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Biomedical subjects

Lu Xie

Publications and source records attributed to Lu Xie.

13 recordsLinked to original sources

Plasma Proteomics Identifies Thousand-and-One-Amino Acid Kinase 3 as a Potential Biomarker of Rheumatoid Arthritis Activity and a Novel Therapeutic Target.

OBJECTIVE: Bone destruction associated with active rheumatoid arthritis (RA) remains a major therapeutic challenge, with a lack of reliable molecular markers reflecting bone injury. This study aims to identify novel biomarkers linked to bone destruction in active RA through proteomic analysis, providing new strategies for precise monitoring and targeted therapy. METHODS: Data-independent acquisition mass spectrometry was used for proteomic quantification and bioinformatic analysis on plasma samples from 160 patients with RA and 40 healthy controls. Key proteins associated with bone destruction were screened by integrating Sharp scores with synovial single-cell RNA sequencing data and subsequently validated in two independent cohorts (N1 = 50 and N2 = 10) using enzyme-linked immunosorbent assay and multiplex immunohistochemistry. Functional studies were conducted using fibroblast-like synoviocytes (FLSs) in vitro and a collagen-induced arthritis (CIA) mouse model in vivo. RESULTS: A total of 4,998 plasma proteins were identified, with 506 showing significant differential expression between active and remitted RA. Thousand-and-one-amino acid kinase 3 (TAOK3) levels were positively associated with Sharp scores and markedly elevated in patients with active RA. Combining TAOK3 with C-reactive protein improved diagnostic accuracy for active RA (area under the curve = 0.915). High TAOK3 expression was also associated with increased relapse frequency. Functional studies showed that TAOK3 knockdown suppressed the tumor-like phenotype of FLSs and down-regulated matrix metalloproteinase 1/2/3 and cathepsin K, whereas TAOK3 overexpression promoted pannus cell-mediated bone erosion, mitigated by TAOK3-targeted inhibitor. In vivo, its inhibition showed therapeutic effects in CIA mice. CONCLUSION: TAOK3 serves as a potential biomarker for bone destruction in active RA and as a therapeutic target for precision monitoring and intervention.

Arthritis, Rheumatoid↗

Transoesophageal cardiac pacing is effective for cardiopulmonary resuscitation in a rat of asphyxial model.

OBJECTIVE: To investigate effectiveness of transoesophageal cardiac pacing in a rat model of asphyxial cardiac arrest. METHODS: Ten minutes after the tracheal tube had been clamped, cardiac arrest (CA) occurred in 20 Sprague-Dawley rats, and the rats were assigned randomly to receive cardiopulmonary resuscitation (CPR) in a control group or CPR combined with transoesophageal cardiac pacing in a pacing group. Restoration of spontaneous circulation (ROSC) was defined as an unassisted pulse with a mean arterial pressure (MAP) of >or=20 mmHg for >or=1 min. RESULTS: ROSC was significantly more frequent in the pacing group compared with the control group (7/10 versus 1/10, P<0.05). Faster ROSC and longer survival trend in the pacing group were seen compared with the control group. CONCLUSION: Transoesophageal cardiac pacing is effective for CPR in a rat of asphyxial model. However, the precise mechanism is not clear and further experiments will be necessary.

Animals↗

Does naloxone alone increase resuscitation rate during cardiopulmonary resuscitation in a rat asphyxia model?

Cardiac arrest was induced with asphyxia to identify if naloxone alone increases resuscitation rate during cardiopulmonary resuscitation in a rat asphyxia model. The animals were randomized into either a saline group (Sal-gro, treated with normal saline 1 ml iv, n = 8), a low-dose naloxone group (treated with naloxone 0.5 mg/kg iv, n = 8), or a high-dose naloxone group (HN-gro, treated with naloxone 1 mg/kg iv, n = 8) in a blinded fashion during resuscitation. At the end of 10 minutes of asphyxia, cardiopulmonary resuscitation was started, and each drug was administered at the same time. The rate of restoration of spontaneous circulation was seen in 1 of 8, 3 of 8, and 7 of 8 animals in the Sal-gro, LN-gro, and HN-gro, respectively. The rate of restoration of spontaneous circulation in HN-gro was significantly higher than that in Sal-gro (P < .05). Naloxone (1 mg/kg) alone can increase resuscitation rate following asphyxial cardiac arrest in rats.

Animals↗

A comparison of transoesophageal cardiac pacing and epinephrine for cardiopulmonary resuscitation.

