Publications by authors named "BoYa Liu"

Peripheral nerve injury is a common clinical disease. Effective post-injury nerve repair remains a challenge in neurosurgery, and clinical outcomes are often unsatisfactory, resulting in social and economic burden. Particularly, the repair of long-distance nerve defects remains a challenge.

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Background: The current knowledge about the efficacy and safety of dietary polyphenol administration in patients with polycystic ovarian syndrome (PCOS) is divergent.

Objective: To evaluate the pooled efficacy and safety of dietary polyphenol administration in the treatment of patients with PCOS.

Methods: The pubmed, Embase, Scopus, Cochrane Library, and Web of Science databases were searched for randomized controlled trials (RCTs) of dietary polyphenol administration for the treatment of PCOS.

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The baboon endogenous retrovirus (BaEV) glycoprotein is superior to the commonly used vesicular stomatitis virus glycoprotein (VSVg) for retroviral gene transfer into resting hematopoietic stem cells and lymphocyte populations. The derivative BaEVRLess (lacking the R domain) produces higher viral titers compared with wild-type BaEV, but vector production is impaired by syncytia formation and cell death of the HEK293T cells due to the high fusogenic activity of the glycoprotein. This lowers viral titers, leads to increased batch-to-batch variability, and impedes the establishment of stable packaging cell lines essential for the economical production of viral supernatants.

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Background: Patient satisfaction is a powerful predictor of an individual's mental health, according to previous research. However, there has not been a thorough study on the relationship between depression and overall medical service satisfaction (OMSS) in middle-aged and older adults. Moreover, little is known about how different Internet-using patterns affect this relationship.

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Article Synopsis
  • This study surveyed 3,921 parents of infants and toddlers in Chongqing, China, to analyze factors influencing childcare preferences and how these relate to the demand for childcare services.
  • Findings show that parents with higher incomes, education levels, older age, multiple infants, and dual-career households in urban settings prefer childcare services more significantly.
  • The research also indicates that while shared or grandparent care is less favored, parents are inclined to select childcare institutions that offer early education and convenient services, with higher quality facilities reducing their preference for traditional childcare.
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Hematopoietic stem cell (HSC) transplantation with lentiviral vector (LVV)-transduced autologous cells has proven an effective therapeutic strategy for sickle cell disease (SCD). However, ex vivo culture or proliferative stress associated with in vivo reconstitution may amplify any underlying genetic risk of leukemia. We aimed to minimize culture-induced stress and reduce genomic damage during ex vivo culture and enhance stem cell fitness and reconstitution of SCD CD34+ cells transduced with BCL11A shmiR-encoding LVV.

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Rational design and synthesis of a unique heterojunction photocatalyst structure is an important strategy to enhance its performance and structural stability. Herein, CoS/MnCdS/CoO photocatalysts with double S-scheme heterojunctions were successfully prepared by coupling CoS and CoO sheet structures with n-type MnCdS nanoparticles through a simple solvothermal and mechanical mixing method. The construction of the dual S-scheme heterostructure offers the possibility to expand the light absorption range, extend the carrier lifetime and maximise the redox capacity.

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Hypoxic-ischemic encephalopathy (HIE) is a brain lesion caused by inadequate blood supply and oxygen deprivation, often occurring in neonates. It has emerged as a grave complication of neonatal asphyxia, leading to chronic neurological damage. Nevertheless, the precise pathophysiological mechanisms underlying HIE are not entirely understood.

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Viruses play a crucial role in aquatic ecosystems by regulating microbial composition and impacting biogeochemical cycling. While the response of viral diversity to the trophic status has been preliminarily explored in lake ecosystems, there is limited integrated exploration of the biogeography of viruses, host associations, and the auxiliary metabolic genes (AMGs), particularly for plateau lakes. Therefore, this research investigated the viral biogeography, virus-host association, and AMGs in the surface waters of 11 lakes varying in trophic levels (eutrophic and oligo-mesotrophic) in the Yunnan-Guizhou plateau region of China.

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A major limitation of gene therapy for sickle cell disease (SCD) is the availability and access to a potentially curative one-time treatment, due to high treatment costs. We have developed a high-titer bifunctional lentiviral vector (LVV) in a vector backbone that has reduced size, high vector yields, and efficient gene transfer to human CD34 hematopoietic stem and progenitor cells (HSPCs). This LVV contains locus control region cores expressing an anti-sickling β-globin gene and two microRNA-adapted short hairpin RNA simultaneously targeting and transcripts to maximally induce fetal hemoglobin (HbF) expression.

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Hydrogels, with their distinctive three-dimensional networks of hydrophilic polymers, drive innovations across various biomedical applications. The ability of hydrogels to absorb and retain significant volumes of water, coupled with their structural integrity and responsiveness to environmental stimuli, renders them ideal for drug delivery, tissue engineering, and wound healing. This review delves into the classification of hydrogels based on cross-linking methods, providing insights into their synthesis, properties, and applications.

