ACS Publications. Most Trusted. Most Cited. Most Read
My Activity
CONTENT TYPES

Figure 1Loading Img

Physicochemical and Functional Properties of Hemp (Cannabis sativa L.) Protein Isolate

View Author Information
Department of Food Science and Technology, South China University of Technology, Guangzhou 510640, People's Republic of China
Cite this: J. Agric. Food Chem. 2006, 54, 23, 8945–8950
Publication Date (Web):October 18, 2006
https://doi.org/10.1021/jf0619176
Copyright © 2006 American Chemical Society

    Article Views

    5260

    Altmetric

    -

    Citations

    LEARN ABOUT THESE METRICS
    Read OnlinePDF (113 KB)

    Abstract

    The amino acid composition and physicochemical and functional properties of hemp (Cannabis sativa L.) protein isolate (HPI) were evaluated and compared with those of soy protein isolate (SPI). Edestin, a kind of hexameric legumin, was the major protein component. HPI had similar or higher levels of essential amino acids (except lysine), in comparison to those amino acids of SPI. The essential amino acids in HPI (except lysine and sulfur-containing amino acids) are sufficient for the FAO/WHO suggested requirements for 2−5 year old children. The protein solubility (PS) of HPI was lower than that of SPI at pH less than 8.0 but similar at above pH 8.0. HPI contained much higher free sulfhydryl (SH) content than SPI. Differential scanning calorimetry analysis showed that HPI had only one endothermic peak with denaturation temperature (Td) of about 95.0 °C, attributed to the edestin component. The Td of the endotherm was nearly unaffected by 20−40 mM sodium dodecyl sulfate but significantly decreased by 20 mM dithiothreitol (P < 0.05). The emulsifying activity index, emulsion stability index, and water-holding capacity of HPI were much lower than those of SPI, and the fat adsorption capacity was similar. The data suggest that HPI can be used as a valuable source of nutrition for infants and children but has poor functional properties when compared with SPI. The poor functional properties of HPI have been largely attributed to the formation of covalent disulfide bonds between individual proteins and subsequent aggregation at neutral or acidic pH, due to its high free sulfhydryl content from sulfur-containing amino acids.

    Keywords: Hemp protein isolate (HPI); Cannabis sativa L.; amino acid composition; physiochemical property; functional property

    *

     Corresponding author. Telephone (086)20-87114262; fax (086)20-87114263; e-mail [email protected].

    Cited By

    This article is cited by 257 publications.

