6. Там же.
7. Webb A. R., Kline L., Holick M. F. Influence of Season and Latitude on the Cutaneous Synthesis of Vitamin D3: Exposure to Winter Sunlight in Boston and Edmonton Will Not Promote Vitamin D3 Synthesis in Human Skin // Journal of Clinical Endocrinology and Metabolism (Aug 1988), 67 (2): 373–8.
8. Jablonski N. G., Chaplin G. The Evolution of Human Skin Coloration // Journal of Human Evolution (July 2000), 39 (1): 57–106.
9. Jablonski N. G. The Evolution of Human Skin and Skin Color // Annual Review of Anthropology (2004), 33: 585–623.
10. Там же.
11. Gambichler T., Bader A., Sauermann K., et al. Serum Folate Levels After UVA Exposure: a Two Group Parallel Randomised Controlled Trial // BMC Dermatology (2001), 1: 8.
12. Shaheen M. A. and Abdel F. Analysis of Serum Folate Levels after Narrow Band UVB Exposure // Egypt Dermatol Online Journal (2006), 2.
13. Fukuwatari T., Fujita M. and Shibata K. Effects of UVA Irradiation on the Concentration of Folate in Human Blood // Bioscience, Biotechnology, and Biochemistry (2009), 73: 2, 322–327.
14. Hasoun L. Z., Bailey S. W., Outlaw K. K., Ayling J. E. Rearrangement and Depletion of Folate in Human Skin by Ultraviolet Radiation // British Journal of Dermatology (Oct 2015), 173 (4): 1087–90.
Глава 33. Немножко генетики
1. Rosenberg N., Murata M., Ikeda Y., Opare-Sem O., Zivelin A., Geffen E., Seligsohn U. The Frequent 5, 10-Methylenetetrahydrofolate Reductase C677T Polymorphism Is Associated with a Common Haplotype in Whites, Japanese, and Africans // American Journal of Human Genetics (Mar 2002), 70 (3): 758–762.
2. Cordain L., Hickey M. S. Ultraviolet Radiation Represents an Evolutionary Selective Pressure for the South-To-North Gradient of the MTHFR 677TT Genotype // American Journal of Clinical Nutrition (Nov 2006), 84(5): 1243; author reply: 1244–5.
3. Yafei W., Lijun P., Jinfeng W., et al. Is the prevalence of MTHFR C677T Polymorphism Associated with Ultraviolet Radiation in Eurasia? // American Journal of Human Genetics (2012), 57: 780–786.
4. Lucock M., Beckett E., Martin C., et al. UV‐Associated Decline in Systemic Folate: Implications for Human Nutrigenetics, Health, and Evolutionary Processes // American Journal of Human Biology (2017): 29, e22929.
5. Jones P., Lucock M., Veysey M., Jablonski N., Chaplin G., Beckett E. Frequency of Folate-related Polymorphisms Varies by Skin Pigmentation // American Journal of Human Biology (Mar 2018), 30 (2).
6. Rifkin R. F., d’Errico F., Dayet-Boulliot L., and Summers B. Assessing the Photoprotective Effects of Red Ochre on Human Skin by in Vitro Laboratory Experiments // South African Journal of Science . (2015), 111(3–4), 1–8.
Глава 34. Микробов не впускать, воду не выпускать
1. Автобиография Ч. Дарвина // Дарвин Ч. Происхождение видов. — М.: Л.: Огиз-Сельхозгиз, 1935. С. 90.
2. Соколов А. Б. Ученые скрывают? Мифы XXI века. — М.: Альпина нон-фикшн, 2018.
3. Elias P. M., Williams M. L. Re-appraisal of Current Theories for the Development and Loss of Epidermal Pigmentation in Hominins and Modern Humans // Journal of Human Evolution (June 2013), 64 (6): 687–92.
4. Wilson K., Cotter S. C., Reeson A. F. and Pell J. K. Melanism and Disease Resistance in Insects // Ecology Letters (2001), 4: 637–649.
