A Korea University study reveals that reusable beverage systems can deliver significant environmental benefits when paired with efficient washing technologies. The research finds that automatic tumbler washers can maximize sustainability, while manually washed tumblers have the highest impacts among reusable options.
A study by Southeast University and Korea University provides a roadmap for converting biomass into renewable energy and chemicals. The researchers highlight the potential of biomass chemical looping (BCL) for producing hydrogen, methanol, and other low-carbon products.
Climate change is accelerating Himalayan river migration rates by nearly doubled, with increased risk of flooding, erosion, and damage. The study reveals that thawing frozen ground and glacier melt are driving these changes, posing implications for water security and infrastructure planning.
Southeast University and Korea University researchers developed advanced copper catalysts to convert CO₂ into valuable fuels. Their strategy integrates tandem effects, synergistic interactions, and geometric control to enhance reaction pathways, reducing energy barriers for C₂+ product formation.
This journal issue examines the evolution of traditional Chinese medicine through texts, practice, empire, and global cross-cultural exchange. Key findings include the gradual development of foundational concepts like the three yin-yang system and the concept of Du, as well as the role of medicine in political and social systems.
A new framework introduces the Water Sustainability Index (WSI), a transparent, quantitative metric designed to strengthen corporate water accountability worldwide. The WSI evaluates corporate water withdrawals, consumption, discharge quality, and reuse while accounting for local water scarcity.
Scientists reveal that slow orbital wobbles, known as precession cycles, generate abrupt millennial-scale climate fluctuations even under ice-free conditions. The study provides a new clue for understanding rapid climate swings and offers insights for future warming scenarios.
The China Association for Science and Technology has launched a bilingual communication project for Chinese STM journals, enhancing their academic influence and communication capabilities. This project has translated over 12,659 long abstracts, promoting the global visibility of Chinese research.
Researchers found that mammalian cells can absorb and rearrange DNA fragments from dying cells, creating complex genetic structures with novel functions. These 'satellite genomes' challenge traditional views of genomics and evolution.
Researchers developed an electrochemical conversion technology that achieves unprecedented performance in CO2-to-alcohol conversion, achieving a Faraday efficiency of 66.9%. The technology selectively produces allyl alcohol, a multi-carbon high-value-added compound, with potential applications in various industries.
Researchers identify epipharynx as a key site for chronic inflammation driven by residual SARS-CoV-2 RNA in patients with long COVID. A novel treatment, epipharyngeal abrasive therapy (EAT), promotes removal of damaged tissue and immune modulation.
A recent study analyzes evolution of sustainability in higher education institutions, highlighting need for standardization and impact assessments. University-led initiatives and campus regulations can directly impact sustainability performance.
A landmark study by Prof. Yong Sik Ok charts biochar's global market potential as a carbon-negative technology aligned with ESG goals, UN SDGs, and Net Zero pathways. The study provides actionable guidance for governments, industry leaders, and research institutions to integrate biochar into their climate portfolios.
Researchers at CCM Biosciences have discovered novel enzyme activators that fully restore the activity of Sirtuin-3, a master regulator of cellular energy production. These compounds hold significant potential for addressing age-related disorders such as Alzheimer's and Parkinson's diseases.
The Xinjiang Institute of Ecology and Geography has launched several initiatives to combat desertification, including a Green Technology Park in Mauritania and the African Great Green Wall initiative. These efforts aim to address livelihood crises and improve economic development in Africa.
The Global Young Academy Asian Event-Global π Roundtable 2024 brought together experts to discuss strategies for addressing climate change and promoting sustainable development. The event explored topics such as resilient cities, mineral resources, and the integration of art and culture in scientific communication.
Over 260 young scientists from around the world have signed a declaration at Wenzhou, China, to promote sustainable innovation. The Wenzhou Declaration emphasizes the importance of leveraging science, technology, and innovation to tackle global challenges and create a resilient future.