The use of cardiac pacing to deal with bradycardia is well established. There is debate as to the benefits during cardiopulmonary resuscitation (CPR). This study was performed to compare the effects of transoesophageal cardiac pacing and high-dose epinephrine on the benefits of cardiopulmonary resuscitation after asphyxial cardiac arrest in rats. Thirty Sprague-Dawley rats of both sexes were randomly selected to a saline group (Sal-gro, treated with normal saline 1 mL IV, n = 10), an epinephrine group (Epi-gro, treated with epinephrine 0.4 mg/kg IV, n = 10), or a pacing group (Pac-gro, treated with normal saline 1 mL IV combined with transoesophageal cardiac pacing, n = 10) in a blinded fashion during resuscitation after 10 minutes of asphyxial cardiac arrest. Manual chest compression was in all cases performed using the same methodology by the same personnel who was blinded to hemodynamic monitor tracings. The rate of restoration of spontaneous circulation was 1 (10%), 7 (70%), and 8 (80%) of 10 in Sal-gro, Epi-gro, and Pac-gro, respectively. The rate of ventilator withdrawal within 60 minutes after resuscitation in Pac-gro was higher than that of Epi-gro (8/8 vs 1/7, respectively; P = .001); the survival rate after 2 hours in Pac-gro was significantly higher than that in Epi-gro (7/8 vs 1/7, respectively; P = .01). The data demonstrate that both epinephrine and transoesophageal cardiac pacing are effective within 10 minutes of asphyxia in rats. It is worth noting that transoesophageal cardiac pacing produced a better outcome with respiration and longer survival time compared with epinephrine after restoration of spontaneous circulation.

Animals↗

Transforming growth factor beta-regulated gene expression in a mouse mammary gland epithelial cell line.

BACKGROUND: Transforming growth factor beta (TGF-beta) plays an essential role in a wide array of cellular processes. The most well studied TGF-beta response in normal epithelial cells is growth inhibition. In some cell types, TGF-beta induces an epithelial to mesenchymal transition (EMT). NMuMG is a nontransformed mouse mammary gland epithelial cell line that exhibits both a growth inhibitory response and an EMT response to TGF-beta, rendering NMuMG cells a good model system for studying these TGF-beta effects. METHOD: A National Institutes of Aging mouse 15,000 cDNA microarray was used to profile the gene expression of NMuMG cells treated with TGF-beta1 for 1, 6, or 24 hours. Data analyses were performed using GenePixPro and GeneSpring software. Selected microarray results were verified by northern analyses. RESULTS: Of the 15,000 genes examined by microarray, 939 were upregulated or downregulated by TGF-beta. This represents approximately 10% of the genes examined, minus redundancy. Seven genes previously not known to be regulated by TGF-beta at the transcriptional level (Akt and RhoB) or not at all (IQGAP1, mCalpain, actinin alpha3, Ikki, PP2A-PR53), were identified and their regulation by TGF-beta verified by northern blotting. Cell cycle pathway examination demonstrated downregulation of cyclin D2, c-myc, Id2, p107, E2F5, cyclin A, cyclin B, and cyclin H. Examination of cell adhesion-related genes revealed upregulation of c-Jun, alpha-actinin, actin, myosin light chain, p120cas catenin (Catns), alpha-integrin, integrin beta5, fibronectin, IQGAP1, and mCalpain. CONCLUSION: Using a cDNA microarray to examine TGF-beta-regulated gene expression in NMuMG cells, we have shown regulation of multiple genes that play important roles in cell cycle control and EMT. In addition, we have identified several novel TGF-beta-regulated genes that may mediate previously unknown TGF-beta functions.

Animals↗

Active immunotherapy with anti-idiotypic antibody for patients with nasopharyngeal carcinoma (NPC).

Two anti-idiotypic monoclonal antibodies (Ab2), designated 2H4 and 5D3, against two antitumor antibodies Ab1 (FC2 and HNL5) that recognize nasopharyngeal carcinoma (NPC) associated antigen were generated. They could substitute NPC antigen to induce humoral and cellular immune response against NPC cells in syngeneic mice. Nineteen patients with NPC at stage IV were chosen for active immunotherapy. They were treated with aluminum hydroxide-precipitated Ab2 2H4 or 5D3 accompanying radiotherapy. None of the immunization of anti-idiotypic monoclonal antibody (mAb) was associated with toxicity or allergies reactions. Nine patients with radiotherapy alone served as control. Both anti-anti-idiotypic antibodies (Ab3) and anti-NPC antibodies (Ab1') were increased and human anti-mouse Ig antibodies (HAMA) occurred in nineteen patients of the experimental group; whereas the levels of Ab1' did not rise in the control group. Serum IL-2, IFN-gamma, and TNF-alpha levels were increased in most patients in the experimental group, while in the control group, there were no differences of Ab1' and cytokine level between pretherapy and posttherapy. In addition, IL-2 mRNA expression in peripheral blood mononuclear cells (PBMC) of NPC patients was closely related to serum IL-2 (r = +0.8829) by in situ hybridization. Therefore, mouse anti-idiotypic antibodies 2H4 and 5D3 are safe for active immunotherapy and might enhance humoral and/or cellular immunity of NPC patients receiving radiotherapy.

Adult↗

[Plerosis of cDNA array of normal human nasopharyngeal tissue and nasopharyngeal carcinoma].