    1. Joshua S. Saad, Vermont P Dia. Bromelain Hydrolysis Modified the Functionality, Antioxidant, and Anti-Inflammatory Properties of Hempseed (Cannabis sativa L.) Protein Isolated at pH 12. ACS Food Science & Technology 2023, 3 (6) , 1049-1056. https://doi.org/10.1021/acsfoodscitech.3c00033
    2. Yixiang Xu, Edward Sismour, Julia Wilkins Britland, Anisa Sellers, Zaid Abraha-Eyob, Adnan Yousuf, Qinchun Rao, Jimin Kim, Wei Zhao. Physicochemical, Structural, and Functional Properties of Hemp Protein vs Several Commercially Available Plant and Animal Proteins: A Comparative Study. ACS Food Science & Technology 2022, 2 (10) , 1672-1680. https://doi.org/10.1021/acsfoodscitech.2c00250
    3. Qingling Wang, Jiang Jiang, Youling L. Xiong. Genipin-Aided Protein Cross-linking to Modify Structural and Rheological Properties of Emulsion-Filled Hempseed Protein Hydrogels. Journal of Agricultural and Food Chemistry 2019, 67 (46) , 12895-12903. https://doi.org/10.1021/acs.jafc.9b05665
    4. Qingling Wang, Yan Jin, Youling L. Xiong. Heating-Aided pH Shifting Modifies Hemp Seed Protein Structure, Cross-Linking, and Emulsifying Properties. Journal of Agricultural and Food Chemistry 2018, 66 (41) , 10827-10834. https://doi.org/10.1021/acs.jafc.8b03901
    5. Lara P. Orio, Giovanna Boschin, Teresa Recca, Carlo F. Morelli, Laura Ragona, Pierangelo Francescato, Anna Arnoldi, and Giovanna Speranza . New ACE-Inhibitory Peptides from Hemp Seed (Cannabis sativa L.) Proteins. Journal of Agricultural and Food Chemistry 2017, 65 (48) , 10482-10488. https://doi.org/10.1021/acs.jafc.7b04522
    6. Salvatore Multari, Madalina Neacsu, Lorraine Scobbie, Louise Cantlay, Gary Duncan, Nicholas Vaughan, Derek Stewart, and Wendy R. Russell . Nutritional and Phytochemical Content of High-Protein Crops. Journal of Agricultural and Food Chemistry 2016, 64 (41) , 7800-7811. https://doi.org/10.1021/acs.jafc.6b00926
    7. Xiaoli Yan, Jiajing Tang, Carolina dos Santos Passos, Alessandra Nurisso, Claudia Avello Simões-Pires, Mei Ji, Hongxiang Lou, and Peihong Fan . Characterization of Lignanamides from Hemp (Cannabis sativa L.) Seed and Their Antioxidant and Acetylcholinesterase Inhibitory Activities. Journal of Agricultural and Food Chemistry 2015, 63 (49) , 10611-10619. https://doi.org/10.1021/acs.jafc.5b05282
    8. Milica Pojić, Aleksandra Mišan, Marijana Sakač, Tamara Dapčević Hadnađev, Bojana Šarić, Ivan Milovanović, and Miroslav Hadnađev . Characterization of Byproducts Originating from Hemp Oil Processing. Journal of Agricultural and Food Chemistry 2014, 62 (51) , 12436-12442. https://doi.org/10.1021/jf5044426
    9. Saima Hafeez Khan, Masood Sadiq Butt, Mian Kamran Sharif, Ayesha Sameen, Semee Mumtaz, and Muhammad Tauseef Sultan . Functional Properties of Protein Isolates Extracted from Stabilized Rice Bran by Microwave, Dry Heat, and Parboiling. Journal of Agricultural and Food Chemistry 2011, 59 (6) , 2416-2420. https://doi.org/10.1021/jf104177x
    10. Lilian E. Abugoch, Nalda Romero, Cristián A. Tapia, Jorge Silva and Mónica Rivera. Study of Some Physicochemical and Functional Properties of Quinoa (Chenopodium Quinoa Willd) Protein Isolates. Journal of Agricultural and Food Chemistry 2008, 56 (12) , 4745-4750. https://doi.org/10.1021/jf703689u
    11. Xuan Dong, Meng Wai Woo, Siew Young Quek. The physicochemical properties, functionality, and digestibility of hempseed protein isolate as impacted by spray drying and freeze drying. Food Chemistry 2024, 433 , 137310. https://doi.org/10.1016/j.foodchem.2023.137310
    12. Somayeh Gholivand, Tai Boon Tan, Masni Mat Yusoff, Hew Weng Choy, Shuh Jun Teow, Yong Wang, Yuanfa Liu, Chin Ping Tan. Elucidation of synergistic interactions between anionic polysaccharides and hemp seed protein isolate and their functionalities in stabilizing the hemp seed oil-based nanoemulsion. Food Hydrocolloids 2024, 146 , 109181. https://doi.org/10.1016/j.foodhyd.2023.109181
    13. Peng-Wei Xu, Xiao-Jie Yue, Xiao-Fan Yuan, Bing Zhao. Hemp seed globulin-alginate nanoparticles for encapsulation of Cannabisin A with enhanced colloidal stability and antioxidant activity. International Journal of Biological Macromolecules 2024, 256 , 128380. https://doi.org/10.1016/j.ijbiomac.2023.128380
