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5篇 您的检索式:作者名="Bixue"
    题名 作者 年代 出处 被引量
1Amygdalin attenuates PM2.5-induced human umbilical vein endothelial cell injury via the TLR4/NF-κB and Bcl-2/Bax signaling pathways显示文摘Mounting evidence supports that long-term exposure to fine particle pollutants(PM2.5)is closely implicated in cardiovascular diseases,especially atherosclerosis.Amygdalin is reported to attenuate external stimuli-induced cardiovascular diseases.However,the underlying mechanisms are still not understood.In this study,we aim to explore the protective effects of amygdalin on PM2.5-induced human umbilical vein endothelial cell(HUVEC)injury and unravel the specific mechanisms by MTT,DCFH-DA,biochemical,immunofluorescence,ELISA,RT-qPCR,flow cytometry,TUNEL and western blot analysis.The results reveal that amygdalin reverses PM2.5-induced cytotoxicity and attenuates intracellular ROS production.Moreover,amygdalin increases the levels of SOD and GSH and alleviates the MDA content.Additionally,amygdalin causes a decline of IL-6,IL-1β,TNF-αand COX-2 levels.Moreover,amygdalin inhibits NF-κB p50 and TLR4 protein expressions and NF-κB p65 nuclear translocation.Concomitantly,a decline of phospho-NF-κB p65/NF-κB p65 and phospho-IκB-α/IκB-αis detected.Meanwhile,amygdalin pretreatment reduces HUVEC apoptosis.In addition,amygdalin triggers an upregulation of Bcl-2 and a downregulation of Bax after stimulation with PM2.5.Collectively,these results suggest that amygdalin suppresses PM2.5-induced HUVEC injury by regulating the TLR4/NF-κB and Bcl-2/Bax signaling pathways,indicating that amygdalin may be a novel target for atherosclerosis treatments.Bixu Wang Tong Sun Ling Sun Lan Li Haitong Wan Zhishan Ding Xiaoqing Ye 2022Acta Biochimica et Biophysica Sinica2022,54,10:1
2Dependence of hard X-ray yield on laser pulse parameters in the wavelength cubed regime显示文摘Hou Bixue Nees J A Theobald W 2004Applied Physics Letters2004,84,13:1
3Synthesis and anti-hepatitis B virus activities of Matijing-Su derivatives显示文摘Bixue Xu Zhengming Huang Changxiao Liu Zegui Cai Weidong Pan Peixue Cao Xiaojiang Hao Guangyi Liang 2009Bioorganic & Medicinal Chemistry2009,,8:1
4Efficient Synthesis of Glycosylated Matijin-Su Derivatives via Ultrasonic Irradiation显示文摘Matijin-Su (1 ) 是有反肝炎 B 的本氨基丙酸 dipeptide 混合物病毒(HBV ) 活动。以前的报告建议 glycosylated Matijin-Su 衍生物的合成需要至少 10 步。简化合成过程,我们经由超声照耀为准备开发了一个更短、更有效的方法。二 galactopyranosylated (2 ) 和二 glucopyranosylated (3 ) 衍生物在 6 或 7 步被综合。为 galactopyranosylated 衍生物的全部的合成的全面收益显著地被增加到 39%(2a ) 或 22%(2b ) 。并且为 glucopyranosylated 衍生物的收益也到达了 29%(3a ) 或 16%(3b ) 。Guangping Liang Zhanxing Hu Jie Yuan Guangyi Liang Bixue XU 2016Chinese Journal of Chemistry2016,34,12:0
5Decellularized extracellular matrix and mesenchymal stem cells promote recovery in traumatic brain injury by synergistically enhancing neurogenesis and attenuating neuroinflammation显示文摘Damaged neurons and harsh microenvironments contribute to the injury cascades following traumatic brain injury(TBI).Mesenchymal stem cell(MSC)therapy is considered a viable choice for brain in-jury treatment;however,its clinical use is hindered by limited engraftment,low survival ratio,and uncontrolled differentiation.Herein,the decellularized brain extracellular matrix(dBECM)was prepared through a new method as a delivery system for MSCs.dBECM-based hydrogel with favorable biochem-ical and biomechanical features provides a microenvironment for MSCs in nerve repair.The MSCs-encapsulated dBECM-based hydrogel is shown to improve neuron compensation and structural regen-eration,alleviate neuroinflammation,and promote M1-to-M2 polarization of microglia.Our results first demonstrate that the combination of dBECM and MSCs is a critical vehicle to promote TBI repair from neurogenesis and immunoregulation,showing promise for the physiological recovery of neurogenic dis-eases and injuries.Xuewei Zhang Bixue Wang Hua Hong Ying Wang Jiashang Liu Changsheng Liu Xi Chen 2023Journal of Materials Science & Technology2023,,7:0
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