Publications by authors named "Z-S Yang"

Aging compromises antitumor immunity, but the underlying mechanisms remain elusive. Here, we report that aging impairs the generation of CD8 tissue resident memory T (T) cells in nonlymphoid tissues in mice, thus compromising the antitumor activity of aged CD8 T cells, which we also observed in human lung adenocarcinoma. We further identified that the apoptosis regulator BFAR was highly enriched in aged CD8 T cells, in which BFAR suppressed cytokine-induced JAK2 signaling by activating JAK2 deubiquitination, thereby limiting downstream STAT1-mediated T reprogramming.

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  • This study aimed to evaluate and compare the health utility scores from different countries' EQ-5D-Y-3L value sets among adolescents in China, focusing on measuring health status in junior high school students aged 10-18.
  • Over 97,000 students participated in a survey from July to September 2021 across 16 cities in Shandong province, assessing the validity and agreement of these value sets.
  • Findings revealed that the Indonesian value set scored the highest in health utility, while the scores from Asian countries were generally higher than those from European countries, indicating good agreement and strong correlations among the different value sets.
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  • Recent guidelines suggest that individuals with prehypertension (130/80 to 139/89 mm Hg) should consider antihypertensive treatment; this study assesses the cost-effectiveness of three interventions: salt substitution, antihypertensive drugs, and their combination in Chinese adults.
  • A Markov cohort model was used to estimate the impact of these interventions on cardiovascular disease events, costs, and quality-adjusted life years (QALYs), utilizing data from the China Kadoorie Biobank.
  • The findings indicate that salt substitution is the most cost-effective strategy for prehypertensive individuals starting at age 40, while a combination intervention is best for those at high cardiovascular risk; beginning these interventions at younger ages can lead to more
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  • The study investigates the link between inflammation and tissue fibrosis in human cardiac diseases, revealing unique fibroblast populations that contribute to heart dysfunction.
  • Researchers used advanced techniques on heart samples to uncover these fibroblast types and their relationship with immune cells, specifically CCR2 macrophages, in promoting fibrosis through IL-1β signaling.
  • By blocking IL-1β signaling, the study demonstrated reduced fibrosis and improved heart function, suggesting that targeting inflammation could be a promising approach for treating cardiac fibrosis.
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Background: To introduce a new flange technique (called the Z.S. fixation technique) for 8 - 0 polypropylene suture in scleral fixation of a one-piece intraocular lens (IOL) and evaluate its effectiveness and safety.

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  • - The study aimed to create and validate a new computed tomography (CT)-based fracture risk assessment model (FRCT) specifically for patients with chronic obstructive pulmonary disease (COPD).
  • - Researchers analyzed data from 284 COPD patients, using the Boruta algorithm to identify important variables, ultimately developing a user-friendly nomogram for predicting fracture risks.
  • - The FRCT model predicted fragility fractures more accurately than the standard FRAX tool, with better calibration and a significant net benefit, making it a valuable resource for clinicians helping COPD patients manage their fracture risks.
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Background: Respiratory syncytial virus (RSV) is a leading cause of severe illness in infants, with no effective treatment. Results of a phase 2 trial suggested that ziresovir may have efficacy in the treatment of infants hospitalized with RSV infection.

Methods: In a phase 3, multicenter, double-blind, randomized, placebo-controlled trial conducted in China, we enrolled participants 1 to 24 months of age who were hospitalized with RSV infection.

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The exploration of novel two-dimensional (2D) materials with a direct band gap and high mobility has attracted huge attention due to their potential application in electronic and optoelectronic devices. Here, we propose a feasible way to construct multiatomic monolayer CaAZ (A = Al and Ga and Z = S, Se, and Te) by first-principles calculations. Our results indicated that the energies of α-phase CaAZ are slightly lower than those of experimentally synthesized α-phase-like CaAZ monolayers with excellent structural stability.

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Background: Coronary chronic total occlusion (CTO) increases the risk of developing major adverse cardiovascular events (MACE) and cardiogenic shock. Coronary computed tomography angiography (CCTA) is a safe, noninvasive method to diagnose CTO lesions. With the development of artificial intelligence (AI), AI has been broadly applied in cardiovascular images, but AI-based detection of CTO lesions from CCTA images is difficult.

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  • Deep learning (DL) has the potential to enhance the diagnosis of cerebral aneurysms by utilizing large multicenter data sets for better segmentation and detection in CT angiography (CTA) images.
  • A retrospective collection of CTA images from eight hospitals was used to develop and test a DL model, with performance assessed against radiology reports using the Dice similarity coefficient and receiver operating characteristic curves.
  • The model demonstrated a high accuracy with a DSC of 0.87 for segmentation and 85.7% sensitivity in detecting aneurysms, performing comparably to traditional radiology assessments and processing scans relatively quickly in 1.76 minutes.
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Segmentation in medical images is inherently ambiguous. It is crucial to capture the uncertainty in lesion segmentations to assist cancer diagnosis and further interventions. Recent works have made great progress in generating multiple plausible segmentation results as diversified references to account for the uncertainty in lesion segmentations.

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  • * Pulmonary long COVID was observed in 8.7% and 17.8% of patients at 1- and 2-year visits, while renal long COVID affected 15.2% and 23.9% of patients, respectively.
  • * A machine learning model accurately predicted these long COVID outcomes using initial clinical and multi-omics data, and proteomics identified specific biomarkers linked to lung and kidney issues.
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Background: Severe combined immunodeficiency (SCID) is the most fatal form of inherited primary immunodeficiency disease. Known molecular defect mutations occur in most children with SCID.

