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Impact of high-hydrostatic pressure and thermal processing on the antioxidant profiles and capacity of tomato juice during storage
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作者 Xuehua Wang Li Dong +3 位作者 Chen Ma Zhe Wang Xiaosong Hu Fang Chen 《Food Innovation and Advances》 2023年第2期124-134,共11页
While high-hydrostatic pressure(HHP)has successfully been applied to the pasteurization of fruit and vegetable juice beverages,their qualitystable shelf life during storage has not been fully elucidated.Therefore,we i... While high-hydrostatic pressure(HHP)has successfully been applied to the pasteurization of fruit and vegetable juice beverages,their qualitystable shelf life during storage has not been fully elucidated.Therefore,we investigated the effect of HHP(550 MPa/10 min)treatment on polyphenols,carotenoids,ascorbic acids,and antioxidant capacity in tomato juice and their changes during 4-week refrigerated storage.Hightemperature short-time(HTST,110°C/8.6 s)treatment was used as a control.The results revealed a significantly greater presence of polyphenols,carotenoids,ascorbic acid content,and antioxidant capacity in tomato juice after HHP processing than after HTST processing.However,the total carotenoids and total phenolic content in HHP-treated tomato juice decreased dramatically and approached that in the HTST-treated tomato juice after 1 week of storage.Therefore,HHP’s advantage in maintaining antioxidant compounds and capacity was only evident during the first week of storage in tomato juice.Nevertheless,the post-storage caffeic acid,quercetin,ferulic acid,and p-coumaric acid concentrations were 8.31,4.77,1.86,and 6.84μg/g higher in the HHP-treated than in HTST-treated tomato juice,respectively.This study provides a new perspective for predicting HHP products'quality-stable shelf life. 展开更多
关键词 HYDROSTATIC IMPACT capacity
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Community Structure and Value Evaluation of Local Brassicaceae Potherbs in Shiyan City
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作者 Yaowen XU Shuiyuan CHENG +3 位作者 Yongjun FEI Zurong CAO Yingjie LI Longsheng HU 《Agricultural Biotechnology》 CAS 2021年第5期30-36,共7页
[Objectives]This study was conducted to evaluate the value of local Brassicaceae potherb resources in Shiyan City.[Methods]Seven species of local Brassicaceae edible plants resources in Shiyan City,including Cardamine... [Objectives]This study was conducted to evaluate the value of local Brassicaceae potherb resources in Shiyan City.[Methods]Seven species of local Brassicaceae edible plants resources in Shiyan City,including Cardamine hirsuta L.,Cardamine flexuosa,Cardamine impatiens L.,Capsella bursa-pastoris(Linn.),Orychophragmus violaceus(L.)O.E.Schulz,Draba nemorosa L.,Rorippa indica(L.)Hiern.,were investigated using sampling method,and their value was evaluated.[Results]①Shiyan City was rich in resources of local Brassicaceae potherbs,mostly of which grew in humid areas.②In the communities of target species,there were 20 species of plants in 19 genera of 15 families in the arbor layer,19 species of plants in 16 genera from 15 families in the shrub layer,and 58 species of plants in 51 genera from 23 families in the herbaceous layer.The tree,shrub and herb species with the highest dominance Populus simonii var.przewalskii,Robinia pseudoacacia and Chrysanthemum indicum.Local Brassicaceae potherbs in Shiyan City have high edible and medicinal value,especially Cardamine,which has strong selenium-rich ability and is worthy of vigorous development.[Conclusions]This study provides scientific basis and reference for the development and utilization of local potherbs of Brassicaceae in this area. 展开更多
关键词 Brassicaceae Wild vegetables CARDAMINE Community structure analysis Value evaluation
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Selenium-enriched Cardamine violifolia protects against sepsis-induced intestinal injury by regulating mitochondrial fusion in weaned pigs 被引量:1
