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Drying Technology
An International Journal
Volume 42, 2024 - Issue 6
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Research Articles

Impact of different drying methods on physicochemical characteristics and nutritional compositions of bee larvae

, &
Pages 1037-1050 | Received 03 Dec 2023, Accepted 31 Mar 2024, Published online: 10 Apr 2024

References

  • Wang, H.; Rehman, K. u.; Liu, X.; Yang, Q.; Zheng, L.; Li, W.; Cai, M.; Li, Q.; Zhang, J.; Yu, Z. Insect Biorefinery: A Green Approach for Conversion of Crop Residues into Biodiesel and Protein. Biotechnol. Biofuels. 2017, 10, 304. DOI: 10.1186/s13068-017-0986-7.
  • Gorissen, S. H. M.; Crombag, J. J. R.; Senden, J. M. G.; Waterval, W. A. H.; Bierau, J.; Verdijk, L. B.; van Loon, L. J. C. Protein Content and Amino Acid Composition of Commercially Available Plant-Based Protein Isolates. Amino Acids. 2018, 50, 1685–1695. DOI: 10.1007/s00726-018-2640-5.
  • Sarwar, G. The Protein Digestibility-Corrected Amino Acid Score Method Overestimates Quality of Proteins Containing Antinutritional Factors and of Poorly Digestible Proteins Supplemented with Limiting Amino Acids in Rats. J. Nutr. 1997, 127, 758–764. DOI: 10.1093/jn/127.5.758.
  • Rumpold, B. A.; Schlüter, O. K. Nutritional Composition and Safety Aspects of Edible Insects. Mol. Nutr. Food Res. 2013, 57, 802–823. DOI: 10.1002/mnfr.201200735.
  • Van Huis, A.; Van Itterbeeck, J.; Klunder, H.; Mertens, E.; Halloran, A.; Muir, G.; Vantomme, P. Edible Insects: Future Prospects for Food and Feed Security. Food and Agriculture Organization of the United Nations. 2013.
  • Nagasaki, Y.; Abe, M.; Onishi, S.; Okamoto, Y.; Toida, T.; Higashi, K. Structure and Immunomodulatory Activity of Glycogen Derived from Honeybee Larvae (Apis Mellifera). Biol. Pharm. Bull. 2021, 44, 1156–1159. DOI: 10.1248/bpb.b21-00239.
  • Dewan, M. F.; Ahiduzzaman, M.; Islam, M. N.; Shozib, H. B. Potential Benefits of Bioactive Compounds of Traditional Rice Grown in South and South-East Asia: A Review. Rice Sci. 2023, 30, 537–551. DOI: 10.1016/j.rsci.2023.07.002.
  • U.S. Dairy Export Council. Reference Manual for U.S. Whey and Lactose Products. U.S. Dairy Export Council.
  • Sweers, L. J. H.; Politiek, R. G. A.; Lakemond, C. M. M.; Bruins, M. E.; Boom, R. M.; Fogliano, V.; Mishyna, M.; Keppler, J. K.; Schutyser, M. A. I. Dry Fractionation for Protein Enrichment of Animal by-Products and Insects: A Review. J. Food Eng. 2022, 313, 110759. DOI: 10.1016/j.jfoodeng.2021.110759.
  • Loeffler, A.; Zhu, R.; Hochstetter, J.; Li, M.; Fu, K.; Diaz-Alvarez, A.; Nakayama, T.; Shine, J. M.; Kuncic, Z. Topological Properties of Neuromorphic Nanowire Networks. Front. Neurosci. 2020, 14, 184. DOI: 10.3389/fnins.2020.00184.
  • Zhang, F.; Xu, Y.; Kong, B.; Chen, Q.; Sun, F.; Zhang, H.; Liu, Q. Comparative Study of Two Types of Pre-Extraction Treatment (Drying or Non-Drying) on Physicochemical, Structural and Functional Properties of Extracted Insect Proteins from Tenebrio Molitor Larvae. Curr. Res. Food Sci. 2022, 5, 1570–1580. DOI: 10.1016/j.crfs.2022.09.004.
  • Queiroz, L. S.; Nogueira Silva, N. F.; Jessen, F.; Mohammadifar, M. A.; Stephani, R.; Fernandes de Carvalho, A.; Perrone, I. T.; Casanova, F. Edible Insect as an Alternative Protein Source: A Review on the Chemistry and Functionalities of Proteins under Different Processing Methods. Heliyon 2023, 9, e14831. DOI: 10.1016/j.heliyon.2023.e14831.
