Publications by authors named "Yi-wen Zhu"

Article Synopsis
  • Hydrogen sulfide (HS) is an important signaling molecule linked to various diseases, especially those involving mitochondrial dysfunction.
  • Recent research highlights a need for effective detection methods for HS levels, as existing tools are lacking in precision and accuracy, particularly in tissues, cells, and organelles.
  • Fluorescent probes have emerged as promising tools for monitoring mitochondrial HS levels due to their sensitivity, selectivity, low toxicity, and ability to provide real-time data on HS interactions in biological systems.
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Musculoskeletal diseases seriously affect global health, but their importance is greatly underestimated. These diseases often afflict the elderly, leading to disability, paralysis, and other complications. Hydrogen sulfide (HS) plays an important role in the occurrence and development of musculoskeletal diseases, which may have potential therapeutic significance for these diseases.

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Cystathionine β-synthase (CBS) occupies a key position as the initiating and rate-limiting enzyme in the sulfur transfer pathway and plays a vital role in health and disease. CBS is responsible for regulating the metabolism of cysteine, the precursor of glutathione (GSH), an important antioxidant in the body. Additionally, CBS is one of the three enzymes that produce hydrogen sulfide (HS) in mammals through a variety of mechanisms.

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Article Synopsis
  • The interplay between hydrogen sulfide (HS) and microRNA (miRNA) plays a significant role in various diseases, such as cancer, cardiovascular issues, inflammatory conditions, and problematic pregnancies.
  • Abnormal levels of HS-producing enzymes and miRNA in cells can signal the presence of disease; maintaining their normal levels may reduce the damage caused by these illnesses.
  • HS has been found to both promote cancer cell behaviors like migration and invasion and inhibit cancer progression through certain HS donors, while also helping in fetal development during high-risk pregnancies by improving blood flow and growth factors.
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Hydrogen sulfide (HS), an endogenous gasotransmitter, plays a key role in several critical physiological and pathological processes in vivo, including vasodilation, anti-infection, anti-tumor, anti-inflammation, and angiogenesis. In colorectal cancer (CRC), aberrant overexpression of HS-producing enzymes has been observed. Due to the important role of HS in the proliferation, growth, and death of cancer cells, HS can serve as a potential target for cancer therapy.

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Gasotransmitters are endogenous gaseous signaling molecules that can freely pass through cell membranes and transmit signals between cells, playing multiple roles in cell signal transduction. Due to extensive and ongoing research in this field, we have successfully identified many gasotransmitters so far, among which nitric oxide, carbon monoxide, and hydrogen sulfide are best studied. Gasotransmitters are implicated in various diseases related to necroptosis, such as cardiovascular diseases, inflammation, ischemia-reperfusion, infectious diseases, and neurological diseases.

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Objective: To explore the levels of regulatory T cells (Tregs) and cytokines IL-35, TGF-β and IL-10 in peripheral blood of hemophilia A(HA) patients with FⅧ inhibitor and their clinical significance.

Methods: 43 HA patients admitted to the Hematology Department of the Affiliated Hospital of North China University of Science and Technology from October 2019 to December 2020 were selected, including 6 cases with FⅧ inhibitor and 37 cases without FⅧ inhibitor. In addition, 20 healthy males who underwent physical examinations were selected as healthy controls.

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In the past, hydrogen sulfide (HS) was recognized as a toxic and dangerous gas; in recent years, with increased research, we have discovered that HS can act as an endogenous regulatory transmitter. In mammals, HS-catalyzing enzymes, such as cystathionine-β-synthase, cystathionine-γ-lyase, and 3-mercaptopyruvate sulfurtransferase, are differentially expressed in a variety of tissues and affect a variety of biological functions, such as transcriptional and posttranslational modification of genes, activation of signaling pathways in the cell, and metabolic processes in tissues, by producing HS. Various preclinical studies have shown that HS affects physiological and pathological processes in the body.

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Article Synopsis
  • The rise of age-related diseases has made it crucial to develop effective treatments, highlighting the urgency of finding new drugs.
  • * Hydrogen sulfide (HS) plays a vital role in regulating various physiological processes, including anti-oxidation, anti-inflammation, and cell activities like proliferation and apoptosis.
  • * The review discusses the potential of HS as a therapeutic target for addressing the pathogenesis and treatment of age-related diseases.
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Ferroptosis, a form of regulated cell death characterized by a large amount of lipid peroxidation-mediated membrane damage, joins the evolution of multisystem diseases, for instance, neurodegenerative diseases, chronic obstructive pulmonary disease, acute respiratory distress syndrome, osteoporosis, osteoarthritis, and so forth. Since being identified as the third gasotransmitter in living organisms, the intricate role of hydrogen sulfide (HS) in ferroptosis has emerged at the forefront of research. Novel targets in the relevant metabolic pathways have been found, including transferrin receptor 1, cystine/glutamate antiporter, and others, coupled with the exploration of new signaling pathways, particularly the p53 signaling pathway, the nitric oxide/nuclear factor erythroid 2-related factor 2 signaling pathway, and so on.

