333
Views
13
CrossRef citations to date
0
Altmetric
Food composition and analysis

Characterization of nutrients, polyphenols and volatile components of the ancient apple cultivar ‘Mela Rosa Dei Monti Sibillini’ from Marche region, central Italy

, ORCID Icon, , , , , , ORCID Icon & ORCID Icon show all
Pages 796-812 | Received 17 Dec 2018, Accepted 02 Feb 2019, Published online: 20 Mar 2019

References

  • Amaro AL, Beaulieu JC, Grimm CC, Stein RE, Almeida DP. 2012. Effect of oxygen on aroma volatiles and quality of fresh-cut cantaloupe and honeydew melons. Food Chem. 130:49–57.
  • AOAC. 1995. Official methods of analysis. 16th ed. Arlington (VA): Association of Official Analytical Chemists.
  • Aprea E, Charles M, Endrizzi I, Corollaro ML, Betta E, Biasioli F, Gasperi F. 2017. Sweet taste in apple: the role of sorbitol, individual sugars, organic acids and volatile compounds. Sci Rep. 7:44950.
  • Aprea E, Corollaro ML, Betta E, Endrizzi I, Demattè ML, Biasioli F, Gasperi F. 2012. Sensory and instrumental profiling of 18 apple cultivars to investigate the relation between perceived quality and odour and flavour. Food Res Int. 49:677–686.
  • Bartley IM, Stoker PG, Martin ADE, Hatfield SGS, Knee M. 1985. Synthesis of aroma compounds by apples supplied with alcohols and methyl esters of fatty acids. J Sci Food Agric. 36:567–574.
  • Cho AS, Jeon SM, Kim MJ, Yeo J, Seo KI, Choi MS, Lee MK. 2010. Chlorogenic acid exhibits anti-obesity property and improves lipid metabolism in high-fat diet-induced-obese mice. Food Chem Toxicol. 48:937–943.
  • D’Abrosca B, Pacifico S, Cefarelli G, Mastellone C, Fiorentino A. 2007. ‘Limoncella’apple, an Italian apple cultivar: phenolic and flavonoid contents and antioxidant activity. Food Chem. 104:1333–1337.
  • Escarpa A, Gonzalez MC. 1998. High-performance liquid chromatography with diode-array detection for the determination of phenolic compounds in peel and pulp from different apple varieties. J Chromatogr A. 823:331–337.
  • Feliciano RP, Antunes C, Ramos A, Serra AT, Figueira ME, Duarte CMM, de Carvalho A, Bronze MR. 2010. Characterization of traditional and exotic apple varieties from Portugal. Part 1 – nutritional, phytochemical and sensory evaluation. J Funct Foods. 2:34–45.
  • Ferreira L, Perestrelo R, Caldeira M, Câmara JS. 2009. Characterization of volatile substances in apples from Rosaceae family by headspace solid-phase microextraction followed by GC-qMS . J Sep Sci. 32:1875–1888.
  • Gaudout D, Megard D, Inisan C, Esteve C, Lejard F, inventors. 2006. Phloridzin-rich phenolic fraction and the use threof as a cosmetic, dietary or nutraceutical agent. US Patent No. 7,041,322. Washington, DC: US Patent and Trademark Office.
  • Giannetti V, Mariani MB, Mannino P, Marini F. 2017. Volatile fraction analysis by HS-SPME/GC–MS and chemometric modeling for traceability of apples cultivated in the Northeast Italy. Food Control. 78:215–221.
  • Giuliani C, Tani C, Maleci Bini L, Fico G, Colombo R, Martinelli T. 2018. Localization of phenolic compounds in the fruits of Silybum marianum characterized by different silymarin chemotype and altered colour. Fitoterapia. 130:210–218.
  • Hyson DA. 2011. A comprehensive review of apples and apple components and their relationship to human health. Adv Nutr. 2:408–420.
  • Jia M, Ren D, Nie Y, Yang X. 2017. Beneficial effects of apple peel polyphenols on vascular endothelial dysfunction and liver injury in high choline-fed mice. Food Funct. 8:1282–1292.
  • Kalinowska M, Bielawska A, Lewandowska-Siwkiewicz H, Priebe W, Lewandowski W. 2014. Apples: content of phenolic compounds vs. variety, part of apple and cultivation model, extraction of phenolic compounds, biological properties. Plant Physiol Biochem. 84:169–188.
  • Kianifard T, Chopra A. 2018. A therapeutic role for potassium (K) to reduce pain and complications related to the cardiovascular system and bone in rheumatoid arthritis (RA): a clinical research perspective. Rheumatol Res. 3:1–12.