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Improving inflammation may serve as useful therapeutic interventions for the hindlimb unloading-induced disuse muscle atrophy. Celecoxib is a selective non-steroidal anti-inflammatory drug. We aimed to determine the role and mechanism of celecoxib in hindlimb unloading-induced disuse muscle atrophy.

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MicroRNAs (miRNAs) have emerged as important regulators of gene expression, and the deregulation of their activity has been linked to the onset and progression of a variety of human malignancies. Among these miRNAs, miR-136-5p has attracted significant attention due to its diverse roles in cancer biology. Mostly, miR-136-5p is downregulated in malignancies.

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Skeletal muscle is a highly specialized tissue composed of myofibres that performs crucial functions in movement and metabolism. In response to external stimuli and injuries, a range of stem/progenitor cells, with muscle stem cells or satellite cells (MuSCs) being the predominant cell type, are rapidly activated to repair and regenerate skeletal muscle within weeks. Under normal conditions, MuSCs remain in a quiescent state, but become proliferative and differentiate into new myofibres in response to injury.

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Article Synopsis
  • ALS is a serious neurodegenerative disease that leads to motor neuron loss, but its causes and effective treatments are still not fully understood.
  • The study investigated genes significantly expressed in non-neuronal cells from ALS patients and correlated findings with data from ALS mice and patient blood, revealing key genes that may influence the disease.
  • Notably, certain genes like SOD1 and CALM1 showed potential as biomarkers, and the research highlights the important role of microglia and cellular interactions in the progression of ALS.
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  • Denervation-induced skeletal muscle atrophy is a complex condition with no effective treatments currently available, but previous research suggests that extracellular vesicles from skin-derived precursor Schwann cells (SKP-SC-EVs) may help mitigate this issue.
  • In this study, bioinformatics analyses revealed that SKP-SC-EVs alter the expression of 358 genes in affected skeletal muscles, with a focus on biological processes like cell cycle regulation and inflammation.
  • The results indicate that promoting cell proliferation and reducing inflammation are essential in how SKP-SC-EVs delay muscle atrophy, highlighting their potential as a treatment strategy for this condition.
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Background: Adults with attention-deficit/hyperactivity disorder (ADHD) may experience sleep problems doubly suffering from the disease and side effects of stimulant medications. Physical activity (PA) is known to produce numerous beneficial effects in adults. However, it was not well-characterized whether PA would still be effective in this situation.

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Background: Denervation-induced muscle atrophy is complex disease involving multiple biological processes with unknown mechanisms. N6-methyladenosine (m6A) participates in skeletal muscle physiology by regulating multiple levels of RNA metabolism, but its impact on denervation-induced muscle atrophy is still unclear. Here, we aimed to explore the changes, functions, and molecular mechanisms of m6A RNA methylation during denervation-induced muscle atrophy.

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Myasthenia gravis (MG) is a type of autoimmune disease caused by the blockage of neuromuscular junction transmission owing to the attack of autoantibodies on transmission-related proteins. Related antibodies, such as anti-AChR, anti-MuSK and anti-LRP4 antibodies, can be detected in most patients with MG. Although traditional therapies can control most symptoms, several challenges remain to be addressed, necessitating the development of more effective and safe treatment strategies for MG.

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Ozone pollution in 2019 in China is particularly severe posing a tremendous threat to the health of Chinese inhabitants. In this study, we constructed a more reliable and accurate 1-km gridded dataset for 2019 with as many sites as possible using the inverse distance weight interpolation method to analyze spatiotemporal ozone pollution characteristics and health burden attributed to ozone exposure from the perspective of different diseases and weather influence. The accuracy of this new dataset is higher than other public datasets, with the coefficient of determination of 0.

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Article Synopsis
  • The Pearl River Delta (PRD) has serious air pollution problems, especially in the fall, mostly due to ozone (O) levels getting too high.
  • In September 2021, a specific weather pattern made the pollution worse, and scientists studied how to control it better by focusing on what causes the pollution.
  • They found that most areas needed to control nitrogen oxides (NO), but central areas struggled with both NO and volatile organic compounds (VOC), and fixing pollution works better when the whole region works together.
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  • Scientists studied how changes in air pollution affect ozone levels in Beijing from 2013 to 2020.
  • They found that ozone levels increased in certain areas, especially near traffic, even though some pollutants like NO went down.
  • To improve air quality, it's important to control certain chemicals and reduce nitrogen oxide emissions, especially during the hot summer months.
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  • Mitochondria are crucial for cellular health and muscle function; damage to them can cause muscle atrophy through complex mechanisms.
  • Understanding the pathways involved in mitochondrial dysfunction is key for preventing and treating muscle atrophy, emphasizing the need for targeted therapies.
  • The review highlights various therapies, including drugs, exercise, and gene therapy, that could help modulate mitochondrial function and combat muscle atrophy.
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Although 1,3-propanediol (1,3-PD) is usually considered an anaerobic fermentation product from glycerol by Klebsiella pneumoniae, microaerobic conditions proved to be more conducive to 1,3-PD production. In this study, a genome-scale metabolic model (GSMM) specific to K. pneumoniae KG2, a high 1.

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