Publications by authors named "Yiyi Gong"

Context: Primary hypertrophic osteoarthropathy (PHO) is a rare genetic disorder characterized by skeletal and skin abnormalities. Genetic defects in prostaglandin E2 (PGE2) metabolism are known to cause PHO. However, the global impact and clinical significance of eicosanoids and oxylipins beyond PGE2 remain to be elucidated.

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Introduction: Fibroblast abnormalities are crucial causes of skin fibrosis, including systemic sclerosis (SSc) and keloids. However, their mechanisms, including underlying microRNA regulatory mechanisms, remain elusive.

Objectives: This study aimed to evaluate the roles, mechanisms, and therapeutic potential of miR-3606-3p in regulating multiple fibroblast abnormalities.

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Article Synopsis
  • - This study investigates the potential causal relationship between uterine fibroids and the development of keloid and hypertrophic scars using a bidirectional Mendelian Randomization approach.
  • - The research found that uterine fibroids significantly increase the likelihood of developing keloids (Odds Ratio [OR] = 1.202) and hypertrophic scars (OR = 1.256), supported by multiple analysis methods.
  • - The findings suggest a significant causal effect of uterine fibroids on scar development, while keloids and hypertrophic scars do not increase the risk of developing uterine fibroids, highlighting important implications for understanding their underlying mechanisms.
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Background: Diabetic peripheral neuropathy (DPN) is a serious complication of diabetes that lacks effective treatment. Gastrodin, the primary bioactive compound derived from Rhizoma Gastrodiae, has a long history in treating epilepsy and various central nervous system disorders. However, its effect on DPN remains uncertain.

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Background: Skin fibrosis is the typical pathological manifestation of systemic sclerosis (SSc) and localized scleroderma (LS); it has an unclear aetiology and few effective treatments. Although excessive collagen secretion by fibroblasts is the primary cause of skin fibrosis, evidence has suggested that vascular damage is the initiating event and that various cell types, including fibroblasts, work together to contribute to the pathogenesis of skin fibrosis.

Objectives: To explore the relationship between vascular endothelial cell lesions and immune cell infiltration, along with the interactions between various cell types within the fibrotic skin ecosystem.

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Context: X-linked hypophosphatemia (XLH) is a rare metabolic bone disease caused by inactivation mutations in the PHEX gene. Despite the extensive number of reported PHEX variants, only a few cases of chromosomal abnormalities have been documented.

Objective: We aimed to identify the pathogenic variants in 6 unrelated families with a clinical diagnosis of XLH and to propose a genetic workflow for hypophosphatemia patients suspected of having XLH.

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Background: Allergic rhinitis (AR) is a common nasal inflammatory disorder that severely affects an individual's quality of life (QoL) and poses a heavy financial burden. In addition to routine treatments, probiotic intervention has emerged as a promising strategy for preventing and alleviating allergic diseases. The main objective of this study was to determine the effect of a novel multi-strain probiotic mixture on AR symptoms and investigate potential targets underlying the probiotic intervention.

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Inhibitory immune receptors set thresholds for immune cell activation, and their deficiency predisposes a person to autoimmune responses. However, the agonists of inhibitory immune receptors remain largely unknown, representing untapped sources of treatments for autoimmune diseases. Here, we show that V-set and transmembrane domain-containing 1 (VSTM1) is an inhibitory receptor and that its binding by the competent ligand soluble galectin-1 (Gal1) is essential for maintaining neutrophil viability mediated by downregulated reactive oxygen species production.

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Skin fibrosis is a common pathological manifestation in systemic sclerosis (SSc), keloid, and localized scleroderma (LS) characterized by fibroblast activation and excessive extracellular matrix (ECM) deposition. However, few effective drugs are available to treat skin fibrosis due to its unclear mechanisms. In our study, we reanalyzed skin RNA-sequencing data of Caucasian, African, and Hispanic SSc patients from the Gene Expression Omnibus (GEO) database.

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Context: Tumor-induced osteomalacia (TIO) is a rare paraneoplastic syndrome caused by excessive production of fibroblast growth factor 23 (FGF23) by a tumor. After successful tumor resection, patients can recover from hypophosphatemia quicky. However, data on the changes in bone mineral density (BMD) and microstructure in the short term after surgery remained unclear.

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Context: Nearly 20% patients with tumor-induced osteomalacia (TIO) experienced recurrence or nonrecovery after surgery. Serum fibroblast growth factor 23 and phosphate concentrations are not sufficient for prognosis in such cases. Despite its importance for understanding of prognosis and underlying pathogenesis, the alteration of systemic metabolism in refractory TIO remains unclear.

