Publications by authors named "Qi-hui Wang"

Chronic inflammatory pain caused by neuronal hyperactivity is a common and refractory disease. Kv3.1, a member of the Kv3 family of voltage-dependent K channels, is a major determinant of the ability of neurons to generate high-frequency action potentials.

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Periodontitis is a chronic disease caused by bacterial infection and is characterized with alveolar bone resorption. Bone regeneration in periodontitis remains a critical challenge because bacterial infection induced an unfavorable microenvironment for osteogenesis. Therefore, it is necessary to design proper therapeutic platforms to control bacterial infection and promote bone regeneration.

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DNA demethylation mediated by ten-eleven translocation 1 (TET1) is a critical epigenetic mechanism in which gene expression is regulated via catalysis of 5-methylcytosine to 5-hydroxymethylcytosine. Previously, we demonstrated that TET1 is associated with the genesis of chronic inflammatory pain. However, how TET1 participates in enhanced nociceptive responses in chronic pain remains poorly understood.

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Article Synopsis
  • * A spinal-specific super enhancer (SS-SE) was identified that regulates pain-related genes NTMT1 and PRRX2, particularly in response to nerve injury in mice.
  • * Inhibiting the BRD4 protein or deleting the SS-SE decreased the expression of these genes and reduced pain sensitivity, suggesting that targeting BRD4 could be a potential therapy for managing neuropathic pain.
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Nerve injury-induced aberrant changes in gene expression in spinal dorsal horn neurons are critical for the genesis of neuropathic pain. N6-methyladenine (m 6 A) modification of DNA represents an additional layer of gene regulation. Here, we report that peripheral nerve injury significantly decreased the level of m 6 A-specific DNA methyltransferase 1 ( N6amt1 ) in dorsal horn neurons.

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Circular RNAs (ciRNAs) are emerging as new players in the regulation of gene expression. However, how ciRNAs are involved in neuropathic pain is poorly understood. Here, we identify the nervous-tissue-specific ciRNA-Fmn1 and report that changes in ciRNA-Fmn1 expression in spinal cord dorsal horn neurons play a key role in neuropathic pain after nerve injury.

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RNA N4-acetylcytidine (ac4C) modification is increasingly recognized as an important layer of gene regulation; however, the involvement of ac4C in pain regulation has not been studied. Here, we report that N-acetyltransferase 10 protein (NAT10; the only known ac4C "writer") contributes to the induction and development of neuropathic pain in an ac4C-dependent manner. Peripheral nerve injury increases the levels of NAT10 expression and overall ac4C in injured dorsal root ganglia (DRGs).

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The cholesterol metabolism in humans can be indirectly reflected by measuring cholesterol metabolism marker levels. We aimed to investigate the association of cholesterol homeostasis markers on standard lipid profiling components in familial hypercholesteremia and hyperlipidemia patients. A total of 69 hyperlipidemia patients, 25 familial hypercholesteremia (FHC) patients, and 64 healthy controls were enrolled in this study.

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Article Synopsis
  • Respiratory syncytial virus (RSV) is an RNA virus that primarily causes severe respiratory illness in children under two, as well as affecting infants and the elderly globally.
  • RSV circulates only among humans but was first isolated from chimpanzees; while it can infect some lab animals, it doesn’t naturally spread in them.
  • Research discovered that Malayan pangolins have RSV strains closely related to human strains, indicating the possibility of human-to-wildlife transmission of the virus.
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BACKGROUND There are limited studies on the effects of cholesterol homeostasis in populations at high risk for cardiovascular disease. We aimed to use gas chromatography and flame-ionization detection (GC-FID) of non-cholesterol sterols as indicators of cholesterol absorption and synthesis. Sterol indicators of cholesterol absorption included campesterol, stigmasterol, and sitosterol.

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Chicken erythrocytes participated in immunity, but the role of erythrocytes in the immunity of Marek's disease virus (MDV) has not been reported related to the immunity genes. The purpose of this study was to screen and verify the immune-related genes of chicken erythrocytes which could be proven as a biomarker in MDV. The datasets (GPL8764-Chicken Gene Expression Microarray) were downloaded from the GEO profile database for control and MDV infected chickens to obtain differentially expressed genes (DEGs) through bioinformatics methods.