  • Azam, M. S.; Islam, M. N.; Wahiduzzaman, M.; Alam, M.; Dhrubo, A. A. K. Antiviral Foods in the Battle against Viral Infections: Understanding the Molecular Mechanism. Food Sci. Nutr. 2023, 11, 4444–4459. DOI: 10.1002/fsn3.3454.
  • Vidinamo, F.; Fawzia, S.; Karim, M. A. Effect of Drying Methods and Storage with Agro-Ecological Conditions on Phytochemicals and Antioxidant Activity of Fruits: A Review. Crit. Rev. Food Sci. Nutr. 2022, 62, 353–361. DOI: 10.1080/10408398.2020.1816891.
  • Boateng, I. D. Recent Processing of Fruits and Vegetables Using Emerging Thermal and Non-Thermal Technologies. A Critical Review of Their Potentialities and Limitations on Bioactives, Structure, and Drying Performance. Crit. Rev. Food Sci. Nutr. 2022, 1–35. DOI: 10.1080/10408398.2022.2140121.
  • Punthi, F.; Yudhistira, B.; Gavahian, M.; Chang, C. K.; Cheng, K. C.; Hou, C. Y.; Hsieh, C. W. Pulsed Electric Field-Assisted Drying: A Review of Its Underlying Mechanisms, Applications, and Role in Fresh Produce Plant-Based Food Preservation. Compr. Rev. Food Sci. Food Saf. 2022, 21, 5109–5130. DOI: 10.1111/1541-4337.13052.
  • Fathi, F.; Ebrahimi, S. N.; Matos, L. C.; Oliveira, M. B. P. P.; Alves, R. C. Emerging Drying Techniques for Food Safety and Quality: A Review. Compr. Rev. Food Sci. Food Saf. 2022, 21, 1125–1160. DOI: 10.1111/1541-4337.12898.
  • Yang, R.; Chen, J. Recent Application of Artificial Neural Network in Microwave Drying of Foods: A Mini-Review. J. Sci. Food Agric. 2022, 102, 6202–6210. DOI: 10.1002/jsfa.12008.
  • Zielinska, M.; Ropelewska, E.; Xiao, H. W.; Mujumdar, A. S.; Law, C. L. Review of Recent Applications and Research Progress in Hybrid and Combined Microwave-Assisted Drying of Food Products: Quality Properties. Crit. Rev. Food Sci. Nutr. 2020, 60, 2212–2264. DOI: 10.1080/10408398.2019.1632788.
  • Fan, K.; Zhang, M.; Mujumdar, A. S. Recent Developments in High Efficient Freeze-Drying of Fruits and Vegetables Assisted by Microwave: A Review. Crit. Rev. Food Sci. Nutr. 2019, 59, 1357–1366. DOI: 10.1080/10408398.2017.1420624.
  • Saucier, L.; M’ballou, C.; Ratti, C.; Deschamps, M.-H.; Lebeuf, Y.; Vandenberg, G. Comparison of Black Soldier Fly Larvae Pre-Treatments and Drying Techniques on the Microbial Load and Physico-Chemical Characteristics. JIFF. 2022, 8, 45–64. DOI: 10.3920/JIFF2021.0002.
  • Li, Z.; Raghavan, G. S. V.; Orsat, V. Temperature and Power Control in Microwave Drying. J. Food Eng. 2010, 97, 478–483. DOI: 10.1016/j.jfoodeng.2009.11.004.
  • De Martino, L.; Caputo, L.; Amato, G.; Iannone, M.; Barba, A. A.; De Feo, V. Postharvest Microwave Drying of Basil (Ocimum Basilicum L.): The Influence of Treatments on the Quality of Dried Products. Foods 2022, 11, 1029. DOI: 10.3390/foods11071029.
  • Xu, W.; Islam, M. N.; Cao, X.; Tian, J.; Zhu, G. Effect of Relative Humidity on Drying Characteristics of Microwave Assisted Hot Air Drying and Qualities of Dried Finger Citron Slices. Lwt 2021, 137, 110413. DOI: 10.1016/j.lwt.2020.110413.