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Context: Hereditary hypophosphatemic rickets (HR) consists of a group of inherited hypophosphatemia due to mutations of different genes, which need genetic analysis to make a differential diagnosis. Among them, autosomal recessive hypophosphatemic rickets type 1 (ARHR1), caused by a homozygous mutation of dentin matrix protein 1 (DMP1), is extremely rare, with only 30 reported patients. To date, there has been no case with compound heterozygous DMP1 mutations.

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Article Synopsis
  • Tumor-induced osteomalacia (TIO) is linked to excessive FGF23 production and can often lead to hyperparathyroidism (HPT), which varies in type among patients.
  • In a study of 202 TIO patients, HPT was found in 45.1%, with 41.6% having secondary HPT and 3.5% having tertiary HPT, with disease duration and phosphate supplementation being significant factors.
  • The study suggests that timely diagnosis and tumor removal are essential in preventing HPT in TIO patients, emphasizing the need for careful monitoring and management of phosphate levels.
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Both acromegaly and tumor-induced osteomalacia (TIO) are rare diseases caused by an excess hormone secreted by neuroendocrine neoplasms, which are growth hormone (GH) and fibroblast growth factor 23 (FGF23), respectively. GH elevates phosphate reabsorption via the effect of insulin-like factor 1 (IGF-1), while FGF23 inhibits phosphate reabsorption and reduces serum phosphate level markedly. A patient who developed a typical acromegaly appearance but was accompanied with height loss and hypophosphatemia for 2 years visited our hospital.

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Axillary osmidrosis (AO) and primary hyperhidrosis (PH) are common diseases, but there are still difficulties in treatment. Microwave therapy may become a new method. In order to evaluate long-time efficacy of patients with AO or PH treated by microwave and to discuss possible mechanism of microwave therapy by combining results of clinical and pathological, the study was carried out.

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X-linked hypophosphatemia (XLH) is the most common form of heritable hypophosphatemic rickets. Although generalized mineralization defects have been observed, elevated areal bone mineral density (aBMD) in the lumbar spine measured by dual-energy X-ray absorptiometry (DXA) has also been found in XLH. In contrast, high-resolution peripheral quantitative computed tomography (HR-pQCT) revealed lower volumetric BMD (vBMD) and damaged bone microstructure in the peripheral bone in XLH.

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Background: Asiaticoside (AS) is a saponin extracted from the traditional Chinese herbal medicine , which has the effects of reducing inflammatory infiltration and anti-oxidation in pneumonia and combating pulmonary fibrosis. We hypothesize that AS might have therapeutic potential for the treatment of the coronavirus disease 2019 (COVID-19). With the help of network pharmacology and molecular docking techniques, this study discussed the underlying molecular mechanism of AS in the treatment of COVID-19.

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Context: Excessive production of fibroblast growth factor 23 (FGF23) by a tumor is considered the main pathogenesis in tumor-induced osteomalacia (TIO). Despite its importance to comprehensive understanding of pathogenesis and diagnosis, the regulation of systemic metabolism in TIO remains unclear.

Objective: We aimed to systematically characterize the metabolome alteration associated with TIO.

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Tumor-induced osteomalacia (TIO) is a rare paraneoplastic syndrome caused by excessive production of fibroblast growth factor 23 (FGF23) by a tumor. Previous studies have revealed generalized mineralization defects and low areal bone mineral density (aBMD) in TIO. However, data on the bone microarchitecture in TIO are limited.

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is an invasive human fungal pathogen that causes more than 181,000 deaths each year. Studies have demonstrated that pulmonary infection induces innate immune responses involving copper, and copper detoxification in  improves its fitness and pathogenicity during pulmonary infection. However, the molecular mechanism by which copper inhibits  proliferation is unclear.

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Context: Sclerostin inhibits Wnt-β-catenin signaling, regulating bone formation. Circulating sclerostin was reported to be elevated in X-linked hypophosphatemia (XLH) patients, and sclerostin antibody (Scl-Ab) increased bone mass and normalized circulating phosphate in Hyp mice. However, circulating sclerostin levels in patients with acquired hypophosphatemia due to tumor-induced osteomalacia (TIO) are rarely reported.

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Objective: The pathogenesis of IgG4-related disease (IgG4-RD) remains unclear. Metabolomic profiling of IgG4-RD patients offers an opportunity to identify novel pathophysiological targets and biomarkers. This study aims to identify potential plasma biomarkers associated with IgG4-RD.

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