CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Hemp Protein

  • Hempseed protein hydrolysates' effects on the proliferation and induced oxidative stress in normal and cancer cell lines.

    Abstract Title:

    Hempseed protein hydrolysates' effects on the proliferation and induced oxidative stress in normal and cancer cell lines.

    Abstract Source:

    Mol Biol Rep. 2019 Dec ;46(6):6079-6085. Epub 2019 Sep 6. PMID: 31493283

    Abstract Author(s):

    Marijan Logarušić, Igor Slivac, Kristina Radošević, Martina Bagović, Ivana Radojčić Redovniković, Višnja Gaurina Srček

    Article Affiliation:

    Marijan Logarušić

    Abstract:

    Food proteins from different sources can provide beneficial effects on human health by releasing the bioactive peptides that are integral part of their native structure. In this study, we tested the biological potential of hempseed protein hydrolysates (HPHs) obtained from hempseed cake protein isolate. The HPHs were prepared by enzyme hydrolysis using three different proteases of microbial origin: Alcalase®, Neutrase® and Protamex®. The antioxidant activity of the obtained hydrolysates was determined by oxygen radical absorbance capacity (ORAC) assay, while the proliferative effects on normal (HaCaT) and cancer (HeLa) cells were determined by the CellTiter 96AQOne Solution Reagent (MTS) assay. HPHs showed dose-dependent antiproliferative effects on HeLa cells and stimulatory effects on the proliferation of HaCaT cells. HPH obtained by Neutrase(HPH-N) showed the highest antioxidant activity expressed as an ORAC value. The protective effect of HPH-N on HO-induced oxidative stress in normal and cancer cells was evaluated and 1 mg/mL of HPH-N significantly reduced the formation of intracellular reactive oxygen species (ROS) in both cell lines. The obtained results indicate the benefits of HPHs as potential natural antioxidants for the food industry and contribute to the growing trend of utilizing hempseed by-products.

  • Neuroprotective protein hydrolysates from hemp (Cannabis sativa L.) seeds.

    Abstract Title:

    Neuroprotective protein hydrolysates from hemp (Cannabis sativa L.) seeds.

    Abstract Source:

    Food Funct. 2019 Oct 2. Epub 2019 Oct 2. PMID: 31576391

    Abstract Author(s):

    Noelia M Rodriguez-Martin, Rocio Toscano, Alvaro Villanueva, Justo Pedroche, Francisco Millan, Sergio Montserrat-de la Paz, Maria C Millan-Linares

    Article Affiliation:

    Noelia M Rodriguez-Martin

    Abstract:

    Hemp (Cannabis sativa L.) seeds are well known for their potential use as a source of nutrients, fiber, and bioactive compounds. A hemp protein isolate, prepared from defatted hemp flour, was hydrolyzed by alcalase and flavourzyme under specific conditions. The resulting hydrolysates were evaluated for the selection of potentially bioactive hemp protein hydrolysates (HPHs) owing to their DPPH scavenging and ferric reducing antioxidant power activity. In vitro cell-free experiments led to the identification of two bioactive HPHs, HPH20A and HPH60A + 15AF, which were used at 50 and 100μg mL-1 on BV-2 microglial cells in order to evaluate the anti-neuroinflammatory activities. Our results showed that HPH20A and HPH60A + 15AF down-regulated TNF-α, IL-1β, and IL-6 mRNA transcriptional levels in LPS-stimulated BV-2 microglial cells. In addition, HPH20A and HPH60A + 15AF up-regulated the gene expression of anti-inflammatory cytokine IL-10. This study suggests for the first time that HPHs may improve the neuroinflammatory and inflammatory states, supporting the nutraceutical value of hemp seeds.

  • Physicochemical and functional properties of hemp (Cannabis sativa L.) protein isolate.

    Abstract Title:

    Physicochemical and functional properties of hemp (Cannabis sativa L.) protein isolate.

    Abstract Source:

    J Agric Food Chem. 2006 Nov 15;54(23):8945-50. PMID: 17090145

    Abstract Author(s):

    Chuan-He Tang, Zi Ten, Xian-Sheng Wang, Xiao-Quan Yang

    Article Affiliation:

    Department of Food Science and Technology, South China University of Technology, Guangzhou 510640, People's Republic of China. This email address is being protected from spambots. You need JavaScript enabled to view it.

    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 (T(d)) of about 95.0 degrees C, attributed to the edestin component. The T(d) 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.

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