Investigation the Effects Using Arvaneh Plant Extract on Quality Attributes of Ice cream

Document Type : Original Paper

Authors

1 Department of Food Science and Technology, Quchan Branch, Islamic Azad University, Quchan, Iran

2 Department of Food Processing, Research Institute of Food Science and Technology, Mashhad, Iran

Abstract

Due to the damages caused by additives, artificials and chemical flavors, replacing them with medicinal plants is a good solution to improve quality properties and physicochemical characteristics. Despite the nutritional properties and high caloric value of ice cream, the amounts of its antioxidant compounds are very low, which can be added by adding plant and vegetable extracts. The aim of conducting this research was to investigate the effect of using Hymenocrater platystegius Rech.f. plant extract (0.1, 0.5 and 0.9%) on physicochemical (pH, overrun, melt resistance and color indexes), textural (hardness and adhesiveness), rheological (viscosity, consistency coefficient and flow behavior index), and sensorial properties of ice cream in comparison with the control sample. According to the results, with increasing Hymenocrater platystegius Rech.f. extract amount, pH of ice cream samples decreased and overrun and resistance to melting increased significantly. In the texture analyzing test, adding the Hymenocrater platystegius Rech.f. extract to the formulation of ice cream, Hardness and adhesiveness of samples increased significantly (P<0.05). The results showed that all samples exhibited non-Newtonian and shear-thinning behavior and the power law model was highly effective in describing their rheological behavior. In the colorimetric test, increasing the Hymenocrater platystegius Rech.f. extract in ice cream formulation caused a decrease in L* and b* index and an increase in a* index. Also, the sensory evaluation results showed that samples with 0.5% of Hymenocrater platystegius Rech.f. extract, received the highest scores in the case of overall acceptance. Overall, Hymenocrater platystegius Rech.f. extract could be used for producing functional ice cream at the levels of 0.5% that had no negative effect on physicochemical and sensory properties.