  • Kubola J, Siriamornpun S, Meeso N. 2011. Phytochemicals, vitamin C and sugar content of Thai wild fruits. Food Chem. 126:972–981.
  • Larson AJ, Symons JD, Jalili T. 2012. Therapeutic potential of quercetin to decrease blood pressure: review of efficacy and mechanisms. Adv Nutr. 3:39–46.
  • Lee J, Jang HW, Jeong MC, Yoo S, Ha J. 2017. Analysis of volatile compounds as quality indicators for Fuji apples after cold storage. J Food Biochem. 41:e12410.
  • Lo Scalzo R, Testoni A, Genna A. 2001. ‘Annurca' apple fruit, a southern Italy apple cultivar: textural properties and aroma composition. Food Chem. 73:333–343.
  • Maggi F, Bilek T, Cristalli G, Papa F, Sagratini G, Vittori S. 2009. Comparison of the characterization of the fruit-like aroma of Teucrium flavum L. subsp flavum by hydrodistillation and solid-phase micro-extraction. J Sci Food Agric. 89:2505–2518.
  • Manzi P, Marconi S, Aguzzi A, Pizzoferrato L. 2004. Commercial mushrooms: nutritional quality and effect of cooking. Food Chem. 84:201–206.
  • Mari A, Tedesco I, Nappo A, Russo GL, Malorni A, Carbone V. 2010. Phenolic compound characterisation and antiproliferative activity of “Annurca” apple, a southern Italian cultivar. Food Chem. 123:157–164.
  • Matich AJ, Rowan DD, Banks NH. 1996. Solid phase microextraction for quantitative headspace sampling of apple volatiles. Anal Chem. 68:4114–4118.
  • Nasuti C, Ferraro S, Giovannetti R, Piangerelli M, Gabbianelli R. 2016. Metal and microelement biomarkers of neurodegeneration in early life permethrin-treated rats. Toxics. 4:3.
  • Nielsen FH. 1997. Boron in human and animal nutrition. Plant Soil. 193:199–208.
  • Paré PW, Tumlinson JH. 1999. Plant volatiles as a defense against insect herbivores. Plant Physiol. 121:325–331.
  • Porras D, Nistal E, Martínez-Flórez S, Pisonero-Vaquero S, Olcoz JL, Jover R, González-Galego J, et al. 2017. Protective effect of quercetin on high-fat diet-induced non-alcoholic fatty liver disease in mice is mediated by modulating intestinal microbiota imbalance and related gut–liver axis activation. Free Radic Biol Med. 102:188–202.
  • Reis SF, Rocha SM, Barros AS, Delgadillo I, Coimbra MA. 2009. Establishment of the volatile profile of ‘Bravo de Esmolfe’ apple variety and identification of varietal markers. Food Chem. 113:513–521.
  • Shin D, Joh HK, Kim KH, Park SM. 2013. Benefits of potassium intake on metabolic syndrome: the fourth Korean National Health and Nutrition Examination Survey (KNHANES IV). Atherosclerosis. 230:80–85.
  • Singh R, Barden A, Mori T, Beilin L. 2001. Advanced glycation end-products: a review. Diabetologia. 44:129–146.
  • Song J, Gardner BD, Holland JF, Beaudry RM. 1997. Rapid analysis of volatile flavor compounds in apple fruit using SPME and GC/time-of-flight mass spectrometry. J Agric Food Chem. 45:1801–1807.
  • Sut S, Poloniato G, Malagoli M, Dall'Acqua S. 2018. Fragmentation of the main triterpene acids of apple by LC-APCI–MSn. J Mass Spectrom. 53:882–892.
  • Todea DA, Cadar O, Simedru D, Roman C, Tanaselia C, Suatean I, Naghiu A. 2014. Determination of major-to-trace minerals and polyphenols in different apple cultivars. Not Bot Horti Agrobot Cluj Napoca. 42:523–529.
  • Tsao R, Yang R, Young JC, Zhu H. 2003. Polyphenolic profiles in eight apple cultivars using high-performance liquid chromatography (HPLC). J Agric Food Chem. 51:6347–6353.
  • Vrhovsek U, Rigo A, Tonon D, Mattivi F. 2004. Quantitation of polyphenols in different apple varieties. J Agric Food Chem. 52:6532–6538.
  • Yang KC, Tsai CY, Wang YJ, Wei PL, Lee CH, Chen JH, Wu CH, Ho YS. 2009. Apple polyphenol phloretin potentiates the anticancer actions of paclitaxel through induction of apoptosis in human hep G2 cells. Mol Carcinog. 48:420–431.
  • Young JC, Chu CLG, Lu X, Zhu H. 2004. Ester variability in apple varieties as determined by solid-phase microextraction and gas chromatography–mass spectrometry. J Agric Food Chem. 52:8086–8093.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.