Chemistry Reference
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Johnson, E. J. and E. Norkus (1995). Contribution of beta-carotene from beta-carotene enriched formulas to
individual and total serum carotenoids in term infants. FASEB J . 9 (4 Pt 3): 1869.
Kant, A. K. and B. I. Graubard (2007). Ethnicity is an independent correlate of biomarkers of micronutrient
intake and status in American adults. J. Nutr . 137 (11): 2456-2463.
Khachik, F., G. R. Beecher et al. (1995). Lutein, lycopene, and their oxidative metabolites in chemoprevention
of cancer. J. Cell. Biochem. Suppl . 22 : 236-246.
Khachik, F., P. S. Bernstein et al. (1997a). Identii cation of lutein and zeaxanthin oxidation products in human
and monkey retinas. Invest. Ophthalmol. Vis. Sci . 38 (9): 1802-1811.
Khachik, F., E. London et al. (2006). Chronic ingestion of (3R,3′R,6′R)-lutein and (3R,3′R)-zeaxanthin in the
female rhesus macaque. Invest. Ophthalmol. Vis. Sci . 47 (12): 5476-5486.
Khachik, F., C. J. Spangler et al. (1997b). Identii cation, quantii cation, and relative concentrations of carote-
noids and their metabolites in human milk and serum. Anal. Chem . 69 : 1873-1881.
Kim, S. R., K. Nakanishi et al. (2006). Photooxidation of A2-PE, a photoreceptor outer segment l uorophore,
and protection by lutein and zeaxanthin. Exp. Eye Res . 82 (5): 828-839.
Kirschfeld, K. (1982). Carotenoid pigments: Their possible role in protecting against photooxidation in eyes
and photoreceptor cells. Proc. R. Soc. Lond. B Biol. Sci . 216 (1202): 71-85.
Klaes, H. and H. Riegel (1951). Effect of adaptinol on dark adaptation of the human eye (German). Medizinische
Monatsschrift 5 (5): 334-337.
Koepcke, W., F. M. Barker et al. (1995). Canthaxanthin deposition in the retina: A biostatistical evaluation of
411 patients. J. Toxicol. Cutaneous Ocular Toxicol . 14 (2): 89-104.
Koushik, A., D. J. Hunter et al. (2006). Intake of the major carotenoids and the risk of epithelial ovarian cancer
in a pooled analysis of 10 cohort studies. Int. J. Cancer 119 (9): 2148-2154.
Kowluru, R. A., B. Menon et al. (2008). Benei cial effect of zeaxanthin on retinal metabolic abnormalities in
diabetic rats. Invest. Ophthalmol. Vis. Sci . 49 (4): 1645-1651.
Krinsky, N. I. (2002). Possible biologic mechanisms for a protective role of xanthophylls. J. Nutr . 132 (3):
540S-542S.
Krinsky, N. I. and S. M. Deneke (1982). Interaction of oxygen and oxy-radicals with carotenoids. J. Natl.
Cancer Inst . 69 (1): 205-210.
Krinsky, N. I., J. T. Landrum et al. (2003). Biologic mechanisms of the protective role of lutein and zeaxanthin
in the eye. Annu. Rev. Nutr . 23 : 171-201.
Kuhn, R. and A. Winterstein (1930). About the occurrence of lutein in the plant kingdom (German).
Naturwissenschaften 18 : 754.
Kvansakul, J., M. Rodriguez-Carmona et al. (2006). Supplementation with the carotenoids lutein and zeaxan-
thin improves human visual performance. Ophthal. Physiol. Opt . 26 (4): 362-371.
Landrum, J. T., R. A. Bone et al. (1997). A one year study of the macular pigment: The effect of 140 days of a
lutein supplement. Exp. Eye Res . 65 (1): 57-62.
Landrum, J. T., R. A. Bone et al. (1999a). Carotenoids in the human retina. Pure Appl. Chem . 71 (12):
2237-2244.
Landrum, J. T., R. A. Bone et al. (1999b). Analysis of zeaxanthin distribution within individual human retinas.
Methods Enzymol . 299 : 457-467.
Leung, I. Y., M. M. Sandstrom et al. (2004). Nutritional manipulation of primate retinas, II: Effects of age,
n-3 fatty acids, lutein, and zeaxanthin on retinal pigment epithelium. Invest. Ophthalmol. Vis. Sci . 45 (9):
3244-3256.
Leung, I. Y. F., M. O. M. Tso et al. (2001). Absorption of zeaxanthin in human subjects after ingestion of fructus
lycii (gou qi zi). Invest. Ophthalmol. Vis. Sci . 42 (4): S359, Program #1942.
Leyon, H., A. M. Ros et al. (1990). Reversibility of canthaxanthin deposits within the retina. Acta Ophthalmol
(Copenh) 68 (5): 607-611.
Liew, S. H., C. E. Gilbert et al. (2005). Heritability of macular pigment: A twin study. Invest. Ophthalmol. Vis.
Sci . 46 (12): 4430-4436.
Liew, S. H., C. E. Gilbert et al. (2006). Central retinal thickness is positively correlated with macular pigment
optical density. Exp. Eye Res . 82 (5): 915-920.
Lim, B. P., A. Nagao et al. (1992). Anti-oxidant activity of xanthophylls on peroxyl radical-mediated phospho-
lipid peroxidation. Biochim. Biophys. Acta 1126 : 178-184.
Loane, E., J. M. Nolan et al. (2008). Transport and retinal capture of lutein and zeaxanthin with reference to
age-related macular degeneration. Surv. Ophthalmol . 53 (1): 68-81.
Loughman, J., P. Davison et al. (2007). Impact of macular pigment on visual performance. Optician 234 (6116):
23-28.
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