Keywords

Main Subjects

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Abd El-Rahman, A. M., Madkor, S. A., Ibrahim, F. S., & Kilara, A. (1997). Physical Characteristics of Frozen Desserts Made with Cream, Anhydrous Milk Fat, or Milk Fat Fractions. Journal of dairy Science, 80(9), 1926-1935. https://doi.org/10.3168/jds.S0022-0302(97)76133-2
Adapa, S., Dingeldein, H., Schmidt, K. A., & Herald, T. J. (2000). Rheological Properties of Ice Cream Mixes and Frozen Ice Creams Containing Fat and Fat Replacers. Journal of dairy Science, 83(10), 2224-2229. https://doi.org/10.3168/jds.S0022-0302(00)75106-X
Akramian, M., Ebrahimi, S. N., & Joharchi, M. R. (2008). Essential Oil Composition of Hymenocrater platystegius Rech. f. from Iran. Journal of Essential Oil Bearing Plants, 11(2), 199-202. https://doi.org/10.1080/0972060X.2008.10643620
Alimohammadi, F., Haghighat khajavi, S., & Safari, R. (2021). The effect of lippie Citriodora Extract on Physic-Chemical Properties of Vanilla Ice-Cream. Journal of Innovation in Food Science and Technology, 13(1), 149-159. https://doi.org/10.30495/jfst.2021.680637 (in Persian)
Arbuckle, W. S. (1986). Ice Cream (4th ed.). Springer New York, NY. https://doi.org/10.1007/978-1-4757-5447-6
BaratianGhorghi, Z., Faezian, A., Yeganehzad, S., & Hesarinejad, M. A. (2022). Changes in Thermal, Textural, Color and Microstructure Properties of Oleogel Made from Beeswax with Grape Seed Oil under the Effect of Cooling Rate and Oleogelator Concentration. Research and Innovation in Food Science and Technology, 11(1), 43-54. https://doi.org/10.22101/JRIFST.2022.283673.1242 (in Persian)
Chatterjee, S. (2001). Cultivation of medicinal and aromatic plants in India-A commercial approach. International Conference on Medicinal and Aromatic Plants. Possibilities and Limitations of Medicinal and Aromatic Plant 576,
Gabbi, D. K., Bajwa, U., & Goraya, R. K. (2018). Physicochemical, melting and sensory properties of ice cream incorporating processed ginger (Zingiber officinale). International Journal of Dairy Technology, 71(1), 190-197. https://doi.org/10.1111/1471-0307.12430
García‐Pérez, F., Lario, Y., Fernández‐López, J., Sayas, E., Pérez‐Alvarez, J., & Sendra, E. (2005). Effect of orange fiber addition on yogurt color during fermentation and cold storage. Color Research & Application, 30(6), 457-463. https://doi.org/10.1002/col.20158
Ghaderi, S., Hesarinejad, M. A., Shekarforoush, E., Mirzababaee, S. M., & Karimpour, F. (2020). Effects of high hydrostatic pressure on the rheological properties and foams/emulsions stability of Alyssum homolocarpum seed gum. Food Science & Nutrition, 8(10), 5571-5579. https://doi.org/10.1002/fsn3.1834
Ghaderi, S., Mazaheri Tehrani, M., & Hesarinejad, M. A. (2021). Qualitative analysis of the structural, thermal and rheological properties of a plant ice cream based on soy and sesame milks. Food Science & Nutrition, 9(3), 1289-1298. https://doi.org/10.1002/fsn3.2037
Ghandehari Yazdi, A. P., Barzegar, M., Ahmadi Gavlighi, H., Sahari, M. A., & Mohammadian, A. H. (2020). Physicochemical properties and organoleptic aspects of ice cream enriched with microencapsulated pistachio peel extract. International Journal of Dairy Technology, 73(3), 570-577. https://doi.org/10.1111/1471-0307.12698
Goff, H., Davidson, V., & Cappi, E. (1994). Viscosity of ice cream mix at pasteurization temperatures. Journal of dairy Science, 77(8), 2207-2213. https://doi.org/10.3168/jds.S0022-0302(94)77163-0
Goff, H. D., & Hartel, R. W. (2013). Ice Cream (7th ed.). Springer Science+Business Media New York. https://doi.org/10.1007/978-1-4614-6096-1
Gohari, A. R., Saeidnia, S., Shahverdi, A. R., Yassa, N., Malmir, M., Mollazade, K., & Naghinejad, A. R. (2009). Phytochemistry and antimicrobial compounds of Hymenocrater calycinus. EurAsia Journal Biological Science, 3(9), 64-68. https://doi.org/10.5053/ejobios.2009.3.0.9
Gouhari Ardebili, A., Habibi Najafi, M. B., & Hadad Khodaparast, M. H. (2005). Effect of date syrup as a substitute for sugar on the physicochemical and sensory properties of soft ice cream. Journal of Food Science, 2(1), 23-32. https://doi.org/10.22067/IFSTRJ.V1I2.215 (in Persian)
Hwang, J.-Y., Shyu, Y.-S., & Hsu, C.-K. (2009). Grape wine lees improves the rheological and adds antioxidant properties to ice cream. LWT-Food Science and Technology, 42(1), 312-318. https://doi.org/10.1016/j.lwt.2008.03.008
Iran National Standards Organization. (2022). Milk and milk products-Determination of titrable acidity and pH-Test method, (INSO Standard No. 2852:2022). https://standard.inso.gov.ir/StandardView.aspx?Id=57037 (in Persian)
Karaman, S., Toker, Ö. S., Yüksel, F., Çam, M., Kayacier, A., & Dogan, M. (2014). Physicochemical, bioactive, and sensory properties of persimmon-based ice cream: Technique for order preference by similarity to ideal solution to determine optimum concentration. Journal of dairy Science, 97(1), 97-110. https://doi.org/10.3168/jds.2013-7111
Kavaz Yuksel, A. (2015). The Effects of Blackthorn (P runus Spinosa L.) Addition on Certain Quality Characteristics of Ice Cream. Journal of Food Quality, 38(6), 413-421. https://doi.org/10.1111/jfq.12170
Kheirkhahan, M., & Eshaghi, M. (2018). Investigation of physicochemical, antioxidant activity and organoleptic characteristic ofInvestigation of physicochemical, antioxidant activity and organoleptic characteristic of traditional ice cream contains chamomile, echium amoenum and valerian extracts. Journal of food science and technology ( Iran), 15(78), 217-232.  (in Persian)