    14. Lorenzo Nissen, Flavia Casciano, Elena Babini, Andrea Gianotti. Beneficial metabolic transformations and prebiotic potential of hemp bran and its alcalase hydrolysate, after colonic fermentation in a gut model. Scientific Reports 2023, 13 (1) https://doi.org/10.1038/s41598-023-27726-w
    15. Seyedeh Fatemeh Mirpoor, Pablo F. Ibáñez-Ibáñez, C. Valeria L. Giosafatto, Teresa del Castillo-Santaella, Miguel A. Rodríguez-Valverde, Julia Maldonado-Valderrama. Surface activity of protein extracts from seed oil by-products and wettability of developed bioplastics. Food Hydrocolloids 2023, 145 , 109091. https://doi.org/10.1016/j.foodhyd.2023.109091
    16. Gulsah Karabulut, Ozan Kahraman, Karthik Pandalaneni, Ragya Kapoor, Hao Feng. A comprehensive review on hempseed protein: Production, functional and nutritional properties, novel modification methods, applications, and limitations. International Journal of Biological Macromolecules 2023, 253 , 127240. https://doi.org/10.1016/j.ijbiomac.2023.127240
    17. Peng-Wei Xu, Xiao-Jie Yue, Xiao-Fan Yuan, Bing Zhao. Covalent modification using hemp seed polyphenols improves the structural and functional properties of the hemp seed globulin. Food Bioscience 2023, 56 , 103293. https://doi.org/10.1016/j.fbio.2023.103293
    18. Rashmi Rawat, Charanjiv Singh Saini. Modification of sunnhemp (Crotalaria juncea) protein isolate by high intensity ultrasound: Impact on the molecular structure, amino acid composition and nutritional profiling. Food Bioscience 2023, 56 , 103100. https://doi.org/10.1016/j.fbio.2023.103100
    19. Fu‐shun Zhang, Yang Yang, Xin Bian, Chun‐min Ma, Li‐kun Ren, Can Zhang, Xin‐hui Pang, Na Zhang. The structural and functional properties of hemp protein isolate‐epigallocatechin‐3‐gallate biopolymer covalent complex during heating. Journal of the Science of Food and Agriculture 2023, 9 https://doi.org/10.1002/jsfa.13135
    20. Ning Wang, Tong Wang, Yingjie Yu, Kaiwen Xing, Lanxia Qin, Dianyu Yu. Dynamic high-pressure microfluidization assist in stabilizing hemp seed protein-gum Arabic bilayer emulsions: Rheological properties and oxidation kinetic model. Industrial Crops and Products 2023, 203 , 117201. https://doi.org/10.1016/j.indcrop.2023.117201
    21. Matthew G. Nosworthy, Adam Franczyk, Jason Neufeld, James D. House. The in vivo and in vitro protein quality of three hemp protein sources. Food Science & Nutrition 2023, 11 (11) , 7264-7270. https://doi.org/10.1002/fsn3.3652
    22. Izalin Zahari, Simona Rinaldi, Cecilia Ahlstrom, Karolina Östbring, Marilyn Rayner, Jeanette Purhagen. High moisture meat analogues from hemp – The effect of co-extrusion with wheat gluten and chickpea proteins on the textural properties and sensorial attributes. LWT 2023, 189 , 115494. https://doi.org/10.1016/j.lwt.2023.115494
    23. Rui Zhang, Xuelian Fang, Zisheng Feng, Ming Chen, Xiushuang Qiu, Jinmeng Sun, Muci Wu, Jingren He. Protein from rapeseed for food applications: Extraction, sensory quality, functional and nutritional properties. Food Chemistry 2023, 22 , 138109. https://doi.org/10.1016/j.foodchem.2023.138109
    24. Xin Yi See, Jie Hong Chiang, Li Min Law, Raffael Osen. High moisture extrusion of plant proteins: advances, challenges, and opportunities. Critical Reviews in Food Science and Nutrition 2023, 1 , 1-22. https://doi.org/10.1080/10408398.2023.2268736
    25. Izalin Zahari, Jeanette K. Purhagen, Marilyn Rayner, Cecilia Ahlström, Amanda Helstad, Michael Landers, Jens Müller, Jacob Eriksson, Karolina Östbring. Extrusion of high-moisture meat analogues from hempseed protein concentrate and oat fibre residue. Journal of Food Engineering 2023, 354 , 111567. https://doi.org/10.1016/j.jfoodeng.2023.111567
    26. Sharath Julakanti, Anto Pradeep Raja Charles, Jing Zhao, Fitzroy Bullock, Rabia Syed, Yvonne Myles, Ying Wu. Hempseed protein (Cannabis sativa L.): Influence of extraction pH and ball milling on physicochemical and functional properties. Food Hydrocolloids 2023, 143 , 108835. https://doi.org/10.1016/j.foodhyd.2023.108835
    27. Sharath Julakanti, Anto Pradeep Raja Charles, Rabia Syed, Fitzroy Bullock, Ying Wu. Hempseed polysaccharide (Cannabis sativa L.): Physicochemical characterization and comparison with flaxseed polysaccharide. Food Hydrocolloids 2023, 143 , 108900. https://doi.org/10.1016/j.foodhyd.2023.108900
