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Rozdział I
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Rozdział II
Adil M.D. i in., Effect of Emblica officinalis (fruit) against UVB-induced photo-aging in human skin fibroblasts, „Journal of Ethnopharmacology”, październik 2010, nr 1, s. 109–114.
Aslam M.N., Lansky E.P., Varani J., Pomegranate as a cosmeceutical source: Pomegranate fractions promote proliferation and procollagen synthesis and inhibit matrix metalloproteinase-1 production in human skin cells, „Journal of Ethnopharmacology”, luty 2006, nr 3, s. 311–318.
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Rozdział III
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Rozdział IV
Adil M.D. i in., Effect of Emblica officinalis (fruit) against UVB-induced photoaging in human skin fibroblasts, „Journal of Ethnopharmacology”, 2010, nr 1, s. 109–114.
Afnan Q. i in., Glycyrrhizic acid (GA), a triterpenoid saponin glycoside alleviates ultraviolet-B irradiation induced photoaging in human dermal fibroblasts, „Phytomedicine”, maj 2012, nr 7, s. 658–664.
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Ihmad I. i in., Tualang honey protects keratinocytes from ultraviolet radiation induced inflammation and DNA damage, „Photochemistry and Photobiology”, wrzesień 2012, nr 5, s. 1198–1204.
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Rozdział V
Ashcroft G.S. i in., Topical estrogen accelerates cutaneous wound healing in aged humans associated with an altered inflammatory response, „American Journal of Pathology”, październik 1999, nr 4, s. 1137–1146.
De Oliviera A.P. i in., Effect of semisolid formulation of Persea Americana Mill (Avocado) Oil on wound healing in rats, „Evidence Based Complementary and Alternative Medicine”, 2013, nr artykułu 472382.
Esteban M.A., Pei D., Vitamin C improves the quality of stem cell reprogramming, „Nature Genetics”, 2012, nr 44, s. 366–367.
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Ranzato E., Martinotti S., Burlando B., Honey exposure stimulates wound repair of human dermal fibroblasts, „Burn Trauma”, 2013, nr 1, s. 32–38.
Schmid D. i in., Stem cell activation for smoother and more even skin, „Mibelle Biochemistry, Switzerland”, czerwiec 2013.
Skyberg J.A. i in., Apple polyphenols require T cells to ameliorate dextran sulfate sodium-induced colitis and dampen proinflammatory cytokine, „Journal of Leukocyte Biology”, 2011, nr 6, s. 1043.
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Yang Z. i in., Withania somnifera root extract inhibits mammary cancer metastasis and epithelial to mesenchymal transition, „PLoS One”, 12 września 2013.
Rozdział VI
Alcantara E.H. i in., Diosgenin stimulates osteogenic activity by increasing bone matrix protein synthesis and bone-specific transcription factor Runx2 in osteoblastic MC3 T3-E1 cells, „Journal of Nutritional Biochemistry”, listopad 2011, nr 11, s. 1055–1063.
Bogani P. i in., Lepidium meyenii (Maca) does not exert direct androgenic activities, „Journal of Ethnopharmacology”, 2006, nr 3, s. 415–417.
Braun K.F. i in., Quercetin protects primary human osteoblasts exposed to cigarette smoke through activation of the antioxidative enzymes HO-1 and SOD-1, „Science World Journal”, 2011, nr 11, s. 2348–2357.
Bu S.Y. i in., Dried plum polyphenols attenuate the detrimental effects of TNF-alpha on osteoblast function coincident with up-regulation of Runx2, Osterix and IGF-I, „Journal of Nutritional Biochemistry”, styczeń 2009, nr 1, s. 31–44.
Effendy M.N. i in., The effects of Tualang honey on bone metabolism in postmenopausal women, „Evidence-Based Complementary and Alternative Medicine”, 2012, nr artykułu 938574.
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Prouillet C. i in., Stimulatory effect of naturally occurring flavonols quercetin and kaempferol on alkaline phosphatase activity in MG-63 human osteoblasts through ERK and estrogen receptor pathway, „Biochemical Pharmacology”, kwiecień 2004, nr 7, s. 1307–1313.
Puel C. i in., Prevention of bone loss by phloridzin, an apple polyphenol, in ovariectomized rats under inflammation conditions, „Calcified Tissue International”, listopad 2005, nr 5, s. 311–318.
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Yamaguchi M., Sugimoto E., Stimulatory effect of genistein and daidzein on protein synthesis in osteoblastic MC3T3-E1 cells: Activation of aminoacyl-tRNA synthetase, „Molecular and Cellular Biochemistry”, 2000, nr 1, s. 97–102.
Yen M.L. i in., Diosgenin induces hypoxia-induced Factor-1 activation and angiogenesis through estrogen receptor-related phosphatidylinositol 3-kinase/Akt and p38 mitogen-activated protein kinase pathways in osteoblasts, „Molecular Pharmacology”, 2005, nr 68, s. 1061–1073.
