Peanut protein is easily digested and absorbed by the human body,and peanut tofu does not contain flatulence factors and beany flour.However,at present,there is no industrial preparation process of peanut tofu,whereas...Peanut protein is easily digested and absorbed by the human body,and peanut tofu does not contain flatulence factors and beany flour.However,at present,there is no industrial preparation process of peanut tofu,whereas the quality of tofu prepared by different peanut varieties is quite different.This study established an industrial feasible production process of peanut tofu and optimized the key process that regulates its quality.Compared with the existing method,the production time is reduced by 53.80%,therefore the daily production output is increased by 183.33%.The chemical properties of 26 peanut varieties and the quality characteristics of tofu prepared from these 26 varieties were determined.The peanut varieties were classified based on the quality characteristics of tofu using the hierarchical cluster analysis(HCA)method,out of which 7 varieties were screened out which were suitable for preparing peanut tofu.An evaluation standard was founded based on peanut tofu qualities.Six chemical trait indexes were correlated with peanut tofu qualities(P<0.05).A logistic regressive model was developed to predict suitable peanut varieties and this prediction model was verified.This study may help broaden the peanut protein utilization,and provide guidance for breeding experts to select certain varieties for product specific cultivation of peanut.展开更多
Marsdeniae tenacissimae extract(MTE), commonly known as Xiao-Ai-Ping in China, is a traditional Chinese herb medicine capable of inhibiting proliferation and metastasis and boosting apoptosis in various cancer cells. ...Marsdeniae tenacissimae extract(MTE), commonly known as Xiao-Ai-Ping in China, is a traditional Chinese herb medicine capable of inhibiting proliferation and metastasis and boosting apoptosis in various cancer cells. However, little is known about the contribution of MTE towards tumor angiogenesis and the underlying mechanism. The present study aimed to evaluate the effects of MTE on the proliferation and apoptosis of human umbilical vein endothelial cells(HUVECs) and the molecular ism. 3-(4,5-dimethylthiazol-2-yl)-5(3-carboxymethoxyphenyl)-2-(4-sulfopheny)-2H-tetrazolium, inner salt(MTS) and PI-stained flow cytometry assays revealed that MTE dose-dependently reduced the proliferation of HUVECs by arresting cell cycle at S phase(P < 0.05). Annexin V-FITC/PI-stained flow cytometry confirmed that MTE(160 μL·m L-1) enhanced the apoptosis of HUVECs significantly(P < 0.001). Real-time quantitative RT-PCR and Western blot analyses showed an increase in Bax expression and a sharply decline in Bcl-2 expression; caspase-3 was activated simultaneously in a dose-dependent manner(P < 0.05). Further study observed the dose-dependent down-regulation of vascular endothelial growth factor(VEGF) receptor-2(VEGFR-2), P2Y6 receptor(P2Y6R), and chemokine(C-C motif) ligand 2(CCL-2), along with the activation of PKC δ and up-regulation of p53 in a dose-dependent manner in MTE-treated selected cells(P < 0.05). Collectively, the results from the present study suggested that MTE suppressed the proliferation by attenuating CCL-2-mediated VEGF/VEGFR2 interactions and promoted the apoptosis through PKCδ-induced p53-dependent mitochondrial pathway in HUVECs, supporting that MTE may be developed as a potent anti-cancer medicine.展开更多
基金This study was supported by the earmarked fund for China Agriculture Research System(CARS-13-03A)the Corps Science and Technology Development Special Promotion Achievement Transformation Guidance Plan,Xinjiang,China(2018BCO12)the TaiShan Industrial Experts Programme,China(LJNY201711).
文摘Peanut protein is easily digested and absorbed by the human body,and peanut tofu does not contain flatulence factors and beany flour.However,at present,there is no industrial preparation process of peanut tofu,whereas the quality of tofu prepared by different peanut varieties is quite different.This study established an industrial feasible production process of peanut tofu and optimized the key process that regulates its quality.Compared with the existing method,the production time is reduced by 53.80%,therefore the daily production output is increased by 183.33%.The chemical properties of 26 peanut varieties and the quality characteristics of tofu prepared from these 26 varieties were determined.The peanut varieties were classified based on the quality characteristics of tofu using the hierarchical cluster analysis(HCA)method,out of which 7 varieties were screened out which were suitable for preparing peanut tofu.An evaluation standard was founded based on peanut tofu qualities.Six chemical trait indexes were correlated with peanut tofu qualities(P<0.05).A logistic regressive model was developed to predict suitable peanut varieties and this prediction model was verified.This study may help broaden the peanut protein utilization,and provide guidance for breeding experts to select certain varieties for product specific cultivation of peanut.
基金supported by the National Natural Science Foundation of China(No.81501824)the Natural Science Foundation of Zhejiang Province(Nos.Y15H280010 and LY15C090004)+3 种基金the Analysis and Measurement Foundation of Zhejiang Province(No.2015C37001)the Key Project of Chinese medicine in Zhejiang Province(No.2015ZZ001)the Traditional Chinese Medicine Scientific Research and Outstanding Young Talent Foundation of Zhejiang Province(Nos.2014ZB007 and 2014ZQ005)the Medicine and Health Research Foundation of Zhejiang Province(Nos.2015ZDA002,2015KYA028,2014KYA233,2015KYB021,and 2017179748)
文摘Marsdeniae tenacissimae extract(MTE), commonly known as Xiao-Ai-Ping in China, is a traditional Chinese herb medicine capable of inhibiting proliferation and metastasis and boosting apoptosis in various cancer cells. However, little is known about the contribution of MTE towards tumor angiogenesis and the underlying mechanism. The present study aimed to evaluate the effects of MTE on the proliferation and apoptosis of human umbilical vein endothelial cells(HUVECs) and the molecular ism. 3-(4,5-dimethylthiazol-2-yl)-5(3-carboxymethoxyphenyl)-2-(4-sulfopheny)-2H-tetrazolium, inner salt(MTS) and PI-stained flow cytometry assays revealed that MTE dose-dependently reduced the proliferation of HUVECs by arresting cell cycle at S phase(P < 0.05). Annexin V-FITC/PI-stained flow cytometry confirmed that MTE(160 μL·m L-1) enhanced the apoptosis of HUVECs significantly(P < 0.001). Real-time quantitative RT-PCR and Western blot analyses showed an increase in Bax expression and a sharply decline in Bcl-2 expression; caspase-3 was activated simultaneously in a dose-dependent manner(P < 0.05). Further study observed the dose-dependent down-regulation of vascular endothelial growth factor(VEGF) receptor-2(VEGFR-2), P2Y6 receptor(P2Y6R), and chemokine(C-C motif) ligand 2(CCL-2), along with the activation of PKC δ and up-regulation of p53 in a dose-dependent manner in MTE-treated selected cells(P < 0.05). Collectively, the results from the present study suggested that MTE suppressed the proliferation by attenuating CCL-2-mediated VEGF/VEGFR2 interactions and promoted the apoptosis through PKCδ-induced p53-dependent mitochondrial pathway in HUVECs, supporting that MTE may be developed as a potent anti-cancer medicine.