    28. Shaoyi Wang, Fengyi Zhao, Wenlong Wu, Lianfei Lyu, Weilin Li. Proteins from Blackberry Seeds: Extraction, Osborne Isolate, Characteristics, Functional Properties, and Bioactivities. International Journal of Molecular Sciences 2023, 24 (20) , 15371. https://doi.org/10.3390/ijms242015371
    29. Fabiola Sciacca, Nino Virzì, Nicola Pecchioni, Maria Grazia Melilli, Carla Buzzanca, Sonia Bonacci, Vita Di Stefano. Functional End-Use of Hemp Seed Waste: Technological, Qualitative, Nutritional, and Sensorial Characterization of Fortified Bread. Sustainability 2023, 15 (17) , 12899. https://doi.org/10.3390/su151712899
    30. Yamina Absi, Isabel Revilla, Ana M. Vivar-Quintana. Commercial Hemp (Cannabis sativa Subsp. sativa) Proteins and Flours: Nutritional and Techno-Functional Properties. Applied Sciences 2023, 13 (18) , 10130. https://doi.org/10.3390/app131810130
    31. Gianluca Rizzo, Maximilian Andreas Storz, Gioacchino Calapai. The Role of Hemp (Cannabis sativa L.) as a Functional Food in Vegetarian Nutrition. Foods 2023, 12 (18) , 3505. https://doi.org/10.3390/foods12183505
    32. Fatma KORKMAZ, Havva POLAT, Ali Emre ANDAÇ, Neşe YILMAZ TUNCEL. BİTKİ ESASLI SÜT BENZERİ İÇECEKLER. Gıda 2023, 48 (4) , 784-805. https://doi.org/10.15237/gida.GD23049
    33. Eduarda M. Cabral, Xianglu Zhu, Marco Garcia-Vaquero, Sara Pérez-Vila, Jiafei Tang, Laura G. Gómez-Mascaraque, Mahesha M. Poojary, James Curtin, Brijesh K. Tiwari. Recovery of Protein from Industrial Hemp Waste (Cannabis sativa, L.) Using High-Pressure Processing and Ultrasound Technologies. Foods 2023, 12 (15) , 2883. https://doi.org/10.3390/foods12152883
    34. Vipul Mittal, Anil Panghal, Ravi Gupta. Hemp ( Cannabis sativa L.) Agronomic Practices, Engineering Properties, Bioactive Compounds and Utilization in Food Processing Industry. 2023, 143-181. https://doi.org/10.1002/9781119793007.ch5
    35. Haihong Chen, Bing Xu, Yi Wang, Wei Li, Dong He, Yan Zhang, Xizhen Zhang, Xinhui Xing. Emerging natural hemp seed proteins and their functions for nutraceutical applications. Food Science and Human Wellness 2023, 12 (4) , 929-941. https://doi.org/10.1016/j.fshw.2022.10.016
    36. Tolulope Joshua Ashaolu, Thanh-Do Le, Itthanan Suttikhana, Opeyemi Joshua Olatunji, Mohamed A. Farag. Hemp bioactive peptides: Nutrition, functional properties and action mechanisms to maximize their nutraceutical applications and future prospects. Food Chemistry 2023, 414 , 135691. https://doi.org/10.1016/j.foodchem.2023.135691
    37. Abraham Badjona, Robert Bradshaw, Caroline Millman, Martin Howarth, Bipro Dubey. Faba Bean Processing: Thermal and Non-Thermal Processing on Chemical, Antinutritional Factors, and Pharmacological Properties. Molecules 2023, 28 (14) , 5431. https://doi.org/10.3390/molecules28145431
    38. Hafsae Lamsaf, Srishti Singh, Joel Pereira, Fátima Poças. Multifunctional Properties of PBAT with Hemp (Cannabis sativa) Micronised Fibres for Food Packaging: Cast Films and Coated Paper. Coatings 2023, 13 (7) , 1195. https://doi.org/10.3390/coatings13071195
    39. Roshema Mel, Kathleen M. Gough, Kirby T. Nilsen, Aaron D. Beattie, Maneka Malalgoda. Determining the impact of genotype × environment on oat protein isolate structural and functional characteristics. Cereal Chemistry 2023, 100 (4) , 986-1000. https://doi.org/10.1002/cche.10679
    40. Danzhu Wu, Xiao Jia, Xinlei Zheng, Yanmin Mo, Jianwen Teng, Li Huang, Ning Xia. Physicochemical and functional properties of Pleurotus eryngii proteins with different molecular weight. LWT 2023, 184 , 115102. https://doi.org/10.1016/j.lwt.2023.115102
    41. Shunyu Yao, Wu Li, Gregory J. O. Martin, Muthupandian Ashokkumar. An Investigation into the Mechanism of Alkaline Extraction-Isoelectric Point Precipitation (AE-IEP) of High-Thiol Plant Proteins. Applied Sciences 2023, 13 (11) , 6469. https://doi.org/10.3390/app13116469
    42. Samanta Reyes-Flores, Taísa Sabrina Silva Pereira, Milena Maria Ramírez-Rodrigues. Optimization of Hempseed-Added Kombucha for Increasing the Antioxidant Capacity, Protein Concentration, and Total Phenolic Content. Beverages 2023, 9 (2) , 50. https://doi.org/10.3390/beverages9020050
