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309 result(s) for "He, Xixin"
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The clinical value of predicting lymphovascular invasion in patients with invasive lung adenocarcinoma based on the intratumoral and peritumoral CT radiomics models
Objective Lung cancer remains the leading cause of cancer-related deaths worldwide, and lymphovascular invasion (LVI) is an important pathological indicator affecting the prognosis of lung cancer patients. Traditional imaging techniques face challenges in effectively and accurately predicting vascular invasion, but integrating clinical indicators with radiomics features is expected to improve the non-invasive preoperative prediction of LVI, providing valuable reference for clinical treatment decisions. This study aimed to investigate the clinical value of predicting LVI in patients with invasive lung adenocarcinoma (LUAD) based on the intratumoral and peritumoral CT radiomics models. Patients and methods The 384 patients with invasive LUAD from Institution 1 were randomly divided into training ( n  = 268) and internal validation ( n  = 116) sets with a ratio of 7:3, and 251 patients from Institution 2 were used as the external validation set. Altogether, 1226 features were extracted from the tumor gross (GT), gross tumor and peritumor (GPT), and peritumor(PT), respectively. Clinical independent predictors for LVI in patients with invasive LUAD were screened using univariate and multivariate logistic regression analysis, a combined model that included clinical predictors and optimal Radscore was constructed, and a nomogram was drawn. All cases were diagnosed using histopathological examination results as the gold standard. Results The GPT model showed better predictive efficacy than the GT and PT models, with the area under the curve (AUC) of 0.83, 0.79, and 0.75 in the training, internal validation, and external validation sets, respectively. In the clinical model, the preoperative carcinoembryonic antigen (CEA) level, tumor diameter, and spiculation were the independent predictors. The combined model containing the independent predictors and the GPT-Radscore significantly predicted LVI in patients with invasive LUAD, with AUCs of 0.84, 0.82, and 0.77 in the three cohorts, respectively. Conclusion The CT scan-based radiomics model which including intratumoral and peritumoral radiomics features could effectively predict LVI in LUAD patients, and the predictive efficacy were further improved by combining clinically independent predictors. This study holded significant clinical importance, as it provided a non-invasive biomarker for the preoperative prediction of LVI status in lung cancer patients, thereby identifying subgroups with poor prognosis. It demonstrated great potential for risk stratification and guiding personalized treatment strategies in clinical practice.
5,6,7,8-Tetrahydrobenzo4,5thieno2,3-dpyrimidine derivative attenuates lupus nephritis with less effect to thymocyte development
Retinoic‑acid‑receptor‑related orphan nuclear hormone receptor gamma t (RORγt), a critical transcriptional factor of Th17 cells, is a potential therapeutic target for Th17-mediated autoimmune diseases. In addition, RORγt is essential for thymocyte survival and lymph node development, and RORγt inhibition or deficiency causes abnormal thymocyte development, thymus lymphoma, and lymph node defect. Recent study demonstrated that specific regulation of Th17 differentiation related to the hinge region of RORγt. In this research, we investigated the effect of RORγt inhibitor, 5,6,7,8-tetrahydrobenzo[4,5]thieno[2,3-d]pyrimidine derivative (TTP), in the therapy of lupus nephritis and its safety on thymocyte development. We demonstrated that TTP repressed the development of Th17 cells and ameliorated the autoimmune disease manifestation in the pristane-induced lupus nephritis mice model. The treatment of TTP in the mice did not interfere with thymocyte development, including total thymocyte number and proportion of CD4+CD8+ double-positive populations in the thymus, and had no substantial effects on the pathogenesis of thymoma. The TTP had a stronger affinity with full-length RORγt protein compared with the truncated RORγt LBD region via surface plasmon resonance, which indicated TTP binding to RORγt beyond LBD region. Molecular docking computation showed that the best binding pocket of TTP to RORγt is located in the hinge region of RORγt. In summary, as a RORγt inhibitor, TTP had a potential to develop the clinical medicine for treating Th17-mediated autoimmune diseases with low safety risk for thymocyte development.