5. Khan R., Khan B. S. Diet, Disease and Pigment Variation in Humans // Medical Hypotheses (Oct 2010), 75 (4): 363–7.
6. Mackintosh J. A. The Antimicrobial Properties of Melanocytes, Melanosomes and Melanin and the Evolution of Black Skin // Journal of Theoretical Biology (July 2001), 211(2): 101–13.
7. Wassermann H. P. Human Pigmentation and Environmental Adaptation // Archives of Environmental Health: An International Journal (1965), 11: 5, 691–694.
8. Reed J. T., Ghadially R., Elias P. M. Skin Type, but Neither Race Nor Gender, Influence Epidermal Permeability Barrier Function // Archives of Dermatology (Oct 1995), 131 (10): 1134-8.
9. Gunathilake R., Schurer N. Y., Shoo B. A., Celli A., Hachem J.-P., Crumrine D., Sirimanna G., et al. pH-Regulated Mechanisms Account for Pigment-Type Differences in Epidermal Barrier Function // Journal of Investigative Dermatology . Elsevier (July 2009).
10. Hong S. P., Kim M. J., Jung M. Y., Jeon H., Goo J., Ahn S. K., Lee S. H., Elias P. M., Choi E. H. Biopositive Effects of Low-Dose UVB on Epidermis: Coordinate Upregulation of Antimicrobial Peptides and Permeability Barrier Reinforcement // Journal of Investigative Dermatology (Dec 2008), 128 (12): 2880–7.
11. Elias P. M., Williams M. L. Re-appraisal of Current Theories for the Development and Loss of Epidermal Pigmentation in Hominins and Modern Humans // Journal of Human Evolution (June 2013), 64 (6): 687–92.
12. Thyssen J. P., Thuesen B., Huth C., Standl M., Carson C. G., et al. Skin Barrier Abnormality Caused by Filaggrin (FLG) Mutations is Associated with Increased Serum 25-Hydroxyvitamin D concentrations // Journal of Allergy and Clinical Immunology (Nov 2012), 130 (5): 1204–1207. e2.
13. Elias P. M., Williams M. L. Basis for the Gain and Subsequent Dilution of Epidermal Pigmentation During Human Evolution: The Barrier and Metabolic Conservation Hypotheses Revisited // American Journal of Physical Anthropology (Oct 2016), 161 (2): 189–207.
14. Strumia R. Skin signs in anorexia nervosa // Dermato-Endocrinology (Sep — Oct 2009), 1 (5): 268–270.
15. Jablonski N. G., Chaplin G. Epidermal Pigmentation in the Human Lineage is an Adaptation to Ultraviolet Radiation // Journal of Human Evolution (Nov 2013), 65(5): 671–5.
16. Grant W. B. The UVB-vitamin D (3) Pigment Hypothesis is Alive and Well // American Journal of Physical Anthropology (Dec 2016), 161 (4): 752–755.
17. Jones P., Lucock M., Veysey M., Beckett E. The Vitamin D-Folate Hypothesis as an Evolutionary Model for Skin Pigmentation: An Update and Integration of Current Ideas // Nutrients (Apr 2018), 10 (5), pii: E554.
18. Elias P. M., Williams M. L. Comment on: The Vitamin D-Folate Hypothesis as an Evolutionary Model for Skin Pigmentation: An Update and Integration of Current Ideas // Nutrients (Nov 2018), 10, 554: 10 (11), pii: E1753.
Глава 35. Витаминные страсти
1. Ravensbergen J., Brown C. L., Moore G. F., Frese R. N., van Grondelle R., Gust D., Moore T. A., Moore A. L., Kennis J. T. Kinetic Isotope Effect of Proton-Coupled Electron Transfer in a Hydrogen Bonded Phenol-Pyrrolidino [60] fullerene // Photochemical & Photobiological Sciences (Dec 2015), 14 (12): 2147–50.
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