Methods: Herein, we report Adenosine Deaminase-SCID (ADA-SCID) using whole-exome sequencing (WES), explore exome mutational landscape and significance for 17 SCID samples, and verify the mutated exon genes using the Gene Expression Omnibus (GEO) datasets.

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Background: Immune thrombocytopenia (ITP) is an autoimmune disease characterized by autoantibody-mediated platelet destruction. Treatment with CM313, a novel anti-CD38 monoclonal antibody, can result in targeted clearance of CD38-positive cells, including plasma cells.

Methods: We conducted a phase 1-2, open-label study to evaluate the safety and efficacy of CM313 in adult patients with ITP.

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Background: Coronary artery disease (CAD) is the leading cause of mortality worldwide. Recent advances in deep learning technology promise better diagnosis of CAD and improve assessment of CAD plaque buildup. The purpose of this study is to assess the performance of a deep learning algorithm in detecting and classifying coronary atherosclerotic plaques in coronary computed tomographic angiography (CCTA) images.

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Despite the important breakthroughs of immune checkpoint inhibitors in recent years, the objective response rates remain limited. Here, we synthesize programmed cell death protein-1 (PD-1) antibody-iRGD cyclic peptide conjugate (αPD-1-(iRGD)) through glycoengineering methods. In addition to enhancing tissue penetration, αPD-1-(iRGD) simultaneously engages tumor cells and PD-1 T cells via dual targeting, thus mediating tumor-specific T cell activation and proliferation with mild effects on non-specific T cells.

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Acute kidney injury (AKI) is a major worldwide health concern that currently lacks effective medical treatments. PSMP is a damage-induced chemotactic cytokine that acts as a ligand of CCR2 and has an unknown role in AKI. We have observed a significant increase in PSMP levels in the renal tissue, urine, and plasma of patients with AKI.

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Cement-based materials are the foundation of modern buildings but suffer from intensive energy consumption. Utilizing cement-based materials for efficient energy storage is one of the most promising strategies for realizing zero-energy buildings. However, cement-based materials encounter challenges in achieving excellent electrochemical performance without compromising mechanical properties.

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  • Cancer immunotherapy using autologous CAR T cells is complicated by manufacturing and patient selection issues, but 'off-the-shelf' options like allogeneic CAR-NKT cells could simplify the process.
  • Researchers developed a new method to produce high-yield IL-15-enhanced CAR-NKT cells that target multiple cancers, showing effectiveness in battling multiple myeloma and removing immunosuppressive cells from tumors.
  • The CAR-NKT cells demonstrated a stable hypoimmunogenic profile, meaning they are less likely to cause harmful immune reactions, making them promising candidates for clinical use without severe side effects like graft versus host disease.
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  • * A study utilized CRISPR/Cas9 gene editing with rAAV2/8 vectors to target intron 6 of the CYP4V2 gene in various cell types and a mouse model, successfully integrating critical genetic sequences for improving cell functions.
  • * The gene editing therapy showed positive outcomes, including restored cell viability and improved RPE and photoreceptor health in mouse models, indicating that this method has the potential for long-term treatment of BCD.
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Rifampicin (RFP) has demonstrated potent antibacterial effects in the treatment of pulmonary tuberculosis. However, the serious adverse effects on the liver intensively limit the clinical usage of the drug. Deacetylation greatly reduces the toxicity of RFP but also retains its curative activity.

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  • Asian soybean rust (ASR), caused by the fungus Phakopsora pachyrhizi, severely impacts soybean crops, with a lack of resistant varieties hindering effective management.
  • Researchers isolated two genes, Rpp6907-7 and Rpp6907-4, from a resistant Chinese soybean landrace, which together provide broad-spectrum resistance to ASR.
  • The study reveals that Rpp6907-7 is the primary gene conferring resistance, while Rpp6907-4 regulates its activity, indicating their potential in breeding improved soybean varieties.
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Broad-spectrum RAS inhibition has the potential to benefit roughly a quarter of human patients with cancer whose tumours are driven by RAS mutations. RMC-7977 is a highly selective inhibitor of the active GTP-bound forms of KRAS, HRAS and NRAS, with affinity for both mutant and wild-type variants. More than 90% of cases of human pancreatic ductal adenocarcinoma (PDAC) are driven by activating mutations in KRAS.

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Background: Current guidelines and consensus documents recommend withdrawal of mineralocorticoid receptor antagonists (MRAs) before primary aldosteronism (PA) subtyping by adrenal vein sampling (AVS), but this practice can cause severe hypokalemia and uncontrolled high blood pressure. Our aim was to investigate if unilateral PA can be identified by AVS during MRA treatment.

Methods: We compared the rate of unilateral PA identification between patients with and without MRA treatment in large data sets of patients submitted to AVS while off renin-angiotensin system blockers and β-blockers.

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The randomized, multicenter, double-blind, placebo-controlled, phase III PEONY trial (NCT02586025) demonstrated significantly improved total pathologic complete response (primary endpoint) with dual HER2 blockade in HER2-positive early/locally advanced breast cancer, as previously reported. Here, we present the final, long-term efficacy (secondary endpoints: event-free survival, disease-free survival, overall survival) and safety analysis (62.9 months' median follow-up).

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