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Dive into the research topics where Lingyun Zheng is active.

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Featured researches published by Lingyun Zheng.


Atherosclerosis | 2016

SAP deficiency mitigated atherosclerotic lesions in ApoE / mice

Lingyun Zheng; Teng Wu; Cuiling Zeng; Xiangli Li; Xiaoqiang Li; Dingwen Wen; Tianxing Ji; Tian Lan; Liying Xing; Jiangchao Li; Xiaodong He; Lijing Wang

OBJECTIVE Serum amyloid P conpoent (SAP), a member of the pentraxin family, interact with pathogens and cell debris to promote their removal by macrophages and neutrophils and is co-localized with atherosclerotic plaques in patients. However, the exact mechanism of SAP in atherogenesis is still unclear. We investigated whether SAP influence macrophage recruitment and foam cell formation and ultimately affect atherosclerotic progression. METHODS we generated apoE(-/-); SAP(-/-) (DKO) mice and fed them western diet for 4 and 8 weeks to characterize atherosclerosis development. RESULTS SAP deficiency effectively reduced plaque size both in the aorta (p = 0.0006 for 4 wks; p = 0.0001 for 8 wks) and the aortic root (p = 0.0061 for 4 wks; p = 0.0079 for 8wks) compared with apoE(-/-) mice. Meanwhile, SAP deficiency inhibited oxLDL-induced foam cell formation (p = 0.0004) compared with apoE(-/-) mice and SAP treatment increases oxLDL-induced foam cell formation (p = 0.002) in RAW cells. Besides, SAP deficiency reduced macrophages recruitment (p = 0.035) in vivo and in vitro (p = 0.026). Furthermore, SAP treatment enhanced CD36 (p = 0.007) and FcγRI (p = 0.031) expression induced by oxLDL through upregulating JNK and p38 MAPK phosphorylation whereas specific JNK1/2 inhibitor reduced CD36 (p = 0.0005) and FcγRI (P = 0.0007) expression in RAW cell. SAP deficiency also significantly decreased the expression of M1 and M2 macrophage markers and inflammatory cytokines in oxLDL-induced macrophages. CONCLUSION SAP deficiency mitigated foam cell formation and atherosclerotic development in apoE(-/-) mice, due to reduction in macrophages recruitment, polarization and pro-inflammatory cytokines and inhibition the CD36/FcγR-dependent signaling pathway.


Journal of Hepatology | 2015

Activation of Slit2-Robo1 signaling promotes liver fibrosis.

Jianlan Chang; Tian Lan; Changzheng Li; Xiaoqian Ji; Lingyun Zheng; Hongju Gou; Yitao Ou; Teng Wu; Cuiling Qi; Qianqian Zhang; Jiangchao Li; Quliang Gu; Dingwen Wen; Liu Cao; Liang Qiao; Yanqing Ding; Lijing Wang

BACKGROUND & AIMS The secretory protein Slit2 and its receptor Robo1 are believed to regulate cell growth and migration. Here, we aimed to determine whether Slit2-Robo1 signaling mediates the pathogenesis of liver fibrosis. METHODS Serum levels of Slit2 in patients with liver fibrosis were determined by ELISA. Liver fibrosis was induced in wild-type (WT), Slit2 transgenic (Slit2-Tg) and Robo1(+/-)Robo2(+/-) double heterozygotes (Robo1/2(+/-)) mice by carbon tetrachloride (CCl4). The functional contributions of Slit2-Robo1 signaling in liver fibrosis and activation of hepatic stellate cells (HSCs) were investigated using primary mouse HSCs and human HSC cell line LX-2. RESULTS Significantly increased serum Slit2 levels and hepatic expression of Slit2 and Robo1 were observed in patients with liver fibrosis. Compared to WT mice, Slit2-Tg mice were much more vulnerable to CCl4-induced liver injury and more readily develop liver fibrosis. Development of hepatic fibrosis in Slit2-Tg mice was associated with a stronger hepatic expression of collagen I and α-smooth muscle actin (α-SMA). However, liver injury and hepatic expression of collagen I and α-SMA were attenuated in CCl4-treated Robo1/2(+/-) mice in response to CCl4 exposure. In vitro, Robo1 neutralizing antibody R5 and Robo1 siRNA downregulated phosphorylation of Smad2, Smad3, PI3K, and AKT in HSCs independent of TGF-β1. R5 and Robo1 siRNA also inhibited the expression of α-SMA by HSCs. Finally, the protective effect of R5 on the CCl4-induced liver injury and fibrosis was further verified in mice. CONCLUSIONS Slit2-Robo1 signaling promotes liver injury and fibrosis through activation of HSCs.