3β-Acetyloxy-oleanolic Acid Attenuates Pristane-Induced Lupus Nephritis by Regulating Th17 Differentiation
Th17 activity has been implicated in systemic lupus erythematosus (SLE), which is a systemic autoimmune disease with a typical clinical manifestation of lupus nephritis (LN). Retinoic acid receptor-related orphan receptor gamma t (RORγt) has been shown to be important for Th17 differentiation. In this study, we evaluated the inhibition of RORγt activity by 3β-acetyloxy-oleanolic acid (AOA), a small molecule isolated from the root of Symplocos laurina, a traditional herb belonging to South China. We demonstrated that AOA can inhibit RORγt activity and prevent SLE pathogenesis in a pristane-induced LN model. The results showed that AOA decreased RORγt transcription activity in a reporter assay and prevented Th17 differentiation in vitro. In vivo studies showed that AOA treatment decreased serum anti-dsDNA antibody and alleviated renal pathologic damage as well as antibody complex accumulation in the pristane-induced LN model. These results demonstrated that AOA can improve the clinical manifestation of LN, indicating potential application in SLE therapy.
Synthesis and Functional Characterization of Substituted Isoquinolinones as MT2-Selective Melatoninergic Ligands
A series of substituted isoquinolinones were synthesized and their binding affinities and functional activities towards human melatonin MT1 and MT2 receptors were evaluated. Structure-activity relationship analysis revealed that substituted isoquinolinones bearing a 3-methoxybenzyloxyl group at C5, C6 or C7 position respectively (C5>C6>C7 in terms of their potency) conferred effective binding and selectivity toward the MT2 receptor, with 15b as the most potent compound. Most of the tested compounds were MT2-selective agonists as revealed in receptor-mediated cAMP inhibition, intracellular Ca2+ mobilization and phosphorylation of extracellular signal-regulated protein kinases. Intriguingly, compounds 7e and 7f bearing a 4-methoxybenzyloxyl group or 4-methylbenzyloxyl at C6 behaved as weak MT2-selective antagonists. These results suggest that substituted isoquinolinones represent a novel family of MT2-selective melatonin ligands. The position of the substituted benzyloxyl group, and the substituents on the benzyl ring appeared to dictate the functional characteristics of these compounds.
Berberine protects homocysteic acid-induced HT-22 cell death: involvement of Akt pathway
Berberine (BBR), one of the major constituents of Chinese herb Rhizoma coptidis, has been reported to exert beneficial effects to various diseases, including Alzheimer’s disease (AD). In the present work, we aimed to investigate the effects of BBR on neuronal cell death induced by homocysteic acid (HCA), which was considered as a risk of AD. BBR significantly reduced HCA-induced reactive oxygen species (ROS) generation, lactate dehydrogenase release and subsequent cell death. LY294002, the PI3K inhibitor, blocked the protection as well as the up-regulation of Akt phosphorylation of BBR. Taken together, our results indicate that BBR protects HCA-induced HT-22 cell death partly via modulating Akt pathway, suggesting BBR may be a promising therapeutic agent for the treatment of HCA-related diseases, including AD.
3 β -Acetyloxy-oleanolic Acid Attenuates Pristane-Induced Lupus Nephritis by Regulating Th17 Differentiation
Th17 activity has been implicated in systemic lupus erythematosus (SLE), which is a systemic autoimmune disease with a typical clinical manifestation of lupus nephritis (LN). Retinoic acid receptor-related orphan receptor gamma t (ROR γ t) has been shown to be important for Th17 differentiation. In this study, we evaluated the inhibition of ROR γ t activity by 3 β -acetyloxy-oleanolic acid (AOA), a small molecule isolated from the root of Symplocos laurina , a traditional herb belonging to South China. We demonstrated that AOA can inhibit ROR γ t activity and prevent SLE pathogenesis in a pristane-induced LN model. The results showed that AOA decreased ROR γ t transcription activity in a reporter assay and prevented Th17 differentiation in vitro . In vivo studies showed that AOA treatment decreased serum anti-dsDNA antibody and alleviated renal pathologic damage as well as antibody complex accumulation in the pristane-induced LN model. These results demonstrated that AOA can improve the clinical manifestation of LN, indicating potential application in SLE therapy.
