Publications by authors named "Wenya Gao"

Neuroinflammation is often characterized by an overactive microglial response. Curcumin, known for its anti-inflammatory and antioxidant properties, can mitigate microglial hyperactivity following epileptic seizures. The study delves into the molecular mechanisms underlying curcumin's modulation of RNA post-transcriptional N (6)-methyladenosine (m6A) modification.

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Background: Jianwei Xiaoshi oral liquid (JWXS), a classical traditional prescription comprising various edible medicinal plants, has demonstrated significant efficacy in treating paediatric indigestion. It originates from Jianpi Pill, which is developed in the Ming Dynasty and nourishes the spleen and regulates gastrointestinal function. However, the specific molecular mechanisms involved remain unclear.

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Background: Emerging evidence suggested the association between gut dysbiosis and Alzheimer's disease (AD) progression. However, it remained unclear how the gut microbiome and neuroinflammation in the brain mutually interact or how these interactions affect brain functioning and cognition. Here we hypothesized that "gut-brain" axis mediated by microbial derived metabolites was expected to novel breakthroughs in the fields of AD research and development.

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Article Synopsis
  • The study examined how different dietary levels of erucic acid (EA) affect the growth, lipid accumulation, and overall health of black carp over 8 weeks.
  • Results indicated that a higher EA diet (3.49%) led to reduced weight gain and increased serum triglycerides and cholesterol, while also affecting liver enzyme activities negatively.
  • High levels of EA resulted in lipid build-up and decreased immune and antioxidant functions in black carp, signaling potential dietary risks when using rapeseed oil rich in EA for these fish.
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Developing electrocatalysts with high activity toward the hydrogen evolution reaction (HER) is a prerequisite for hydrogen fuel generation and sustainable development, but current Pt-based catalysts usually suffer from high cost and unsatisfactory performance in non-acidic media. In this work, we report an environmentally friendly and pyrolysis-free synthesis strategy to prepare an efficient catalyst, CNT-NPA-PtRu, with Pt single-atom engineered sub-nanometric Ru clusters anchored at phytic acid-modified carbon nanotubes for electrochemical HER at all pH conditions. The electronic structure of active sub-nanometric Ru clusters was optimized, which further enhanced the HER activity.

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Dihuang Baoyuan Granules is a prescription endorsed by HU Tianbao, a renowned and elderly Chinese medicine practitioner from Beijing, and has demonstrated definite clinical efficacy. The composition of this prescription is intricate as it includes 7 distinct herbal medicines. This study aims to analyze the chemical composition of Dihuang Baoyuan Granules, evaluate its efficacy in the treatment of diabetes and analyze the distribution of the drug components in the plasma, liver, and kidney after administration.

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This study explored the biosynthesis of bufadienolides(BDs) in Bufo bufo gargarizans to solve the dilemma of the decreasing resources of B. bufo gargarizans and provide a theoretical basis for the sustainable utilization of the resources. Ultra-high performance liquid chromatography-Orbitrap-mass spectrometry(UHPLC-Orbitrap-MS) was employed to detect the synthesis sites of BDs in B.

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Article Synopsis
  • Diabetic nephropathy (DN) is a significant complication of diabetes, and Qingxin Lianzi Yin Decoction (QXLZY) shows promise as a treatment, though its molecular mechanisms remain unclear.* -
  • This study developed methods to determine the content of key components in QXLZY and used network pharmacology and metabolomics to investigate its effects on DN.* -
  • Results indicated that QXLZY treatment improved kidney health in diabetic mice, reversed metabolic disturbances, and influenced essential metabolic pathways, suggesting its potential as an effective therapy for DN.*
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Psoriasis brings economic and mental burdens to patients, the exact etiology and pathogenesis of psoriasis are still unclear. Compounds of herbal medicine have the potential for psoriasis treatment. This study aims to explore the characteristic genes for psoriasis, which herbal compounds may target.

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Article Synopsis
  • - This study investigates the effects of acteoside on metabolic changes in young rats with purinomycin aminonucleoside nephropathy (PAN) using urine metabolomics to identify potential biochemical markers and metabolic pathways involved.
  • - Acteoside was found to significantly lower the urinary protein-to-creatinine ratio in these rats, with 17 differential metabolites linked to amino acid metabolism being identified, particularly in phenylalanine and proline pathways.
  • - Two key biomarkers, leucylproline and acetophenone, demonstrated strong diagnostic potential, suggesting that acteoside helps treat PAN in young rats by influencing amino acid metabolism, which may aid in understanding its role in chronic glomerulonephritis treatment
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Current static speckle suppression methods have an extremely large system size and unsatisfactory performance. This study proposes a device called beam-splitting cavity (BSC) and establishes a model of speckle suppression based on the combination of BSC and a liquid-core fiber. Subsequently, a passive static speckle suppression system is constructed and the key factors affecting the speckle contrast are studied.