  • Cao, X.; Islam, M. N.; Zhong, S.; Pan, X.; Song, M.; Shang, F.; Nie, H.; Xu, W.; Duan, Z. Drying Kinetics, Antioxidants, and Physicochemical Properties of Litchi Fruits by Ultrasound-Assisted Hot Air-Drying. J. Food Biochem. 2020, 44, e13073. DOI: 10.1111/jfbc.13073.
  • Zhou, W.; Cao, X.; Islam, M. N.; Zheng, H.; Li, J.; Liu, F.; Cao, Y.; Dai, Y. Comparison of Hydrability, Antioxidants, Microstructure, and Sensory Quality of Barley Grass Powder Using Ultra-Micro-Crushing Combined with Hot Air and Freeze Drying. Food Sci. Nutr. 2021, 9, 1870–1880. DOI: 10.1002/fsn3.2138.
  • Hasan, M.; Ahiduzzaman, Islam, N.; Haque, A.; Hossain, M. Formulation and Senso-Chemical Evaluation of Palmyrah Palm (Borassus Flabellifer L.) Based Value-Added Products. JFR. 2022, 11, 36–46. DOI: 10.5539/jfr.v11n3p36.
  • Islam, M.; Alam, M.; Amin, M.; Roy, D. Effect of Sun Drying on the Composition and Shelf Life of Goat Meat (Capra Aegagrus Hircus). Res. Pub. J 2010, 4, 114–123.
  • Islam, M. N.; Zhang, M.; Adhikari, B.; Xinfeng, C.; Xu, B-g The Effect of Ultrasound-Assisted Immersion Freezing on Selected Physicochemical Properties of Mushrooms. Int. J. Refrig. 2014, 42, 121–133. DOI: 10.1016/j.ijrefrig.2014.02.012.
  • Yue, Y.; Zhang, Q.; Wan, F.; Ma, G.; Zang, Z.; Xu, Y.; Jiang, C.; Huang, X. Effects of Different Drying Methods on the Drying Characteristics and Quality of Codonopsis Pilosulae Slices. Foods 2023, 12, 1323. DOI: 10.3390/foods12061323.
  • Cao, X.; Islam, M. N.; Duan, Z.; Pan, X.; Xu, W.; Wei, X.; Zhong, S. Chlorogenic Acid Osmosis of Snakehead Fish: A Novel Approach to Maintain Quality and Suppress Deterioration during Storage. Int. J. Food Prop. 2020, 23, 387–399. DOI: 10.1080/10942912.2020.1732409.
  • Alam, S.; Ahiduzzaman, M.; Islam, M.; Haque, M.; Akanda, M. Formulation and Senso-Chemical Evaluation of Aloe Vera (Aloe Barbadensis Miller) Based Value Added Beverages. Ann. Bangladesh Agric. 2022, 25, 43–54. DOI: 10.3329/aba.v25i1.58154.
  • Feng, M.; Chitrakar, B.; Chen, J.; Islam, M. N.; Wei, B.; Wang, B.; Zhou, C.; Ma, H.; Xu, B. Effect of Multi-Mode Thermosonication on the Microbial Inhibition and Quality Retention of Strawberry Clear Juice during Storage at Varied Temperatures. Foods 2022, 11, 2593. DOI: 10.3390/foods11172593.
  • Xiaohuang, C.; Azam, M.; Islam, M. Effect of Chitosan and Hydroxypropyl Starch Complex Polysaccharide on the Physico-Chemical Properties of Tilapia Fish (Oreochromis Mossambicus) Gel. Food Res. 2022, 6, 340–348. DOI: 10.26656/fr.2017.6(5).663.
  • Wang, A.; Islam, M. N.; Johansen, A.; Haapalainen, M.; Latvala, S.; Edelenbos, M. Pathogenic Fusarium Oxysporum F. Sp. Cepae Growing inside Onion Bulbs Emits Volatile Organic Compounds That Correlate with the Extent of Infection. Postharvest Biol. Technol. 2019, 152, 19–28. DOI: 10.1016/j.postharvbio.2019.02.010.
  • Choudhury, M. S.; Islam, M. N.; Khan, M. M.; Ahiduzzaman, M.; Masum, M. M. I.; Ali, M. A. Effect of Extraction Methods on Physical and Chemical Properties and Shelf Life of Black Cumin (Nigella Sativa L.) Oil. J. Agric Food Res. 2023, 14, 100836. DOI: 10.1016/j.jafr.2023.100836.