Zhang M.Y. i in., In vitro and in vivo effects of puerarin on promotion of osteoblast bone formation, „Chinese Journal of Integrative Medicine”, kwiecień 2012, nr 4, s. 276–282.
Zhang Y. i in., Effect of ethanol extract of Lepidium meyenii Walp. on osteoporosis in ovariectomized rat, „Journal of Ethnopharmacology”, 2006, nr 1–2, s. 274–279.
Rozdział VII
Arner P., Ostman J., Relationship between the tissue level of cyclic AMP and the fat cell size of human adipose tissue, „Journal of Lipid Research”, 1978, nr 19, s. 613–618.
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Boque N. i in., Prevention of diet-induced obesity by apple polyphenols in Wistar rats through regulation of adipose gene expression and DNA methylation patterns, „Molecular Nutrition and Food Research”, sierpień 2013, nr 8, s. 1473–1478.
Carls-Grierson M.M., Modulation of activity of the adipocyte aquaglyceroporin channel by plant extracts, „International Journal of Cosmetic Science”, luty 2007, nr 1, s. 7–14.
Facino R.M. i in., Anti-elastase and anti-hyaluronidase activities of saponins and sapogenins from Hedera helix, Aesculus hippocastanum and Ruscus aculeatus: Factors contributing to their efficacy in the treatment of venous insufficiency, „Archiv der Pharmazie”, październik 1995, nr 10, s. 720–724.
Fasshauer M. i in., Suppression of aquaporin adipose gene expression by isoproterenol, TNFalpha and dexamethasone, „Hormone and Metabolic Research”, 2003, nr 4, s. 222–227.
Hara-Chicuma M. i in., Progressive adipocyte hypertrophy in aquaporin-7-deficient mice: Adipocyte permeability as a novel regulator of fat accumulation, „Journal of Biological Chemistry”, kwiecień 2005, nr 16, s. 15493–15496.
Kunkel S.D. i in., Ursolic acid increases skeletal muscle and brown fat and decreases diet-induced obesity, glucose intolerance and fatty liver disease, „PLoS One”, 20 czerwca 2012.
Ohta Y. i in., Gene expression analysis of the anti-obesity effects of apple polyphenols in rats fed a high-fat diet and a normal diet, „Journal of Oleo Science”, 2006, nr 6, s. 305–314.
Roy S. i in., Transcriptome of primary adipocytes from obese women in response to a novel hydroxycitric acid-based dietary supplement, „DNA and Cell Biology”, wrzesień 2007, nr 9, s. 627–639.
Saponara R., Bosisio E., Inhibition of cAMP-phosphodiesterase by biflavones of ginkgo in rat adipose tissue, „Journal of Natural Products”, 1998, nr 11, s. 1386–1387.
Shahat A.A. i in., Regulation of obesity and lipid disorders by Foeniculum vulgare extracts and Plantago ovata in high-fat diet induced obese rats, „American Journal of Food Technology”, 2012, nr 10.
Rozdział VIII
Camargo F.B. Jr. i in., Skin moisturizing effects of panthenol-based formulations, „Journal of Cosmetic Science”, lipiec–sierpień 2011, nr 4, s. 361–370.
Fischer T.W. i in., Effect of caffeine and testosterone on the proliferation of human hair follicles in vitro, „International Journal of Dermatology”, styczeń 2007, nr 1, s. 2735.
Shabani F., S. Reyhaneh, Increase of melanogenesis in the presence of fatty acids, „Pharmacologyonline”, 2010, nr 1, s. 314–323.
Ventura-Martinez R. i in., Spasmolytic activity of Rosmarinus officinalis L. involves calcium channels in guinea pig ileum, „Journal of Ethnopharmacology”, 2011, nr 127, s. 1528–1532.
Rozdział IX
Al-Waili N.S., Natural honey lowers plasma glucose, C-reactive protein, homocysteine and blood lipids in healthy, diabetic and hyperlipidemic subjects: Comparison with dextrose and sucrose, „Journal of Medicinal Food”, 2004, nr 1, s. 100–107.
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Fernandez-Cabezudo M.J. i in., Intravenous administration of manuka honey inhibits tumor growth and improves host survival when used in combination with chemotherapy in a melanoma mouse model, „PLoS One”, luty 2013, w.plosone.org/article/info%3Adoi%2F10.1371%2Fjournal.pone.0055993.
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Larson-Meyer E.D. i in., Effect of honey versus sucrose on appetite, appetite-regulating hormones and postmeal thermogenesis, „Journal of the American College of Nutrition”, październik 2010, nr 5, s. 482–493.
Nemoseck T.M. i in., Honey promotes lower weight gain, adiposity and triglycerides than sucrose in rats, „Nutrition Research”, styczeń 2011, nr 1, s. 55–60.
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