Researchers developed a new mantle-flow model explaining the puzzling deformation of the North China Craton, citing subduction and flat-slab subduction as key factors. The study sheds light on cratons' life cycle and geological processes, potentially leading to a more sustainable future.
A new type of cationic epoxy photoresist exhibits greater sensitivity to two-photon laser exposure, enabling fast writing speeds and fine features. The material was developed by a research team led by Professor Cuifang Kuang, who achieved lithography speeds of 100 mm/s and resolution of 170 nm.
The Chinese College of Interventionalists has introduced a consensus statement on TACE refractoriness in hepatocellular carcinoma, providing a framework for clinicians to identify and manage the condition. This move aims to optimize treatment strategies and improve patient outcomes, particularly in China where HCC incidence is high due...
The University of Kansas study suggests that educational systems must undergo transformation to fully utilize the potential of artificial intelligence tools. Personalized learning and project-based learning are key strategies for harnessing AI's transformative power, enabling students to focus on their strengths and interests.
Researchers highlight the need to develop new anti-angiogenic agents to improve cancer treatment efficacy, citing knowledge gaps in human clinical trials. The review recommends considering tumor mutations, microenvironment, and patient profiles to select optimal AAD combinations.
Researchers explore various immunotherapies, including immune checkpoint inhibitors and adoptive cell therapies, as promising treatments for hepatocellular carcinoma. The review aims to overcome current limitations of targeted therapies by regulating the body's immune systems.
Researchers from Jilin University provide a comprehensive overview of brain injury biomarkers, including neuron-specific enolase, ubiquitin C-terminal hydrolase-L1, and neurofilament proteins. These biomarkers can help identify brain injuries and predict disease progression.
A new study from China reveals a novel strategy for enhancing the strength-ductility synergy of particle-reinforced aluminum matrix composites. The approach involves regulating the heterostructure of the matrix grain and particle distribution to achieve a balance between strength and ductility.
Researchers review cell-based therapies for comprehensive sepsis management, highlighting the potential of mesenchymal stem cells and innate immune cells like macrophages. The review also emphasizes the need for further studies on optimal dosage, administration routes, and storage methods to maximize efficacy and safety.
Researchers identified elevated MALAT1 levels in various blood cancers, correlating with adverse outcomes. MALAT1 promotes cancer cell proliferation, migration, invasion, and metastasis through multiple mechanisms.
Researchers have identified CAR-T cell therapy as a potential treatment for autoimmune diseases such as rheumatoid arthritis, SLE, and type 1 Diabetes Mellitus. Early studies have shown promising results in reducing disease activity and improving patients' quality of life, but long-term data on safety and efficacy is limited.
Researchers have developed an active learning strategy to accelerate the synthesis of high-performance engineered biochar with enhanced CO2 uptake. The approach nearly doubled CO2 capture performance, showcasing its transformative impact.
Researchers highlight the role of post-transcriptional RNA modifications in AML pathogenesis, identifying m6A and m7G regulators as potential therapeutic targets. Targeted therapies, including selective inhibitors and Traditional Chinese Medicine compounds, show promise in promoting cell differentiation and reversing AML phenotypes.
A review of existing literature on caloric restriction (CR) reveals its benefits on cardiovascular health, including reduced cholesterol levels, improved endothelial function, and enhanced vascular renewal. CR's role in regulating sirtuin activity is also explored, with seven identified sirtuins mediating cardiovascular benefits.
A review of mitochondrial energy metabolism in diabetic cardiomyopathy reveals disrupted dynamics and oxidative stress as key triggers. Targeted therapies, such as antioxidants and ketogenic diets, show promise in combating this debilitating condition.
A study developed a new referral pathway and Frenotomy Assessment Tool to identify breastfed babies with tongue tie requiring frenotomy. The tool found that 11% of breastfed babies had TT and 66% underwent frenotomy, suggesting that most infants were suffering from the condition.
Researchers from China conducted a nationwide study to assess optimal treatment strategies for CSDH. The study found that multimodality management and personalized treatment plans significantly reduced recurrence rates.
