Publications by authors named "Xiao-Chun Li"

This study systematically investigates the oxygen reduction reaction (ORR) catalytic activity of graphene doped with various non-metallic impurities. The non-metal elements include boron (B), silicon (Si), nitrogen (N), phosphorus (P), arsenic (As), oxygen (O), sulfur (S), selenium (Se), tellurium (Te), fluorine (F), chlorine (Cl), bromine (Br), and iodine (I). We found that adsorbates tend to adsorb on positively charged impurity atoms.

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In the proximal tubules of the kidney, angiotensin II (ANG II) binds and activates ANG II type 1 (AT) receptors to stimulate proximal tubule Na reabsorption, whereas atrial natriuretic peptide (ANP) binds and activates natriuretic peptide receptors (NPR) to inhibit ANG II-induced proximal tubule Na reabsorption. These two vasoactive systems play important counteracting roles to control Na reabsorption in the proximal tubules and help maintain blood pressure homeostasis. However, how AT and NPR receptors interact in the proximal tubules and whether natriuretic effects of NPR receptor activation by ANP may be potentiated by deletion of AT (AT) receptors selectively in the proximal tubules have not been studied previously.

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We systematically investigated the stable configurations and catalytic activity in the Oxygen Reduction Reaction (ORR) of graphene co-doped with boron and nitrogen (B-N) using first-principles methods. Compared to single B/N doping, co-doping with BN is energetically favored. We found that intermediate species of ORR process adsorb on boron atoms, which act as catalytic sites.

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Objective: To analyze recurrent factors in patients with clinical early-stage cervical cancer (ESCC) following hysterectomy and adjuvant radiotherapy.

Methods: We collected data from patients with ESCC, staged according to the 2009 Federation International of Gynecology and Obstetrics (FIGO) staging criteria, who underwent hysterectomy followed by adjuvant radiotherapy between 2012 and 2019. These patients were subsequently restaged using the 2018 FIGO criteria.

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The cement industry faces great pressure from the targets of carbon peak and carbon neutrality. COcapture, geological utilization, and storage(CCUS) technology is crucial for CO mitigation in large-scale fossil-based industries. An integrated techno-economic assessment model of CCUS was improved here to assess the potential of CCUS retrofits in the cement industry in China, and the cost curve or supply curve of CCUS in the cement industry was obtained.

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Cardiovascular disease is a pathology that exhibits well-researched biological sex differences, making it possible for physicians to tailor preventative and therapeutic approaches for various diseases. Hypertension, which is defined as blood pressure greater than 130/80 mmHg, is the primary risk factor for developing coronary artery disease, stroke, and renal failure. Approximately 48% of American men and 43% of American women suffer from hypertension.

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The roles of angiotensin II (Ang II) AT1 (AT1a) receptors and its downstream target Na+/H+ exchanger 3 (NHE3) in the proximal tubules in the development of two-kidney, 1-clip (2K1C) Goldblatt hypertension have not been investigated previously. The present study tested the hypothesis that deletion of the AT1a receptor or NHE3 selectively in the proximal tubules of the kidney attenuates the development of 2K1C hypertension using novel mouse models with proximal tubule-specific deletion of AT1a receptors or NHE3. 2K1C Goldblatt hypertension was induced by placing a silver clip (0.

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Electrical stimulation of the right median nerve can aid coma arousal after traumatic brain injury (TBI). This study aimed to confirm the efficacy further and explore possible mechanisms of right median nerve electrical stimulation (RMNS). Five comatose patients after severe TBI from May to September 2020 in the Tianjin Medical University General Hospital received RMNS for 2 weeks besides standard management.

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Purpose: To determine the survival rates of implant-supported monolithic zirconia crowns and fixed partial dentures (FPD).

Material And Methods: An electronic search for articles in the English language literature published from January 1, 2001 to September 17, 2021 was performed using PubMed, Scopus, and CENTRAL search engines. After applying predetermined inclusion and exclusion criteria, the definitive list of selected articles was used for calculating the interval survival rate (ISR) and cumulative survival rate (CSR).

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The sodium (Na)/hydrogen (H) exchanger 3 (NHE3) is one of the most important Na/H antiporters in the small intestines of the gastrointestinal tract and the proximal tubules of the kidney. The roles of NHE3 in the regulation of intracellular pH and acid-base balance have been well established in cellular physiology using techniques. Localized primarily on the apical membranes in small intestines and proximal tubules, the key action of NHE3 is to facilitate the entry of luminal Na and the extrusion of intracellular H from intestinal and proximal tubule tubular epithelial cells.

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, a new species from the Mingyue Mountain Region of western Jiangxi, China, is described and illustrated. It is a perennial climbing liana that always links to riparian woods. A morphological comparison indicated that the new species is closely similar to K.

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An important step during the workflow of complete arch fixed implant-supported prostheses is the fabrication of an acrylic resin prototype prosthesis so that the patient can visualize the definitive treatment outcome or to be used as an interim prosthesis. The prototype prosthesis is typically designed digitally as a single file and is produced by milling from a solid block of white-colored prepolymerized acrylic resin. A common challenge in fabricating a resin-based prototype prosthesis is reproducing the natural appearance of the gingival architecture in gingiva-colored material.

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Article Synopsis
  • Hypertension is a major risk factor for cardiovascular diseases and affects a significant portion of the adult population, with many requiring treatment but only half responding effectively.
  • Research is focusing on understanding the complex mechanisms behind poorly controlled hypertension, particularly in relation to kidney function.
  • Recent studies highlight the role of the angiotensin II (Ang II) system within kidney cells, identifying new pathways that could be targeted for better management of hypertension.
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Purpose Of Review: The sodium (Na) and hydrogen (H) exchanger 3 (NHE3), known as solute carrier family 9 member 3 (SLC9A3), mediates active transcellular Na and bicarbonate reabsorption in the small intestine of the gut and proximal tubules of the kidney. The purpose of this article is to review and discuss recent findings on the critical roles of intestinal and proximal tubule NHE3 in maintaining basal blood pressure (BP) homeostasis and their potential therapeutic implications in the development of angiotensin II (Ang II)-dependent hypertension.