OBJECTIVE: To compare gene expression gene profile of nasopharyngeal carcinoma (NPC) tissue with that of normal nasopharyngeal tissues by cDNA array and to discuss possible functions of DNA repair-related genes in NPC tissue. METHODS: After hybridization of atlas human cancer cDNA expression array 7742 - 1, atlas hybridization results were analyzed by Atlas Image 1.01 a software package. Using RT-PCR was used to confirm the results. RESULTS: Of 63 differentially expressed genes in quadrangle C including DNA damage response, repair & recombination-related genes, 6 DNA repair-related genes were up-regulated, 12 were down-regulated. CONCLUSION: DNA repair-related genes may be involved in patho-physiological process of nasopharyngeal carcinoma.

DNA Repair↗

A clinical trial of active immunotherapy with anti-idiotypic vaccine in nasopharyngeal carcinoma patients.

OBJECTIVE: To investigate the effect of active immunotherapy with anti-idiotypic vaccine in patients with nasopharyngeal carcinoma (NPC). METHODS: Anti-idiotypic antibodies (2H4/5D3) bearing the internal image of the NPC antigen were used in active immunotherapy in NPC patients receiving radiotherapy. Antibodies and cytokine levels in patient sera were determined using ELISA before and after active immunotherapy. IL-2 mRNA expression in the peripheral blood mononuclear cells (PBMC) was measured by in situ hybridization. RESULTS: Nineteen patients with NPC at stage IV were treated with alum-precipitated 2H4 or 5D3. Neither hypersensitivity nor adverse side effects were observed. The levels of anti-anti-idiotypic antibodies (Ab3) and anti-NPC antibodies (Ab1') were increased. Human anti-mouse antibodies (HAMA) were seen in 19 patients of the experimental group; the levels of Ab1' did not increase in the control group. Serum IL-2, IFN-gamma and TNF-alpha levels were increased in most patients in the experimental group, while no differences were observed in Ab1' and cytokine levels between pre- and post-therapy in the control group. In addition, IL-2 mRNA expression in PBMCs from NPC patients was closely related to serum IL-2 (r = + 0.8829) levels by in situ hybridization. CONCLUSIONS: Anti-idiotype vaccine is safe for clinical active immunotherapy. Anti-idiotypic vaccine might be able to enhance humoral and/or cellular immunity in NPC patients receiving radiotherapy.

Adult↗

Gene Expression Profiles of Human Fetal Nasopharyngeal Tissue.

To study differentially expressed genes in nasopharynx tissues of embryo during development, and to observe the gene changes, total RNAs were respectively extracted from the nasopharynx tissue which came from fetuses of 5, 6, 7, and 8 month, Probes were yielded by reverse transcription and were used to hybridize with the Atlas(TM) human cDNA expression arrays. The results showed that the genes expression profile were distinctly different and different expression levels were found in the same gene during development. Results indicated that gene expression pattern had a character of time-dependence, such as early growth response protein 1 and the cDNA expression array provided a powerful method for studying gene expression profile in a large range of genes.

Journal Article↗

Genomic and proteomic analysis of mammary tumors arising in transgenic mice.

Transforming growth factor-beta (TGF-beta) is the prototype of a large family of signaling molecules. TGF-beta signaling profoundly influences tumor development as demonstrated in several engineered mouse models. The present study was designed to identify differences by cDNA microarray and MALDI-TOF MS analyses in mammary carcinomas with and without TGF-beta signaling. The results demonstrate a significant potential for combination of profiling technologies to further understand the molecular mechanisms of breast cancer.

Amino Acid Sequence↗

Activation of the Erk pathway is required for TGF-beta1-induced EMT in vitro.

Transforming growth factor-beta1 (TGF-beta1) can be tumor-suppressive through the activation of the Smad-mediated signaling pathway. TGF-beta1 can also enhance tumor progression by stimulating epithelial-to-mesenchymal transition (EMT) through additional pathways. EMT is characterized by the acquisition of a fibroblast-like cell morphology, dissolution of tight junctions, disruption of adherence junctions, and formation of actin stress fibers. There is evidence linking the activation of mitogen-activated protein kinase pathways to the induction of TGF-beta1-mediated EMT. However, the role of Erk in the induction of TGF-beta1-mediated EMT remains unclear. TGF-beta1 treatment of normal murine mammary gland (NMuMG) epithelial cells resulted in increased gene expression of Ras, Raf, MEK1/2, and Erk1/2, as shown by microarray analysis and real-time polymerase chain reaction. Upon 24 and 48 hours of treatment with TGF-beta1, NMuMG and mouse cortical tubule (MCT) epithelial cells underwent EMT as shown by changes in cell morphology, delocalization of zonula occludens-1 and E-cadherin from cell-cell junctions, and formation of actin stress fibers. TGF-beta1 treatment also resulted in increased levels of phosphorylated Erk and Erk kinase activity. Treatment with an MEK inhibitor, U0126, inhibited increased Erk phosphorylation and kinase activity, and blocked TGF-beta1-induced EMT in both cell lines. These data show that TGF-beta1 induces the activation of the Erk signaling pathway, which is required for TGF-beta1-mediated EMT in vitro.

Animals↗