  • Islam, M. N.; Nielsen, G.; Stærke, S.; Kjær, A.; Jørgensen, B.; Edelenbos, M. Novel Non-Destructive Quality Assessment Techniques of Onion Bulbs: A Comparative Study. J. Food Sci. Technol. 2018, 55, 3314–3324. DOI: 10.1007/s13197-018-3268-x.
  • Islam, M. N.; Wang, A.; Pedersen, J. S.; Sørensen, J. N.; Körner, O.; Edelenbos, M. Online Measurement of Temperature and Relative Humidity as Marker Tools for Quality Changes in Onion Bulbs during Storage. PLOS One. 2019, 14, e0210577. DOI: 10.1371/journal.pone.0210577.
  • Islam, M. N. Chemometrics in Nondestructive Quality Evaluation. In Nondestructive Quality Assessment Techniques for Fresh Fruits and Vegetables; Pathare, P. B., Rahman, M. S., Eds. Springer Nature Singapore: Singapore, 2022; pp 331–355.
  • Cao, X.; Chen, J.; Islam, M. N.; Xu, W.; Zhong, S. Effect of Intermittent Microwave Volumetric Heating on Dehydration, Energy Consumption, Antioxidant Substances, and Sensory Qualities of Litchi Fruit during Vacuum Drying. Molecules 2019, 24, 4291. DOI: 10.3390/molecules24234291.
  • Parniakov, O.; Mikhrovska, M.; Wiktor, A.; Alles, M.; Ristic, D.; Bogusz, R.; Nowacka, M.; Devahastin, S.; Mujumdar, A.; Heinz, V.; Smetana, S. Insect Processing for Food and Feed: A Review of Drying Methods. Drying Technol. 2022, 40, 1500–1513. DOI: 10.1080/07373937.2021.1962905.
  • Fombong, F. T.; Van Der Borght, M.; Vanden Broeck, J. Influence of Freeze-Drying and Oven-Drying Post Blanching on the Nutrient Composition of the Edible Insect Ruspolia Differens. Insects 2017, 8, 102. DOI: 10.3390/insects8030102.
  • Tonneijck-Srpová, L.; Venturini, E.; Humblet-Hua, K.; Bruins, M. Impact of Processing on Enzymatic Browning and Texturization of Yellow Mealworms. JIFF. 2019, 5, 267–277. DOI: 10.3920/JIFF2018.0025.
  • Ali, M. A.; Saha, K. K.; Choudhury, M. S.; Ahiduzzaman, M.; Islam, M. N. Formulation, Senso-Chemical Analysis and Shelf-Life Study of Biscuits Using Stevia Leaf as the Substitute for Sugar. AJDFR. 2022, 41, 424–430. DOI: 10.18805/ajdfr.DRF-253.
  • Rahman, M. N.; Islam, M. N.; Mia, M. M.; Hossen, S.; Dewan, M. F.; Mahomud, M. S. Fortification of Set Yoghurts with Lemon Peel Powders: An Approach to Improve Physicochemical, Microbiological, Textural and Sensory Properties. Appl. Food Res. 2024, 4, 100386. DOI: 10.1016/j.afres.2023.100386.
  • Kubra, I. R.; Rao, L. J. M. Effect of Microwave Drying on the Phytochemical Composition of Volatiles of Ginger. Int. J. of Food Sci. Tech. 2011, 47, 53–60. DOI: 10.1111/j.1365-2621.2011.02806.x.
  • Poojary, M. M.; Lund, M. N. Chemical Stability of Proteins in Foods: Oxidation and the Maillard Reaction. Annu. Rev. Food Sci. Technol. 2022, 13, 35–58. DOI: 10.1146/annurev-food-052720-104513.
  • Yang, J.; Lu, X.; Yao, X.; Li, Y.; Yang, Y.; Zhou, Q.; Zhang, S. Inhibiting Degradation of Cellulose Dissolved in Ionic Liquids via Amino Acids. Green Chem. 2019, 21, 2777–2787. DOI: 10.1039/C9GC00334G.