Arteriosclerosis, Thrombosis, and Vascular Biology | 2015

Inactivation of PI3Kδ Induces Vascular Injury and Promotes Aneurysm Development by Upregulating the AP-1/MMP-12 Pathway in Macrophages

Lingyun Zheng; Liying Xing; Cuiling Zeng; Teng Wu; Yali Gui; Weidong Li; Tian Lan; Yongxia Yang; Quliang Gu; Cuiling Qi; Qianqian Zhang; Futian Tang; Xiaodong He; Lijing Wang

Objective—An aneurysm is an inflammatory vascular condition. Phosphatidylinositol 3-kinases &dgr; is highly expressed in leukocytes, and play a key role in innate immunity. However, the link between phosphatidylinositol 3-kinases &dgr; and aneurysm development has not yet been elucidated. Approach and Results—Carotid ligation unexpectedly induced characteristic aneurysm formation beneath the ligation point in p110&dgr;D910A/D910A mice (n=25; P<0.001 versus wild-type). Besides, p110&dgr; inactivation exacerbated CaCl2-induced abdominal aortic aneurysms development. A reverse transcription polymerase chain reaction microarray revealed significant extracellular matrix components degradation and matrix metalloproteinases (MMPs) upregulation in the abdominal aorta of p110&dgr;D910A/D910A mice. Similarly, the expression of both collagen I and IV was significantly decreased (n=10; P<0.05 versus wild-type) in carotid artery. Western blot assay confirmed that MMP-12 was significantly upregulated in arteries of p110&dgr;D910A/D910A mice (n=10; P<0.01 versus wild-type). In vitro, p110&dgr; inactivation marked increase peritoneal macrophages recruitment and synergistically enhance tumor necrosis factor-&agr;–induced recruitment. A specific phosphatidylinositol 3-kinases &dgr; inhibitor (IC87114) or genetic p110&dgr; inactivation upregulated MMP-12 expression and c-Jun phosphorylation (n=6; P<0.05 versus wild-type macrophages). IC87114 also increased activator protein-1 DNA-binding activity (n=6; P<0.001 versus control) and enhanced the effect of tumor necrosis factor-&agr; on activator protein-1–binding activity (n=5; P<0.01 versus tumor necrosis factor-&agr; treatment groups). Knockdown of c-Jun suppressed the effect of the IC87114 and tumor necrosis factor-&agr; on MMP-12 mRNA expression (n=5 in each group; P<0.01 versus scrRNA treatment groups). Conclusions—Our findings demonstrate that p110&dgr; inactivation leads to extracellular matrix degradation in vessels and promotes aneurysm development by inducing macrophages migration and upregulating the activator protein-1/MMP-12 pathway in macrophages.


Scientific Reports | 2016

Glipizide suppresses prostate cancer progression in the TRAMP model by inhibiting angiogenesis

Cuiling Qi; Bin Li; Yang Yang; Yongxia Yang; Jialin Li; Qin Zhou; Yinxin Wen; Cuiling Zeng; Lingyun Zheng; Qianqian Zhang; Jiangchao Li; Xiaodong He; Jia Zhou; Chunkui Shao; Lijing Wang

Drug repurposing of non-cancer drugs represents an attractive approach to develop new cancer therapy. Using the TRAMP transgenic mouse model, glipizide, a widely used drug for type 2 diabetes mellitus, has been identified to suppress prostate cancer (PC) growth and metastasis. Angiogenesis is intimately associated with various human cancer developments. Intriguingly, glipizide significantly reduces microvessel density in PC tumor tissues, while not inhibiting prostate cancer cell proliferation from the MTT assay and flow cytometry investigation. Moreover, glipizide inhibits the tubular structure formation of human umbilical vein endothelial cells by regulating the HMGIY/Angiopoietin-1 signaling pathway. Taken together, these results demonstrate that glipizide has the potential to be repurposed as an effective therapeutic for the treatment of PC by targeting tumor-induced angiogenesis.