    43. Bokai Liao, Shiquan Ma, Siying Zhang, Xingxing Li, Ruixuan Quan, Shan Wan, Xingpeng Guo. Fructus cannabis protein extract powder as a green and high effective corrosion inhibitor for Q235 carbon steel in 1 M HCl solution. International Journal of Biological Macromolecules 2023, 239 , 124358. https://doi.org/10.1016/j.ijbiomac.2023.124358
    44. Nazila Shahbal, Xueping Jing, Bhesh Bhandari, Buddhi Dayananda, Sangeeta Prakash. Effect of enzymatic hydrolysis on solubility and surface properties of pea, rice, hemp, and oat proteins: Implication on high protein concentrations. Food Bioscience 2023, 53 , 102515. https://doi.org/10.1016/j.fbio.2023.102515
    45. Martin Liu, Lawrence B. Smart, Alireza Abbaspourrad. Germination and ultrafiltration modify the composition and functional properties of hemp seed protein isolates. Food Bioscience 2023, 53 , 102761. https://doi.org/10.1016/j.fbio.2023.102761
    46. Y.R. Tang, A.K. Stone, Y. Wang, Z. Jafarian, L. Zhou, J. Kimmel, J.D. House, T. Tanaka, M.T. Nickerson. Effects of enzyme treatments on the functionality of commercial pea and pea blended protein ingredients. Food Bioscience 2023, 53 , 102838. https://doi.org/10.1016/j.fbio.2023.102838
    47. Min Zhang, Tao Li, Gege Guo, Zhaoxing Liu, Ning Hao. Production of Nattokinase from Hemp Seed Meal by Solid-State Fermentation and Improvement of Its Nutritional Quality. Fermentation 2023, 9 (5) , 469. https://doi.org/10.3390/fermentation9050469
    48. Ines Kutzli, Jiangtao Zhou, Ting Li, Stefan K. Baier, Raffaele Mezzenga. Formation and characterization of plant-based amyloid fibrils from hemp seed protein. Food Hydrocolloids 2023, 137 , 108307. https://doi.org/10.1016/j.foodhyd.2022.108307
    49. Xinye Liu, Feng Xue, Benu Adhikari. Hemp protein isolate-polysaccharide complex coacervates and their application as emulsifiers in oil-in-water emulsions. Food Hydrocolloids 2023, 137 , 108352. https://doi.org/10.1016/j.foodhyd.2022.108352
    50. Tong Wang, Ning Wang, Yajie Dai, Dianyu Yu, Jinju Cheng. Interfacial adsorption properties, rheological properties and oxidation kinetics of oleogel-in-water emulsion stabilized by hemp seed protein. Food Hydrocolloids 2023, 137 , 108402. https://doi.org/10.1016/j.foodhyd.2022.108402
    51. Ziwen Ding, Fan Jiang, Kun Liu, Fangshuo Gong, Yuanfa Liu, Zhaojun Zheng, Yong-Jiang Xu. Structural and Functional Characteristics of Hemp Protein Isolate–Pullulan Polysaccharide Glycosylation Conjugate in an Aqueous Model System. Foods 2023, 12 (7) , 1416. https://doi.org/10.3390/foods12071416
    52. Aitor Sainz Martinez, Olga Lanaridi, Kristof Stagel, Heidi Halbwirth, Michael Schnürch, Katharina Bica-Schröder. Extraction techniques for bioactive compounds of cannabis. Natural Product Reports 2023, 40 (3) , 676-717. https://doi.org/10.1039/D2NP00059H
    53. Fotini Plati, Adamantini Paraskevopoulou. Hemp protein isolate – gum Arabic complex coacervates as a means for oregano essential oil encapsulation. Comparison with whey protein isolate – gum Arabic system. Food Hydrocolloids 2023, 136 , 108284. https://doi.org/10.1016/j.foodhyd.2022.108284
    54. Martin Liu, Jacob A. Toth, Mackenzie Childs, Lawrence B. Smart, Alireza Abbaspourrad. Composition and functional properties of hemp seed protein isolates from various hemp cultivars. Journal of Food Science 2023, 88 (3) , 942-951. https://doi.org/10.1111/1750-3841.16467
    55. Haining Xu, Jiayin Pan, Mokhtar Dabbour, Benjamin Kumah Mintah, Wen Chen, Fan Yang, Zhaoli Zhang, Yu Cheng, Chunhua Dai, Ronghai He, Haile Ma. Synergistic effects of pH shift and heat treatment on solubility, physicochemical and structural properties, and lysinoalanine formation in silkworm pupa protein isolates. Food Research International 2023, 165 , 112554. https://doi.org/10.1016/j.foodres.2023.112554
    56. Mohammadreza Khalesi, Luthando Gcaza, Richard J. FitzGerald. In Vitro Digestibility, Biological Activity, and Physicochemical Characterization of Proteins Extracted from Conventionally and Organically Cultivated Hempseed (Cannabis sativa L.). Molecules 2023, 28 (3) , 915. https://doi.org/10.3390/molecules28030915
    57. Davide Lanzoni, Eva Skřivanová, Raffaella Rebucci, Antonio Crotti, Antonella Baldi, Luca Marchetti, Carlotta Giromini. Total Phenolic Content and Antioxidant Activity of In Vitro Digested Hemp-Based Products. Foods 2023, 12 (3) , 601. https://doi.org/10.3390/foods12030601