  • Mihály, J.; Deák, R.; Szigyártó, I. C.; Bóta, A.; Beke-Somfai, T.; Varga, Z. Characterization of Extracellular Vesicles by Ir Spectroscopy: Fast and Simple Classification Based on Amide and Ch Stretching Vibrations. Biochim. Biophys. Acta. Biomembr. 2017, 1859, 459–466. DOI: 10.1016/j.bbamem.2016.12.005.
  • Maes, G.; Smets, J. Hydrogen Bond Cooperativity: A Quantitative Study Using Matrix-Isolation Ft-Ir Spectroscopy. J. Phys. Chem. 1993, 97, 1818–1825. DOI: 10.1021/j100111a017.
  • Fumoto, E.; Sato, S.; Takanohashi, T. Determination of Carbonyl Functional Groups in Heavy Oil Using Infrared Spectroscopy. Energy Fuels 2020, 34, 5231–5235. DOI: 10.1021/acs.energyfuels.9b02703.
  • Teng, X.; Cong, X.; Chen, L.; Wang, Q.; Xue, C.; Li, Z. Effect of Repeated Freeze-Thawing on the Storage Quality of Pacific Oyster (Crassostrea Gigas). Food Measure. 2022, 16, 4641–4649. DOI: 10.1007/s11694-022-01537-5.
  • Baigts-Allende, D.; Doost, A. S.; Ramírez-Rodrigues, M.; Dewettinck, K.; Van der Meeren, P.; de Meulenaer, B.; Tzompa-Sosa, D. Insect Protein Concentrates from Mexican Edible Insects: Structural and Functional Characterization. LWT 2021, 152, 112267. DOI: 10.1016/j.lwt.2021.112267.
  • Cao, H.; Sun, R.; Shi, J.; Li, M.; Guan, X.; Liu, J.; Huang, K.; Zhang, Y. Effect of Ultrasonic on the Structure and Quality Characteristics of Quinoa Protein Oxidation Aggregates. Ultrason. Sonochem. 2021, 77, 105685. DOI: 10.1016/j.ultsonch.2021.105685.
  • Liu, Q.; Wang, R. F.; Zhang, B. B.; Zhao, X. Y.; Wang, D.; Zhang, C. Protein Secondary Structure Changes of Watermelon Juice Treated with High Hydrostatic Pressure by Ftir Spectroscopy. J. Food Process Eng. 2014, 37, 543–549. DOI: 10.1111/jfpe.12102.
  • Ochieng, B. O.; Anyango, J. O.; Nduko, J. M.; Mudalungu, C. M.; Cheseto, X.; Tanga, C. M. Aroma Characterization and Consumer Acceptance of Four Cookie Products Enriched with Insect (Ruspolia Differens) Meal. Sci. Rep. 2023, 13, 11145. DOI: 10.1038/s41598-023-38166-x.
  • Özkan-Karabacak, A.; Özcan-Sinir, G.; Utku Çopur, Ö. Effects of Drying Methods on the Composition of Volatile Compounds in Fruits and Vegetables. In Flavour Science Proceedings of the XV Weurman Flavour Research Symposium, Siegmund, B., Leitner, E., Eds.; Verlag der Technischen Universität Graz, 2018; pp 95-98. DOI: 10.3217/978-3-85125-593-5-19.
  • Wu, J.; Ling, C.; Chen, Y.; Li, Z.; Song, F.; Raghavan, G. V.; Jin, G.; Song, C. Monitoring and Control of Microwave Drying with Volatiles Detection of Celery Stalks. Comput. Electron. Agric. 2021, 187, 106256. DOI: 10.1016/j.compag.2021.106256.
  • Wang, L.; Wen, H.; Yang, N.; Li, H. Effect of Vacuum Freeze Drying and Hot Air Drying on Dried Mulberry Fruit Quality. PLOS One. 2023, 18, e0283303. DOI: 10.1371/journal.pone.0283303.
  • Riekkinen, K.; Väkeväinen, K.; Korhonen, J. The Effect of Substrate on the Nutrient Content and Fatty Acid Composition of Edible Insects. Insects 2022, 13, 590. DOI: 10.3390/insects13070590.
  • Dobrotvorskiy, S.; Dobrovolska, L.; Basova, Y.; Aleksenko, B. Diagnostics of Uneven Heating of the Adsorbent by Microwave Radiation and Measures to Increase the Uniformity of Its Heating. Period. Polytech. Chem. Eng. 2019, 63, 640–649. DOI: 10.3311/PPch.13234.

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