International Journal of Biological Sciences | 2015

1H NMR Based Serum Metabolic Profiles Associated with Pathological Progression of Pancreatic Islet β Cell Tumor in Rip1-Tag2 Mice

Yongxia Yang; Ying Liu; Lingyun Zheng; Qianqian Zhang; Quliang Gu; Linlin Wang

Pancreatic islet β cell tumor is the most common islet cell tumor. A well-characterized tumor progression in Rip1-Tag2 mice undergoes five stages, involving normal, hyperplasia, angiogenic islets, tumorigenesis and invasive carcinoma. 1H NMR based metabonomics was applied to identify potential biomarkers for monitoring pancreatic islet β cell tumor progression in Rip1-Tag2 mice. Multivariate analysis results showed the serum metabonome at hyperplasia stage shared the similar characteristics with the ones at normal stage as a result of slight proliferation of pancreatic islet β cells. At angiogenic islets stage, the up-regulated glycolysis, disturbed choline and phospholipid metabolism composed the metabolic signature. In addition to the changes mentioned above, several metabolites were identified as early biomarkers for tumorigenesis, including increased methionine, citrate and choline, and reduced acetate, taurine and glucose, which suggested the activated energy and amino acid metabolism. All the changes were aggravated at invasive carcinoma stage, coupled with notable changes in alanine, glutamate and glycine. Moreover, the distinct metabolic phenotype was found associated with the implanting of SV40 large T antigen in Rip1-Tag2 mice. The combined metabolic and multivariate statistics approach provides a robust method for screening the biomarkers of disease progression and examining the association between gene and metabolism.


Scientific Reports | 2016

Phosphoinositide 3-Kinase (PI3K) Subunit p110δ Is Essential for Trophoblast Cell Differentiation and Placental Development in Mouse

Xiwen Hu; Jiangchao Li; Qianqian Zhang; Lingyun Zheng; Guang Wang; Xiaohan Zhang; Jingli Zhang; Quliang Gu; Yuxiang Ye; Sun-Wei Guo; Xuesong Yang; Lijing Wang

Maternal PI3K p110δ has been implicated in smaller litter sizes in mice, but its underlying mechanism remains unclear. The placenta is an indispensable chimeric organ that supports mammalian embryonic development. Using a mouse model of genetic inactivation of PI3K p110δ (p110δD910A/D910A), we show that fetuses carried by p110δD910A/D910A females were growth retarded and showed increased mortality in utero mainly during placentation. The placentas in p110δD910A/D910A females were anomalously anemic, exhibited thinner spongiotrophoblast layer and looser labyrinth zone, which indicate defective placental vasculogenesis. In addition, p110δ was detected in primary trophoblast giant cells (P-TGC) at early placentation. Maternal PI3K p110δ inactivation affected normal TGCs generation and expansion, impeded the branching of chorioallantoic placenta but enhanced the expression of matrix metalloproteinases (MMP-2, MMP-12). Poor vasculature support for the developing fetoplacental unit resulted in fetal death or gross growth retardation. These data, taken together, provide the first in vivo evidence that p110δ may play an important role in placental vascularization through manipulating trophoblast giant cell.


