,Jorge L. Ali Book 2015 Springer Science+Business Media New York 2015

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楼主: Baleful
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p53 Regulates Developmental Apoptosis and Gene Expression to Modulate Lens Differentiationrom our laboratory and others have shown that p53 plays an active role in regulating lens differentiation. It does so by modulating developmental apoptosis and also controlling expression of lens differentiation-specific genes. In this chapter, we summary the current progresses in this field.
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2197-7224 m etiology and prevention, pediatrics, diabetic retinopathy .This comprehensive volume presents data describing the role of oxidative stress in anterior eye disease. The content is divided into three logical parts: basic science of the cornea, basic science of the lens, and clinical practices. The f
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Etiology and Prevention of Cataractss on the modifiable risk factors would therefore be an ideal target for public health interventions. Pioneering results from various research backgrounds has proven that prevention of cataractogenesis by effective health education, intake of nutraceuticals would prioritize primary and secondary prevention strategies to the community.
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Oxidative Stress in Corneamage and corneal diseases. Oxidative stress has been reported to play an essential role in corneal normal physiology as well as corneal pathology. Reactive oxygen species are not only considered to be the damaging factors in various pathologies, but they also participate in a wide variety of physiol
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Corneal Degenerationsaterial, tissue thinning, and vascularization characterize them. The main age-related forms are bilateral and are represented by arcus senilis, limbal girdle, endothelial guttae, and crocodile shagreen. Degenerations with tissue thinning comprise Terrien’s marginal degeneration and corneal dellen. T
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Corneal Epithelial Nuclear Ferritin and Its Transporter Ferritoid Afford Unique Protection to DNA frncluding alterations to DNA that are potentially carcinogenic. Much of the UV-induced damage to DNA is thought to result from the generation of reactive oxygen species (ROS) and the subsequent conversion of lowly-energetic ROS (e.g., H.O.) to highly energetic hydroxyl radicals. This occurs through t
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Excitatory Amino Acid Transporters, Xc− Antiporter, γ-Glutamyl Transpeptidase, Glutamine Synthetase,aintaining glutathione (GSH; potent antioxidant tripeptide of Glu, Cys, and glycine) investigated. Glu, Na-dependent excitatory amino acid transporters (EAAT), Xc. antiporter, γ-glutamyltranspeptidase (GGT; cleaves GSH) and glutamine synthetase (GS; amidates Glu to form glutamine) were identified by
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