Khosrow Shahi, S., Didar, Z., Hesarinejad, M. A., & Vazifedoost, M. (2021). Optimized pulsed electric field‐assisted extraction of biosurfactants from Chubak (Acanthophyllum squarrosum) root and application in ice cream. Journal of the Science of Food and Agriculture, 101(9), 3693-3706. https://doi.org/10.1002/jsfa.11000
Khosrow Shahi, S., Hesarinejad, M. A., Didar, Z., & Vazifedoost, M. (2021). Investigation of the effect of using Chubak extract on physicochemical and sensory properties of ice milk. Journal of food science and technology (Iran), 18(114), 225-235. https://doi.org/10.52547/fsct.18.114.225 (in Persian)
Mehditabar, H., Razavi, S. M., & Javidi, F. (2020). Influence of pumpkin puree and guar gum on the bioactive, rheological, thermal and sensory properties of ice cream. International Journal of Dairy Technology, 73(2), 447-458. https://doi.org/10.1111/1471-0307.12658
MILANI, E., & KOOCHEKI, A. (2011). The effects of date syrup and guar gum on physical, rheological and sensory properties of low fat frozen yoghurt dessert. International Journal of Dairy Technology, 64(1), 121-129. https://doi.org/10.1111/j.1471-0307.2010.00631.x
Mirchouli Borazgh, A., Mazaheri Tehrani, M., Mortazavi, S. A., & Razavi, S. M. A. (2020). A Comparison of Physicochemical and Sensory Characteristics of Ice Cream made from Cow's Milk, Soy Milk, or their Mix Powder. Research and Innovation in Food Science and Technology, 9(1), 73-84. https://doi.org/10.22101/JRIFST.2020.184654.1091 (in Persian)
Moeenfard, M., & Tehrani, M. M. (2008). Effect of some stabilizers on the physicochemical and sensory properties of ice cream type frozen yogurt. American-Eurasian J. Agric. Environ. Sci, 4(5), 584-589.
Muse, M. R., & Hartel, R. W. (2004). Ice Cream Structural Elements that Affect Melting Rate and Hardness. Journal of dairy Science, 87(1), 1-10. https://doi.org/10.3168/jds.S0022-0302(04)73135-5
Parniakov, O., Roselló-Soto, E., Barba, F. J., Grimi, N., Lebovka, N., & Vorobiev, E. (2015). New approaches for the effective valorization of papaya seeds: Extraction of proteins, phenolic compounds, carbohydrates, and isothiocyanates assisted by pulsed electric energy. Food Research International, 77, 711-717. https://doi.org/10.1016/j.foodres.2015.03.031
Prapasuwannakul, N., Boonchai, S., & Pengpengpit, N. (2014). Use of green coconut pulp as cream, milk, stabilizer and emulsifier replacer in germinated brown rice ice cream. International Journal of Nutrition and Food Engineering, 8(5), 462-465. https://doi.org/10.5281/zenodo.1092417
Rechinger, K.-H., & Druk, A. (1982). Flora Iranica, Labiatae. Akademische Druck Verlagsantalt. Graze, 150-151.
Rezagholi, F., & Hesarinejad, M. A. (2017). Integration of fuzzy logic and computer vision in intelligent quality control of celiac-friendly products. Procedia computer science, 120, 325-332. https://doi.org/10.1016/j.procs.2017.11.246
Sagdic, O., Ozturk, I., Cankurt, H., & Tornuk, F. (2012). Interaction between some phenolic compounds and probiotic bacterium in functional ice cream production. Food and Bioprocess Technology, 5(8), 2964-2971. https://doi.org/10.1007/s11947-011-0611-x
Sofjan, R. P., & Hartel, R. W. (2004). Effects of overrun on structural and physical characteristics of ice cream. International dairy journal, 14(3), 255-262. https://doi.org/10.1016/j.idairyj.2003.08.005
Soukoulis, C., Lebesi, D., & Tzia, C. (2009). Enrichment of ice cream with dietary fibre: Effects on rheological properties, ice crystallisation and glass transition phenomena. Food Chemistry, 115(2), 665-671. https://doi.org/10.1016/j.foodchem.2008.12.070
Sun-Waterhouse, D., Edmonds, L., Wadhwa, S., & Wibisono, R. (2013). Producing ice cream using a substantial amount of juice from kiwifruit with green, gold or red flesh. Food Research International, 50(2), 647-656. https://doi.org/10.1016/j.foodres.2011.05.030
TOPDAŞ, E. F., ÇAKMAKÇI, S., & ÇAKIROĞLU, K. (2017). The antioxidant activity, vitamin c contents, physical, chemical and sensory properties of ice cream supplemented with cornelian cherry (Cornus mas L.) paste. Kafkas Üniversitesi Veteriner Fakültesi Dergisi, 23(5).
Ürkek, B., Şengül, M., Akgül, H. İ., & Kotan, T. E. (2019). Antioxidant activity, physiochemical and sensory characteristics of ice cream incorporated with sloe berry (Prunus spinosa L.). International Journal of Food Engineering, 15(11-12). https://doi.org/10.1515/ijfe-2018-0029
Varela, P., Pintor, A., & Fiszman, S. (2014). How hydrocolloids affect the temporal oral perception of ice cream. Food hydrocolloids, 36, 220-228. https://doi.org/10.1016/j.foodhyd.2013.10.005
Vital, A. C. P., Santos, N. W., Matumoto‐Pintro, P. T., da Silva Scapim, M. R., & Madrona, G. S. (2018). Ice cream supplemented with grape juice residue as a source of antioxidants. International Journal of Dairy Technology, 71(1), 183-189. https://doi.org/10.1111/1471-0307.12412
Yangılar, F. (2015). Properties of ice cream with green banana flour. Food Technology and Biotechnology, 53(3), 315-323.
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Volume 12, Issue 3
December 2023
Pages 343-354
  • Receive Date: 26 December 2022
  • Revise Date: 16 April 2023
  • Accept Date: 19 April 2023