Synthesis and Functional Characterization of Substituted Isoquinolinones as MT.sub.2-Selective Melatoninergic Ligands
A series of substituted isoquinolinones were synthesized and their binding affinities and functional activities towards human melatonin MT.sub.1 and MT.sub.2 receptors were evaluated. Structure-activity relationship analysis revealed that substituted isoquinolinones bearing a 3-methoxybenzyloxyl group at C5, C6 or C7 position respectively (C5>C6>C7 in terms of their potency) conferred effective binding and selectivity toward the MT.sub.2 receptor, with 15b as the most potent compound. Most of the tested compounds were MT.sub.2 -selective agonists as revealed in receptor-mediated cAMP inhibition, intracellular Ca.sup.2+ mobilization and phosphorylation of extracellular signal-regulated protein kinases. Intriguingly, compounds 7e and 7f bearing a 4-methoxybenzyloxyl group or 4-methylbenzyloxyl at C6 behaved as weak MT.sub.2 -selective antagonists. These results suggest that substituted isoquinolinones represent a novel family of MT.sub.2 -selective melatonin ligands. The position of the substituted benzyloxyl group, and the substituents on the benzyl ring appeared to dictate the functional characteristics of these compounds.
Airway hyperresponsiveness development and the toxicity of PM2.5
Airway hyperresponsiveness (AHR) is characterized by excessive bronchoconstriction in response to nonspecific stimuli, thereby leading to airway stenosis and increased airway resistance. AHR is recognized as a key characteristic of asthma and is associated with significant morbidity. At present, many studies on the molecular mechanisms of AHR have mainly focused on the imbalance in Th1 / Th2 cell function and the abnormal contraction of airway smooth muscle cells. However, the specific mechanisms of AHR remain unclear and need to be systematically elaborated. In addition, the effect of air pollution on the respiratory system has become a worldwide concern. To date, numerous studies have indicated that certain concentrations of fine particulate matter (PM2.5) can increase airway responsiveness and induce acute exacerbation of asthma. Of note, the concentration of PM2.5 does correlate with the degree of AHR. Numerous studies exploring the toxicity of PM2.5 have mainly focused on the inflammatory response, oxidative stress, genotoxicity, apoptosis, autophagy, and so on. However, there have been few reviews systematically elaborating the molecular mechanisms by which PM2.5 induces AHR. The present review separately sheds light on the underlying molecular mechanisms of AHR and PM2.5-induced AHR.
Accelerated Reliability Testing Methods for Electronic Control Unit of Auxiliary Power Units in Civil Aircraft
Reliability qualification testing for critical aviation electronics like the Electronic Control Unit (ECU) is often impeded by the extended duration and high cost of conventional methods. While existing accelerated testing approaches have been developed, they typically maintain continuous electrical stress throughout the test cycle. This fails to accurately represent the ECU’s actual operational profile, where it remains inactive during extended cruise phases and must demonstrate reliable starting capability after prolonged exposure to high temperatures (thermal soak). To address this shortcoming, this study proposes a novel methodology for developing a physics-based accelerated test profile. Our key innovation lies in modifying the electrical stress profile to eliminate power during simulated cruise segments and incorporate specific start-up cycles under thermally soaked conditions. This more realistically replicates mission-level stresses and failure mechanisms. By applying this method to a case study ECU, we successfully accelerated the qualification process, reducing the total test duration from 32,200 APUH to 11,152 APUH—an acceleration factor of 2.89—while enhancing the test’s fidelity to real-world conditions. This work provides a more accurate and efficient framework for the reliability validation of aircraft systems, contributing significantly to the field of accelerated life testing for safety-critical aerospace components.
Myricetin ameliorates sepsis-associated acute lung injury in a murine sepsis model
Myricetin belongs to the flavonoid family which is derived from plant source. It is well-known for the anti-inflammatory and anti-oxidative properties yet the clinical use of myricetin awaits further discovery. Acute lung injury (ALI) is commonly caused by sepsis which leads to enormous burden with high morbidity and mortality. In this study, a murine sepsis model was constructed by cecal ligation and puncture (CLP). The indicated dose of myricetin (100 mg/kg) was further administrated intragastrically. The survival rate test indicated that myricetin significantly improved the vitality of CLP-operated mice. The pathological changes in morphology, biomarkers of inflammatory response, oxidative stress response, and mitochondrial damage were further detected. Myricetin showed significant inhibitory effects on these changes in CLP-induced mice. Furthermore, expression levels of transcription factor Nrf2 and heme oxygenase-1 (HO-1) along with DNA binding activity of Nrf2 were analyzed by western blot and EMSA, indicating that myricetin positively regulates the Nrf2/HO-1 pathway in CLP-induced sepsis mice. Murine sepsis models with knockdown of Nrf2 and control were further established and suggested that myricetin might exert protective effects on sepsis lung injury in dependent with Nrf2. Our study provides novel mechanisms for the protective effect of myricetin in sepsis-associated acute lung injury.