    58. Hiroyuki Yano, Wei Fu. Hemp: A Sustainable Plant with High Industrial Value in Food Processing. Foods 2023, 12 (3) , 651. https://doi.org/10.3390/foods12030651
    59. Baochen Fang, Zixuan Gu, Jae-Bom Ohm, Bingcan Chen, Jiajia Rao. Reverse micelles extraction of hemp protein isolate: Impact of defatting process on protein structure, functionality, and aromatic profile. Food Hydrocolloids 2023, 135 , 108158. https://doi.org/10.1016/j.foodhyd.2022.108158
    60. Sefa Celik, Elif Cakir, Alev Er. Bioactive Properties and Food Applications of Cannabis sativa and Applications of Its Molecular Modeling. 2023, 101-114. https://doi.org/10.4018/978-1-6684-5718-4.ch007
    61. Lidia Montero, Diego Ballesteros-Vivas, Andrés Fernando Gonzalez-Barrios, Andrea del Pilar Sánchez-Camargo. Hemp seeds: Nutritional value, associated bioactivities and the potential food applications in the Colombian context. Frontiers in Nutrition 2023, 9 https://doi.org/10.3389/fnut.2022.1039180
    62. Iván Francisco García-Tejero, Belén Cárceles, Víctor Hugo Durán-Zuazo. Linking agronomical practices for Cannabis sativa L. production and its potential usages: fiber, seeds, essential oils and cannabinoids production. 2023, 49-75. https://doi.org/10.1016/B978-0-323-89867-6.00001-9
    63. Gary Reineccius, Yang Meng. Gelatin and other proteins for microencapsulation. 2023, 293-308. https://doi.org/10.1016/B978-0-12-821683-5.00021-2
    64. Olga Mileti, Noemi Baldino, Francesca Romana Lupi, Domenico Gabriele. Interfacial behavior of vegetable protein isolates at sunflower oil/water interface. Colloids and Surfaces B: Biointerfaces 2023, 221 , 113035. https://doi.org/10.1016/j.colsurfb.2022.113035
    65. Amrut Rajendra, Danyang Ying, Robyn Dorothy Warner, Minh Ha, Zhongxiang Fang. Effect of Extrusion on the Functional, Textural and Colour Characteristics of Texturized Hempseed Protein. Food and Bioprocess Technology 2023, 16 (1) , 98-110. https://doi.org/10.1007/s11947-022-02923-z
    66. Shunyu Yao, Wu Li, Yue Wu, Gregory J. O. Martin, Muthupandian Ashokkumar. The Impact of High-Intensity Ultrasound-Assisted Extraction on the Structural and Functional Properties of Hempseed Protein Isolate (HPI). Foods 2023, 12 (2) , 348. https://doi.org/10.3390/foods12020348
    67. Qi Tang, Yrjö H. Roos, Song Miao. Plant Protein versus Dairy Proteins: A pH-Dependency Investigation on Their Structure and Functional Properties. Foods 2023, 12 (2) , 368. https://doi.org/10.3390/foods12020368
    68. Alessia Ramondo. Industrial Hemp: Proteins. 2023, 37-50. https://doi.org/10.1016/B978-0-12-823960-5.00006-8
    69. Fernando Rivero-Pino, Maria C. Millan-Linares, Sergio Montserrat-de la Paz. Hemp Protein. 2023, 23-36. https://doi.org/10.1016/B978-0-12-823960-5.00014-7
    70. Peng‐Wei Xu, Xiao‐Fan Yuan, Bing Zhao. Bioactive polyphenols separated from hemp seed shells ameliorate H 2 O 2 ‐induced oxidative stress injury in human umbilical vein endothelial cells. Journal of Food Science 2023, 88 (1) , 537-551. https://doi.org/10.1111/1750-3841.16424
    71. Martin Liu, Mackenzie Childs, Michael Loos, Alan Taylor, Lawrence B. Smart, Alireza Abbaspourrad. The effects of germination on the composition and functional properties of hemp seed protein isolate. Food Hydrocolloids 2023, 134 , 108085. https://doi.org/10.1016/j.foodhyd.2022.108085
    72. Rachel A. Burton, Mike Andres, Martin Cole, James M. Cowley, Mary Ann Augustin. Industrial hemp seed: from the field to value-added food ingredients. Journal of Cannabis Research 2022, 4 (1) https://doi.org/10.1186/s42238-022-00156-7
    73. Gulsah Karabulut, Hao Feng, Oktay Yemiş. Physicochemical and Antioxidant Properties of Industrial Hemp Seed Protein Isolate Treated by High-Intensity Ultrasound. Plant Foods for Human Nutrition 2022, 77 (4) , 577-583. https://doi.org/10.1007/s11130-022-01017-7
    74. Maryam Rezaei, Leila Nouri, Mohammad Daneshi, Abdorreza Mohammadi Nafchi, Fariborz Nahidi. Effect of salt concentration and drying temperature on functional properties of sesame (Sesamum indicum L.) meal protein isolate. Journal of Food Measurement and Characterization 2022, 16 (6) , 4665-4674. https://doi.org/10.1007/s11694-022-01561-5