Researchers discovered compounds with untapped therapeutic potential for treating BPH, melanogenesis, and nerve damage. Metformin restored sex hormone homeostasis, epimedin B stimulated pigmentation function, and hydralazine suppressed ferroptosis to aid in axon regeneration.
A recent review highlights the positive effects of caloric restriction on cardiovascular health, linked to sirtuin activation and improved lipid metabolism. The study suggests that caloric restriction regulates metabolic processes via NAD+ levels, activating SIRT1 and modulating cardio-protective pathways.
Researchers outline ferroptosis mechanisms and regulatory networks in lung cancer, highlighting potential therapeutic targets. The study suggests ferroptosis as a novel approach to overcome treatment resistance in lung cancer, providing hope for improving clinical outcomes.
Researchers unveil innovative strategies to overcome metabolic constraints in CAR-T cell therapy, aiming to boost its efficacy in treating solid tumors. Metabolic interventions targeting immunosuppressive metabolites, metabolite uptake, and mitochondrial metabolism are proposed to enhance anti-tumor activity.
A recent literature review discusses the underlying mechanisms of type 2 diabetes, including insulin resistance and b-cell failure. The review also explores potential therapeutic strategies, such as replenishing and regenerating b-cells, pancreas transplants, and stem cell-derived b-cells.
A groundbreaking scientific drilling project has unearthed the world's longest geological record of the Cretaceous period, spanning over 50 million years. The project, led by Professor Wang Chengshan, has provided crucial insights into paleoclimate research and will continue to aid in predicting future climate trends.
The ECNU Review of Education explores the rise of shadow education globally, its cultural significance, and concerns over commercialization and unequal access. The review provides valuable insights for educators and policymakers on addressing shadow education's driving factors.
The review highlights how T cell metabolism influences their fate, particularly in response to pathogen infections and tumorigenesis. It explores the role of glucose, fatty acids, and amino acids in energy production and metabolic adaptation, which can contribute to T cell exhaustion.
Researchers decode underlying mechanisms of DCM, hippocampal neurotoxicity, and dysbiosis mediated AD progression using mass spectrometry imaging. The studies found metabolic changes in DCM rat hearts and regulation of CYPs in the hippocampus, providing new perspectives on treatment strategies.
Researchers identify a promising prognostic biomarker for lung cancer using circulating tumor DNA-based minimal residual disease detection. The study found that this method can effectively guide treatment decisions and predict recurrence risk, potentially modifying the lung cancer treatment paradigm.
Researchers document various reasons for long-term clinical symptoms in patients infected with SARS-CoV-2. Key findings include immune system alterations, chronic inflammation, endothelial dysfunction, and mitochondrial issues contributing to post-COVID syndrome.
The aryl hydrocarbon receptor is highly correlated with various aging hallmarks, including mitochondrial abnormalities and cellular senescence. AhR signaling regulates airway inflammation in asthma, suggesting its crucial role in regulating asthma phenotypes.
A team of researchers led by Prof. Yong Sik Ok proposes an innovative eight-phase methodology for analyzing microplastics in soils, addressing the lack of standardized procedures. The methodology emphasizes careful planning, processing, and analysis to ensure accuracy and precision.
A Chinese Medical Journal study examined the spatiotemporal features of disease burden due to air pollution across China between 2005 and 2017. The findings revealed a downward trend in premature mortality from fine particulate matter (PM2.5) and ozone (O3) pollution, but an increasing financial burden due to economic growth.
Researchers investigate biomarkers from genome, transcriptome, proteins, and metabolites to help tackle the high mortality rate of pediatric sepsis. The review highlights potential biomarkers, including genomics, transcriptomics, proteomics, and metabolomics.
Researchers discuss recent advances in brain mapping, emphasizing the need to establish precise neuromodulation paradigms based on individual characteristics. Individualized brain mapping methods have evolved from manual labeling to staining techniques across multiple subjects.