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The ongoing pandemic of coronavirus disease 2019 (COVID-19), caused by infection with human coronavirus 2019 (HCoV-19 / SARS-CoV-2 / 2019-nCoV), is a global threat to the human population. Here, we briefly summarize the available data for the zoonotic origins of HCoV-19, with reference to the other two epidemics of highly virulent coronaviruses, SARS-CoV and MERS-CoV, which cause severe pneumonia in humans. We propose to intensify future efforts for tracing the origins of HCoV-19, which is a very important scientific question for the control and prevention of the pandemic.

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The peripheral nervous system has the potential to regenerate after nerve injury owing to the intrinsic regrowth ability of neurons and the permissive microenvironment. The regenerative process involves numerous gene expression changes, in which transcription factors play a critical role. Previously, we profiled dysregulated genes in dorsal root ganglion neurons at different time points (0, 3 and 9 hours, and 1, 4 and 7 days) after sciatic nerve injury in rats by RNA sequencing.

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Differential expression of miRNAs occurs in injured proximal nerve stumps and includes miRNAs that are firstly down-regulated and then gradually up-regulated following nerve injury. These miRNAs might be related to a Schwann cell phenotypic switch. miR-30c, as a member of this group, was further investigated in the current study.

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Staphylococcus aureus is a major causative agent leading to bovine mastitis and has specific phonotypical characteristics including small colony, slow growth, and decreased hemolysis, therefore named as the small colony variants (SCVs). Out of 30 tested samples of the chronic S. aureus cases, one strain of SCVs (S.

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Background: Statins and ezetimibe have been reported to change the balance of cholesterol metabolism, but few studies have been performed on Chinese patients. The aim of this study was to evaluate changes in cholesterol metabolism markers in patients with coronary heart disease.

Methods: Forty-five patients with coronary heart disease were treated with 20 mg/d of simvastatin for four weeks.

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Objectives: We investigated the changes in cholesterol absorption and synthesis markers before and after simvastatin therapy in Chinese patients with coronary heart disease.

Design And Method: We developed a gas chromatography method to identify cholesterol synthesis and absorption markers and measured them in patients with coronary heart disease. We then tested their use in predicting the efficacy of simvastatin in lowering cholesterol.

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CYP450 3A4 (CYP3A4), encoded by the CYP3A4 gene, is a major enzyme catalyzing the metabolism of both endogenous and exogenous agents that may play a role in the etiology of carcinogenesis. Several potentially functional polymorphisms of the CYP3A4 gene have been implicated in cancer risk, but individually published studies have shown inconclusive results. The aim of this Human Genome Epidemiology (HuGE) review and meta-analysis was to investigate the association between CYP3A4*1B (rs2740574 A > G) polymorphism and cancer risk.

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The current study was designed to evaluate the ability of cell-penetrating peptides to deliver arsenic trioxide albumin microspheres (AsAMs) into bladder cancer cells. The transactivating transcriptional activator (Tat) peptide was labeled with the enhanced green fluorescent protein (EGFP) using eukaryotic vector construction and fusion gene expression techniques. Arsenic trioxide albumin mirospheres were prepared using the chemical crosslink and solidification method.

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Background: The purpose of this study was to investigate the applicability of urinary B-type natriuretic peptide (BNP) levels to the diagnosis and prognosis of heart failure (HF) by comparing urinary and plasma BNP levels.

Methods: Urinary and plasma BNP levels of 160 patients with HF classifiable into NYHA stages I, II, III, or IV, and 30 healthy control subjects were measured using the microparticle enzyme immunoassay (MEIA). The heart function of each patient was examined by ultrasonic cardiogram and classified according to the NYHA standard.

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Aim: To investigate the mechanism of the effect of avirulent Pantoea agglomerans lipopolysaccharide (LPSp) as the adjuvant of HBsAg on the production of anti-HBs in mice.

Methods: The peritoneal macrophages of BALB/c mice were pulsed in vitro by HBsAg+LPSp, HBsAg, LPSp, and NS respectively. The levels of anti-HBs IgG in serum were determined by ELISA.

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Antisense Phospholipase Dgamma( PLDgamma) gene was introduced into Populus tomentosa mediated by Agrobactrium tumefaciens. The young leaves of triploid populus were used as the material and the regeneration system of high frequency has been established. We have developed the traditional transgene method by Agrobactrium trmefaciens and obtained many transgenic plants of anti-PLDgamma gene.

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