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Hydrogen sulfide (HS), together with carbon monoxide (CO) and nitric oxide (NO), is recognized as a vital gasotransmitter. HS is biosynthesized by enzymatic pathways in the skin and exerts significant physiological effects on a variety of biological processes, such as apoptosis, modulation of inflammation, cellular proliferation, and regulation of vasodilation. As a major health problem, dermatological diseases affect a large proportion of the population every day.

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Hydrogen sulfide (HS) is one of the three most crucial gaseous messengers in the body. The discovery of HS donors, coupled with its endogenous synthesis capability, has sparked hope for the treatment of hematologic malignancies. In the last decade, the investigation into the impact of HS has expanded, particularly within the fields of cardiovascular function, inflammation, infection, and neuromodulation.

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Xiao'er Qingre Zhike Oral Solution (XQZS) is a commonly used TCM formula to treat cough in children in China. Its complicated composition renders its chemical analysis and mechanism elucidation difficult. To evaluate the bioactive components and mechanism of XQZS against cough, we used a combination strategy of chemical analysis and network pharmacology.

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With the increasing number of stroke patients, there is an urgent need for an accessible, scientific, and reliable evaluation method for stroke rehabilitation. Although many rehabilitation stage evaluation methods based on the wearable sensors and machine learning algorithm have been developed, the interpretable evaluation of the Brunnstrom recovery stage of the lower limb (BRS-L) is still lacking. The paper propose an interpretable BRS-L evaluation method based on wearable sensors.

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Universities are important sources of knowledge and key members of the regional innovation system. The key problem in Chinese universities is the low efficiency of the scientific and technological (S&T) transformation, which limits the promotion of regional innovation and economic development. This article proposes the three-stage efficiency analytical framework, which regards it as a complex and interactive process.

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Objective: To transinfect SD adipose tissue-derived stem cell (ADSC) in vitro with a recombinant adenoviral vector containing human B-domain-deleted FVIII (BDDhFⅧ), so as to lay the foundation for the treatment of hemophilia A by using ADSC combined with BDDhFⅧ gene.

Methods: ADSCs were isolated from the inguinal adipose tissue of SD rats and passed to third passage for identification. Third passage ADSCs were transfected in vitro with recombinant adenovirus vector Ad-BDDhFⅧ-GFP.

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The precipitation isotope data and meteorological data of eight stations provided by GNIP (Global Network for Isotopes in Precipitation) and two stations from the present study, combined with HYSPLIT model and water droplet evaporation model were used to examine the spatial and temporal distribution of precipitation δO and d values in Northwest China. The secondary evaporative effect of existence was evaluated and then quantitatively discussed, with the sensitive factors of secondary evaporative effect being considered. The results showed that during the summer monsoon, the δO and d values decreased from south to north in Xinjiang, while the δO value increased but d values decreased from south to north and from east to west of Shaanxi-Gansu-Ningxia region.

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Fibronectin 1 (FN1) is involved in cell adhesion and migration processes including embryogenesis, wound healing, blood coagulation, host defense, metastasis, and implicated in various biochemical processes. However, its effects on the development and progression of human cancer, especially colorectal cancer (CRC), are unclear. To evaluate the relationship between the expression of FN1 and the histopathologic parameters of patients with CRC or the proliferation, migration, and invasion of colorectal cancer cell lines, we screened FN1 as a new candidate gene which promotes development of CRC, in an independent dataset (The Human Protein Atlas website).

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Objective: To establish a highly sensitive and specific dual-color fluorescence in situ hybridization (D-FISH) method used for chromosomal localization of foreign genes in double transgenic mice.

Methods: Two strains of double transgenic mice were used in this experiment, one was integrated with the herpes simplex virus thymidine kinase (HSV-tk) and the enhanced green fluorescence protein (eGFP), the other was with the short hairpin RNA interference(RNAi) and beta(654). Splenic cells cultured in vitro were arrested in metaphase by colchicine and hybridized with digoxigenin-labeled and biotinylated DNA probes, then detected by rhodamine-conjugated avidin and FITC-conjugated anti-digoxigenin.

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