Recent Findings: Recently, our and other laboratories have generated or used novel genetically modified mouse models with whole-body, kidney-specific, or proximal tubule-specific deletion of NHE3 to determine the critical roles and underlying mechanisms of NHE3 in maintaining basal BP homeostasis and the development of Ang II-induced hypertension at the whole-body, kidney, or proximal tubule levels.

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Purpose: This study aimed to examine pathogenic mutation within one Chinese family of five-generations suffering from autosomal dominant cataract.

Methods: Next-generation sequencing and Sanger sequencing were used to find the pathogenic variants.

Results: A rare mutation, c.

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The present study tested the hypotheses that overexpression of an intracellular Ang II (angiotensin II) fusion protein, mito-ECFP/Ang II, selectively in the mitochondria of mouse proximal tubule cells induces mitochondrial oxidative and glycolytic responses and elevates blood pressure via the Ang II/AT receptor/superoxide/NHE3 (the Na/H exchanger 3)-dependent mechanisms. A PT-selective, mitochondria-targeting adenoviral construct encoding Ad-sglt2-mito-ECFP/Ang II was used to test the hypotheses. The expression of mito-ECFP/Ang II was colocalized primarily with Mito-Tracker Red FM in mouse PT cells or with TMRM in kidney PTs.

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First reported in 1999, germline runt-related transcription factor 1 (RUNX1) mutations are a well-established cause of familial platelet disorder with predisposition to myeloid malignancy (FPD-MM). We present the clinical phenotypes and genetic mutations detected in 10 novel RUNX1-mutated FPD-MM families. Genomic analyses on these families detected 2 partial gene deletions, 3 novel mutations, and 5 recurrent mutations as the germline RUNX1 alterations leading to FPD-MM.

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Objective: To explore the clinical effect of conservative treatment for giant lumbar intervertebral disc herniation and analyze the factors affecting its resorption.

Methods: From January 2013 to December 2016, the clinical data of 130 patients with giant lumbar intervertebral disc herniation were collected. The patients were classified according to the characteristics of Iwabuchi displacement and "bull eye sign", Xiaosui Huahe decoction of traditional Chinese medicine conservative treatment was used in the patients.

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Objective: To investigate the outcome predictive factors of ruptured lumbar disc herniation after conservative treatment.

Methods: From June 2009 to June 2016, 147 patients with ruptured lumbar intervertebral disc herniation were treated with conservative treatment in the orthopedics department of Suzhou Traditional Chinese Medicine Hospital for clinical efficacy and MRI follow-up. Multivariate Logistic regression analysis(Stepwise regression method)was used to analyze the relationship between the 11 categorical variables and absorptivity of protrusions: sex(X1), age(X2), course of disease(X3) , the rate of protrusion(X4), the Komori type(X5), the MSU type(X6), the Iwabuchi type(X7), the Pfirrmann grade(X8), the Modic change on adjacent vertebrae(X9), spinal canal morphology(X10), the Schizas types of cauda equina sedimentation sign(X11).

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Functional components extracted from algal biomass are widely used as dietary and health supplements with a variety of applications in food science and technology. In contrast, the applications of algae in dermal-related products have received much less attention, despite that algae also possess high potential for the uses in anti-infection, anti-aging, skin-whitening, and skin tumor treatments. This review, therefore, focuses on integrating studies on algae pertinent to human skin care, health and therapy.

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Background: Lumbar disc herniation (LDH), a common disease, is often treated conservatively, frequently resulting in spontaneous resorption of the herniated disc. The incidence of this phenomenon, however, remains unknown.

Objective: To analyze the incidence of spontaneous resorption after conservative treatment of LDH using computed tomography and magnetic resonance imaging.

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The present study was performed to investigate the role of p38 mitogen‑activated protein kinase (MAPK) in the resorption of herniated intervertebral discs in 30 rats. In the non‑contained and p38 MAPK inhibition (p38i) groups, two coccygeal intervertebral discs (IVDs) were removed and wounded prior to relocation into the subcutaneous space of the skin of the back. In the contained group, the cartilage endplates maintained their integrity.

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Magnesium is a light metal, with a density two-thirds that of aluminium, is abundant on Earth and is biocompatible; it thus has the potential to improve energy efficiency and system performance in aerospace, automobile, defence, mobile electronics and biomedical applications. However, conventional synthesis and processing methods (alloying and thermomechanical processing) have reached certain limits in further improving the properties of magnesium and other metals. Ceramic particles have been introduced into metal matrices to improve the strength of the metals, but unfortunately, ceramic microparticles severely degrade the plasticity and machinability of metals, and nanoparticles, although they have the potential to improve strength while maintaining or even improving the plasticity of metals, are difficult to disperse uniformly in metal matrices.

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The biochemical and enzymatic properties of four highly similar rice oxalate oxidase proteins (OsOxO1-4) were compared after their purification from the leaves of transgenic plants each overexpressing the respective OsOxO1-4 genes. Although alignment of their amino acid sequences has revealed divergence mainly in the signal peptides and they catalyze the same enzymic (oxalate oxidase) reaction, divergence in apparent molecular mass, Km, optimum pH, stability and responses to inhibitors and activators was uncovered by biochemical characterization of the purified OsOxO1-4 proteins. The apparent molecular mass of oligomer OsOxO1 was found to be similar to that of OsOxO3 but lower than the other two.

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