    75. Noemi Baldino, Ilaria Carnevale, Olga Mileti, Donatella Aiello, Francesca R. Lupi, Anna Napoli, Domenico Gabriele. Hemp Seed Oil Extraction and Stable Emulsion Formulation with Hemp Protein Isolates. Applied Sciences 2022, 12 (23) , 11921. https://doi.org/10.3390/app122311921
    76. Xinye Liu, Mengzhi Wang, Feng Xue, Benu Adhikari. Application of ultrasound treatment to improve the technofunctional properties of hemp protein isolate. Future Foods 2022, 6 , 100176. https://doi.org/10.1016/j.fufo.2022.100176
    77. Weiyu Song, Hao Yin, Yu Zhong, Danfeng Wang, Wenbin Xu, Yun Deng. Regional differentiation based on volatile compounds via HS-SPME/GC–MS and chemical compositions comparison of hemp (Cannabis sativa L.) seeds. Food Research International 2022, 162 , 112151. https://doi.org/10.1016/j.foodres.2022.112151
    78. Hebah M.S. AL Ubeed, Charles S. Brennan, Ellen Schanknecht, Muhammad A. Alsherbiny, Md Saifullah, Kien Nguyen, Quan V. Vuong. Potential applications of hemp ( Cannabis sativa L.) extracts and their phytochemicals as functional ingredients in food and medicinal supplements: a narrative review. International Journal of Food Science & Technology 2022, 57 (12) , 7542-7555. https://doi.org/10.1111/ijfs.16116
    79. Simon Okomo Aloo, Godfrey Mwiti, Louise Wanjiku Ngugi, Deog-Hwan Oh. Uncovering the secrets of industrial hemp in food and nutrition: The trends, challenges, and new-age perspectives. Critical Reviews in Food Science and Nutrition 2022, 13 , 1-20. https://doi.org/10.1080/10408398.2022.2149468
    80. Fern Kumeroa, Shanika Komahan, Svetla Sofkova-Bobcheva, Andrea Clavijo McCormick. Characterization of the Volatile Profiles of Six Industrial Hemp (Cannabis sativa L.) Cultivars. Agronomy 2022, 12 (11) , 2651. https://doi.org/10.3390/agronomy12112651
    81. Sobhy Ahmed El-Sohaimy, Natalia Vladimirovna Androsova, Abduvali Djabarovich Toshev, Hesham Ali El Enshasy. Nutritional Quality, Chemical, and Functional Characteristics of Hemp (Cannabis sativa ssp. sativa) Protein Isolate. Plants 2022, 11 (21) , 2825. https://doi.org/10.3390/plants11212825
    82. Jiejia Zhang, Jason Griffin, Yonghui Li, Donghai Wang, Weiqun Wang. Antioxidant Properties of Hemp Proteins: From Functional Food to Phytotherapy and Beyond. Molecules 2022, 27 (22) , 7924. https://doi.org/10.3390/molecules27227924
    83. Rabia Syed, Huihuang H. Ding, Dafeng Hui, Ying Wu. Physicochemical and functional properties of pigeon pea (Cajanus cajan) protein and non-starch polysaccharides. Bioactive Carbohydrates and Dietary Fibre 2022, 28 , 100317. https://doi.org/10.1016/j.bcdf.2022.100317
    84. Eduarda M Cabral, Mahesha M Poojary, Marianne N Lund, James Curtin, Mark Fenelon, Brijesh K Tiwari. Effect of solvent composition on the extraction of proteins from hemp oil processing stream. Journal of the Science of Food and Agriculture 2022, 102 (14) , 6293-6298. https://doi.org/10.1002/jsfa.11979
    85. Sarah Guidi, Florian A. Formica, Christoph Denkel. Mixing plant-based proteins: Gel properties of hemp, pea, lentil proteins and their binary mixtures. Food Research International 2022, 161 , 111752. https://doi.org/10.1016/j.foodres.2022.111752
    86. B. Dave Oomah. Hempseed. 2022, 269-356. https://doi.org/10.1002/9781119804055.ch9
    87. Farzaneh Nasrollahzadeh, Laura Roman, V.J.Shiva Swaraj, K.V. Ragavan, Natalia P. Vidal, John R. Dutcher, Mario M. Martinez. Hemp (Cannabis sativa L.) protein concentrates from wet and dry industrial fractionation: Molecular properties, nutritional composition, and anisotropic structuring. Food Hydrocolloids 2022, 131 , 107755. https://doi.org/10.1016/j.foodhyd.2022.107755
    88. Łukasz Łopusiewicz, Katarzyna Waszkowiak, Katarzyna Polanowska, Beata Mikołajczak, Natalia Śmietana, Agnieszka Hrebień-Filisińska, Joanna Sadowska, Kinga Mazurkiewicz-Zapałowicz, Emilia Drozłowska. The Effect of Yogurt and Kefir Starter Cultures on Bioactivity of Fermented Industrial By-Product from Cannabis sativa Production—Hemp Press Cake. Fermentation 2022, 8 (10) , 490. https://doi.org/10.3390/fermentation8100490
    89. Ángel Gabriel Salinas Ibáñez, Anabella L. Origone, Constanza S. Liggieri, Sonia E. Barberis, Alba E. Vega. Asclepain cI, a proteolytic enzyme from Asclepias curassavica L., a south American plant, against Helicobacter pylori. Frontiers in Microbiology 2022, 13 https://doi.org/10.3389/fmicb.2022.961958