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作者 Dan Wang Yanling Kuang +7 位作者 Qingqing Lv Wenshuai Xie Xiao Xu Huiling Zhu Yue Zhang Xin Cong Shuiyuan Cheng Yulan Liu 《Science China(Life Sciences)》 SCIE CAS CSCD 2023年第9期2099-2111,共13页
Sepsis is a life-threatening organ dysfunction caused by the dysregulated response of the host to an infection, and treatments are limited. Recently, a novel selenium source, selenium-enriched Cardamine violifolia(SEC... Sepsis is a life-threatening organ dysfunction caused by the dysregulated response of the host to an infection, and treatments are limited. Recently, a novel selenium source, selenium-enriched Cardamine violifolia(SEC) has attracted much attention due to its anti-inflammatory and antioxidant properties, but little is known about its role in the treatment of sepsis. Here, we found that SEC alleviated LPS-induced intestinal damage, as indicated by improved intestinal morphology, and increased disaccharidase activity and tight junction protein expression. Moreover, SEC ameliorated the LPS-induced release of pro-inflammatory cytokines, as indicated by decreased IL-6 level in the plasma and jejunum. Moreover, SEC improved intestinal antioxidant functions by regulating oxidative stress indicators and selenoproteins. In vitro, TNF-α-challenged IPEC-1 cells were examined and showed that selenium-enriched peptides, which are the main functional components extracted from Cardamine violifolia(CSP), increased cell viability, decreased lactate dehydrogenase activity and improved cell barrier function. Mechanistically, SEC ameliorated LPS/TNF-α-induced perturbations in mitochondrial dynamics in the jejunum and IPEC-1 cells. Moreover, CSPmediated cell barrier function is primarily dependent on the mitochondrial fusion protein MFN2 but not MFN1. Taken together,these results indicate that SEC mitigates sepsis-induced intestinal injury, which is associated with modulating mitochondrial fusion. 展开更多
关键词 INTESTINE MFN2 mitochondrial fusion PIGLETS selenium SEPSIS
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A novel vanadium complex VO(p-dmada)inhibits neuroinflammation induced by lipopolysaccharide
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作者 Zhijun He Xiaoqian Li +8 位作者 Huajie Zhang Xin Liu Shuangxue Han Anwar Abdurahman Liming Shen Xiubo Du Nan Li Xiaoda Yang Qiong Liu 《Chinese Chemical Letters》 SCIE CAS CSCD 2023年第10期209-214,共6页
Uncontrolled microglial activation is decisively involved in the neuroinflammatory pathogenesis of brain diseases. Consequently, suppression of microglial overactivation appears to be a strategy for the prevention of ... Uncontrolled microglial activation is decisively involved in the neuroinflammatory pathogenesis of brain diseases. Consequently, suppression of microglial overactivation appears to be a strategy for the prevention of nerve injury. In this paper, a novel vanadium complex, vanadyl N-(p-N,Ndimethylaminophenylcarbamoylmethyl)iminodiacetate(VO(p-dmada)), was synthesized from vanadyl sulfate and N,N-dimethyl-p-phenylenediamine, which was structurally characterized by Fourier transform infrared spectrum and ESI-MS analysis. The effect of VO(p-dmada) on neuroinflammation was investigated by using the models of lipopolysaccharide(LPS)-induced BV2 microglial cells and BALB/c mice.Our data demonstrated that VO(p-dmada) significantly suppressed microglial activation by downregulating inflammatory mediators and associated proteins, and inactivating nuclear factor-κ B(NF-κ B) signaling pathway. VO(p-dmada) also upregulated peroxisome proliferator activated receptor gamma(PPARγ) by reducing transglutaminase 2 and heat shock protein 60 expression. Co-treatment with PPARγ antagonist GW9662 significantly impeded the inhibitory effect of VO(p-dmada) on LPS-induced neuroinflammation.These cumulative findings demonstrated that VO(p-dmada) is a potential new drug for the treatment of neuroinflammation-related neurodegenerative diseases. 展开更多
关键词 Vanadium Vanadyl N-(p-N Ndimethylaminophenylcarbamoylmethyl)iminodiacetate (VO(p-dmada)) NEUROINFLAMMATION MICROGLIA Proteomics Peroxisome proliferator activated receptor gamma(PPARγ)
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