International Journal of Biological Sciences | 2016

P-selectin-mediated LOX expression promotes insulinoma growth in Rip1-Tag2 mice by increasing tissue stiffness

Cuiling Qi; Jialin Li; Simei Guo; Mengshi Li; Yuanyuan Li; Jiangchao Li; Qianqian Zhang; Lingyun Zheng; Xiaodong He; Xiaoming Zheng; Yanli He; Lijing Wang; Bo Wei

P-selectin, a cell adhesion molecule, is an important member of the selectin family. Recent studies have shown that P-selectin deletion inhibits tumor growth in Rip1-Tag2 mice by suppressing platelet accumulation in tumor tissues. This study aimed to evaluate whether and how P-selectin affects tumor stiffness in Rip1-Tag2 mice. To explore the role of P-selectin in tissue stiffness, we demonstrated that tumor progression in Rip1-Tag2 mice was correlated with tissue stiffness using immunofluorescence and histological staining. Furthermore, we showed that P-selectin deficiency significantly decreased tissue stiffness by inhibiting lysyl oxidase (LOX) expression. Our experiments involving Rip1-Tag2 mice treated with the LOX inhibitor BAPN showed that BAPN significantly abolished collagen deposition to decrease tumor stiffness and thus inhibit tumor growth. These results indicate that P-selectin deletion significantly decreases tumor stiffness in Rip1-Tag2 mice by inhibiting LOX expression. Further study demonstrated that P-selectin-mediated platelet accumulation increases tissue stiffness mainly by increasing LOX expression and thus promotes tumor growth. Therefore, P-selectin may be an effective therapeutic targeting for treating human insulinomas.


RSC Advances | 2017

Metabonomic analysis of metastatic lung tissue in breast cancer mice by an integrated NMR-based metabonomics approach

Yongxia Yang; Jingli Zhang; Ying Liu; Binglin Li; Jiangchao Li; Lingyun Zheng; Lijing Wang

Breast cancer metastases have been crucial for treatment and prognosis of breast cancer, therefore, the early diagnosis of metastases is of great significance to improve the patients survival. The lung is one of the most common metastatic sites of breast cancer. Although there are many techniques used for lung metastasis diagnosis, they have difficulty in detecting lung metastases at an early and resectable stage when metastatic nodules are small or specially located. In this study, we used 1H NMR based metabonomics in conjunction with multivariate analysis to determine the metabolic phenotypes of lung tissues at different metastatic stages, and identify the common potential biomarkers for early metastasis in both MMTV-PyMT and 4T1 breast cancer lung metastasis models. Multivariate analysis results showed that the increased levels in lactate, alanine, glutamate and creatine were the potential biomarkers at early metastatic stage. With the severity of metastasis, the emerging changes of up-regulated GPC/PC and myo-inositol, together with down-regulated valine were metabolic profiles at late metastatic stage. These findings give a metabonomic overview of breast cancer metastatic lung tissues characterized by a series of changed biochemical pathways including energy metabolism (glycolysis and creatine metabolism), amino acids and phospholipids metabolism, demonstrating metabonomics as a useful approach for identifying biomarkers for tumor metastasis.


Molecular BioSystems | 2014

Serum metabonomic analysis of apoE−/− mice reveals progression axes for atherosclerosis based on NMR spectroscopy

Yongxia Yang; Ying Liu; Lingyun Zheng; Teng Wu; Jiangchao Li; Qianqian Zhang; Xiaoqiang Li; Fengying Yuan; Lijing Wang; Jiao Guo


Journal of Hepatology | 2011

1068 THE DYNAMIC EXPRESSION OF PTEN IN FIBROGENESIS AND REVERSAL OF RAT LIVER FIBROSIS AND ITS INFLUENCES ON ACTIVATION AND PROLIFERATION OF HEPATIC STELLATE CELLS

Lingyun Zheng; X.L. Zhang; J.Y. An; J. Guo; J.S. Han

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Lijing Wang

Guangdong Pharmaceutical University

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Jiangchao Li

Guangdong Pharmaceutical University

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Qianqian Zhang

Guangdong Pharmaceutical University

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Yongxia Yang

Guangdong Pharmaceutical University

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Cuiling Qi

Guangdong Pharmaceutical University

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Quliang Gu

Guangdong Pharmaceutical University

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Teng Wu

Guangdong Pharmaceutical University

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Xiaodong He

Guangdong Pharmaceutical University

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Cuiling Zeng

Guangdong Pharmaceutical University

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Tian Lan

Guangdong Pharmaceutical University

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