    90. Arjun H. Banskota, Sean M. Tibbetts, Alysson Jones, Roumiana Stefanova, Joerg Behnke. Biochemical Characterization and In Vitro Digestibility of Protein Isolates from Hemp (Cannabis sativa L.) By-Products for Salmonid Feed Applications. Molecules 2022, 27 (15) , 4794. https://doi.org/10.3390/molecules27154794
    91. Jiaqi Li, Sheng Geng, Shiyu Zhen, Xiaofan Lv, Benguo Liu. Fabrication and characterization of oil-in-water emulsions stabilized by whey protein isolate/phloridzin/sodium alginate ternary complex. Food Hydrocolloids 2022, 129 , 107625. https://doi.org/10.1016/j.foodhyd.2022.107625
    92. William Leonard, Pangzhen Zhang, Danyang Ying, Shuai Nie, Evan Tindal, Zhongxiang Fang. Transformation of hempseed (Cannabis sativa L.) oil cake proteome, structure and functionality after extrusion. Food Chemistry 2022, 384 , 132499. https://doi.org/10.1016/j.foodchem.2022.132499
    93. Rita Ngozi Aguchem, Innocent Uzochukwu Okagu, Ogadimma Desmond Okagu, Joseph Chinedum Ndefo, Chibuike C. Udenigwe. A review on the techno‐functional, biological, and health‐promoting properties of hempseed‐derived proteins and peptides. Journal of Food Biochemistry 2022, 46 (7) https://doi.org/10.1111/jfbc.14127
    94. Dongxue Yuan, Chuanai Cao, Baohua Kong, Fangda Sun, Hongwei Zhang, Qian Liu. Micronized cold-pressed hemp seed cake could potentially replace 50% of the phosphates in frankfurters. Meat Science 2022, 189 , 108823. https://doi.org/10.1016/j.meatsci.2022.108823
    95. Valeria Menga, Carmela Garofalo, Serafino Suriano, Romina Beleggia, Salvatore Antonio Colecchia, Domenico Perrone, Massimo Montanari, Nicola Pecchioni, Clara Fares. Phenolic Acid Composition and Antioxidant Activity of Whole and Defatted Seeds of Italian Hemp Cultivars: A Two-Year Case Study. Agriculture 2022, 12 (6) , 759. https://doi.org/10.3390/agriculture12060759
    96. Gustavo Leite Milião, Ana Paula Hanke de Oliveira, Lucas de Souza Soares, Tarsila Rodrigues Arruda, Érica Nascif Rufino Vieira, Bruno Ricardo de Castro Leite Junior. Unconventional food plants: Nutritional aspects and perspectives for industrial applications. Future Foods 2022, 5 , 100124. https://doi.org/10.1016/j.fufo.2022.100124
    97. Behdad Shokrollahi Yancheshmeh, Leila Monjazeb Marvdashti, Alireza Emadi, Anna Abdolshahi, Arezoo Ebrahimi, Nabi Shariatifar. Evaluation of Physicochemical and Functional Properties of Vicia villosa Seed Protein. Food Analytical Methods 2022, 15 (5) , 1187-1202. https://doi.org/10.1007/s12161-021-02185-z
    98. Na Li, Tong Wang, Xinrun Yang, Jiayao Qu, Ning Wang, Liqi Wang, Dianyu Yu, Cuiping Han. Effect of high-intensity ultrasonic treatment on the emulsion of hemp seed oil stabilized with hemp seed protein. Ultrasonics Sonochemistry 2022, 86 , 106021. https://doi.org/10.1016/j.ultsonch.2022.106021
    99. Olga Mileti, Noemi Baldino, Jose Antonio Carmona, Francesca Romana Lupi, Jose Muñoz, Domenico Gabriele. Shear and dilatational rheological properties of vegetable proteins at the air/water interface. Food Hydrocolloids 2022, 126 , 107472. https://doi.org/10.1016/j.foodhyd.2021.107472
    100. Jianxiong Yue, Zhenbao Zhu, Jianhua Yi, Hui Li, Bingcan Chen, Jiajia Rao. One-step extraction of oat protein by choline chloride-alcohol deep eutectic solvents: Role of chain length of dihydric alcohol. Food Chemistry 2022, 376 , 131943. https://doi.org/10.1016/j.foodchem.2021.131943
    Load more citations

    Pair your accounts.

    Export articles to Mendeley

    Get article recommendations from ACS based on references in your Mendeley library.

    Pair your accounts.

    Export articles to Mendeley

    Get article recommendations from ACS based on references in your Mendeley library.

    You’ve supercharged your research process with ACS and Mendeley!

    STEP 1:
    Click to create an ACS ID

    Please note: If you switch to a different device, you may be asked to login again with only your ACS ID.

    Please note: If you switch to a different device, you may be asked to login again with only your ACS ID.

    Please note: If you switch to a different device, you may be asked to login again with only your ACS ID.

    MENDELEY PAIRING EXPIRED
    Your Mendeley pairing has expired. Please reconnect