REFERENCES
References (in alphabetical order):
Bell L. et al., „ A pilot dose–response study of the acute effects of haskap berry extract (Lonicera caerulea L.) on cognition, mood, and blood pressure in older adults, European Journal of Nutrition, (Dec 2018)
Ben-Amotz A. et al, Bioavailability of a natural isomer mixture compared with synthetic all-trans beta-carotene in human serum. Am J Clin Nutr (1996), 63:729–734
Broda, B. Zarys botaniki farmaceutycznej; Państwowy Zakład Wydawnictw Lekarskich: Warszawa, Poland, 2002.
Chalker-Scott L, Environmental significance of anthocyanins in plant stress responses. Photoechem Photobiol (1999) 70: 1-9
Chalker-Scott L, Do anthocyanins function as osmoregulators in leaf tissues? Advances in Botanical Research, Academic Press, London (2002)
EFSA, Technical Report on the notification of berries of Lonicera caerulea L. as a traditional food from a third country pursuant to Article 14 of Regulation (EU) 2015/2283doi:10.2903/sp.efsa.2018.EN-1442
Karłowicz-Bodalska K et al., Anti-inflammatory properties of selected plants containing iridoid compounds, Borgis - Postępy Fitoterapii 3/2017, s. 229-234 | DOI: 10.25121/PF.2017.18.3.229
Kohlmünzer, S. Pharmacognosy: Book for Students of Pharmacy; PZWL:Warszawa, Poland, 2007.
Kucharska AZ et al., Identification of Iridoids in Edible Honeysuckle Berries (Lonicera caerulea L. var. kamtschatica Sevast.) by UPLC-ESI-qTOF-MS/MS Molecules (2016), 21, 1157; doi:10.3390/molecules21091157
Kucharska AZ et al., Iridoids, Phenolic Compounds and Antioxidant Activity of Edible Honeysuckle Berries(Lonicera caerulea var. kamtschatica Sevast.) Molecules (2017), 22, 405; doi:10.3390/molecules22030405
Li D et al. Purified anthocyanin supplementation reduces dyslipidemia, enhances antioxidant capacity, and prevents insulin resistance in diabetic patients. J Nutr. (2015) 145(4):742–748.
Liu C et al. Effects of anthocyanin on serum lipids in dyslipidemia patients: a systematic review and meta-analysis. PloS One. (2016);11(9):e0162089
McDougall GJ et al., Assessing potential bioavailability of raspberry anthocyanins using an in vitro
digestion system. Journal of Agricultural and Food Chemistry (2005); 53:5896–5904.
McDougall GJ et al., The inhibitory effects of berry polyphenols on digestive enzymes. BioFactors (2005); 23:189–195
Qin Y et al., Anthocyanin supplementation improves serum LDL-and HDL-cholesterol concentrations associated with the inhibition of cholesteryl ester transfer protein in dyslipidemic subjects. Am J Clin Nutr. (2009);90(3):485–492
Rupasinghe HPV, The potential health benefits of haskap (Lonicera caerulea L.): Role of cyanidin-3-O-glucoside, Journal of Functional Foods, (2018) 44: 24-39
Sellappan S. et al, Phenolic compounds and antioxidant capacity of Georgia-grown blueberries and blackberries. J Agric Food Chem (2002) 50:2432–2438. doi:10.1021
Shishtar E et all, Long-term dietary flavonoid intake and risk of Alzheimer disease and related dementias in the Framingham Offspring Cohort . The American Journal of Clinical Nutrition (2020); DOI: 1093/ajcn/nqaa079
Sozański T et al., Iridoid–loganic acid versus anthocyanins from the Cornus mas fruits (cornelian cherry): Common and different effects on diet-induced atherosclerosis, PPARs expression and inflammation, Atherosclerosis., 254 (2016), s. 151-160.
Steyn W.J et al, Anthocyanins in vegetative tissues: a proposed unified function in photoprotection. New Phytologists (2002). 155: 349 – 361
Szajdek A. et al, Bioactive Compounds and Health-Promoting Properties of Berry Fruits: A Review Plant Foods Hum Nutr (2008) 63:147–156 DOI 10.1007/s11130-008-0097-5
Szumny D et al, Application of Cornelian Cherry Iridoid-Polyphenolic Fraction and Loganic Acid to Reduce Intraocular Pressure Evidence-Based Complementary and Alternative Medicine, (2015), s. 1-8
Taira T el all, Dietary polyphenols increase fecal mucin and immunoglobulin A and ameliorate the disturbance in gut microbiota caused by a high fat diet J Clin Biochem Nutr (2015), vol.57, no.3 212-216
Thompson M.M., Introducing haskap, Japanese blue honeysuckle, Journal of American Pomological Society., 60 (2006), s. 164-168.
Vinson JA et al, Phenol antioxidant quantity and quality in foods: fruits. J Agric Food Chem (2001) 49:5315–5321. doi:10.1021/jf0009293
Wang C et al., Iridoids: Research Advances in Their Phytochemistry, Biological Activities, and Pharmacokinetics, Molecules 2020, 25, 287; doi:10.3390/molecules25020287
Wang H et al, Total antioxidant capacity of fruits. J Agric Food Chem, (1996) 44:701–705. doi:10.1021/jf950579y
Weisel T et al., An anthocyanin/polyphenolic-rich fruit juice reduces oxidative DNA damage and increases glutathione level in healthy probands. Biotechnol J (2006);1:388–397. [PubMed: 16892265]