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Ethnopharmacological Relevance: Diabetic nephropathy (DN) was a major cause of end-stage renal failure and a common microvascular complication in patients with diabetes mellitus (DM). Acteoside (ACT) was the main ingredient extracted from the leaves of Rehmannia glutinosa, which had the functions of entering the lung, moisturizing the skin and relieving itching, nourishing yin and tonifying the kidney, cooling blood, and stopping bleeding. ACT had attracted worldwide interest because of its therapeutic effects on DM and its complications.

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The topological insulator 2D BiSe is promising for electronic devices due to its unique electronic properties; however, it is challenging to prepare antioxidative nanosheets since BiSe is prone to oxidation. Surface passivation using ligand agents after BiSe exfoliation works well to protect the surface, but the process is time-consuming and technically challenging; a passivation agent that is stable under a highly biased potential is significant for in situ passivation of the BiSe surface. In this work, the roles of halide anions (Cl, Br, and I) in respect of the chemical properties of synthetic BiSe nanosheets during electrochemical intercalated exfoliation were investigated to determine the antioxidation capacity.

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Background: Loropetalum chinensis (R.Br) Oliv (Bhjm), a Chinese folk herbal medicine, was traditionally used in the treatment of wound bleeding and skin ulcers. A new drug named JIMUSAN granules used for gastrosia was developed by our group, and clinical trials have been approved.

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Bound states in the continuum (BICs) have been widely observed in many symmetric geometries in the optical system during the last decade. Here, we consider a scenario in which the structure is designed asymmetrically with anisotropic birefringent material embedded in one-dimensional photonic crystals. This kind of new shape opens the possibility of obtaining symmetry-protected BICs (SP-BICs) and Friedrich-Wintgen BICs (FW-BICs) form in tunable anisotropy axis tilt.

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Arenobufagin (ArBu) is a natural anticancer drug with good anti-tumor effects, but its clinical applications and drug development potential are limited due to its toxicity. The purpose of this study is to reduce the toxic side effects of ArBu and improve the efficacy of tumor treatment by incorporating it into poly(ethylene glycol)-b-poly (lactide) co-polymer (PEG-PLA). ArBu@PEG-PLA micelles were prepared by a thin film hydration method.

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Background: Panax notoginseng (PN) was an edible Chinese herbal medicine. PN's current quality control standard cannot precisely match the traditional grading experience.

Purpose: In this study, under the guidance of the traditional grading experience, the combined metabolomics and biological effect evaluation were used to reveal the distinct chemical quality of PN.

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Article Synopsis
  • The study developed a method using ultra-performance liquid chromatography-tandem mass spectrometry for the simultaneous analysis of ten active compounds in various parts of Loropetalum chinensis, including leaves, flowers, fruits, and roots.
  • The method demonstrated stability, simplicity, and accuracy, revealing significant differences in the content of these compounds across different plant parts, particularly finding the highest levels in flowers.
  • This research provides insights into the pharmacological potential of L. chinensis by highlighting the active components' distribution, thereby informing future utilization and development of this plant's resources.
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Different studies on the effects of high-fat diet (HFD) on Alzheimer's disease (AD) pathology have reported conflicting findings. Our previous studies showed HFD could moderate neuroinflammation and had no significant effect on amyloid-β levels or contextual memory on AD mice. To gain more insights into the involvement of HFD, we performed the whole-transcriptome sequencing and ribosome footprints profiling.

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Ethnopharmacological Relevance: Acteoside (ACT) is the main ingredient derived from the leaves of Rehmannia glutinosa (Dihuangye). Dihuangye has the function of clearing heat, replenishing qi and activating blood, nourishing yin and tonifying kidney in traditional Chinese medicine. Recent studies have demonstrated that Dihuangye can be used to treat nephritis and ACT is a promising antinephritic agent.

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Background: The novel coronavirus pneumonia (COVID-19) has spread rapidly around the world. As a member against the epidemic, Qingfei Paidu Decoction (QFPDD) has been approved for the treatment of COVID-19 in China. However, its antiviral mechanism was still largely unclear.

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Background: seed kernel oil is rich in oleic acid and linoleic acid, thus holding potential value as a source of high-quality edible oils. However, some regulatory factors involved in fatty acids accumulation in seed kernels remain largely elusive. Thus, the aim of this study was to elucidate the regulatory mechanisms underlying fatty acids biosynthesis in developing seed kernels.

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Background: The pathogenesis and treatment of cardiovascular disease mediated by chronic kidney disease (CKD) are key research questions. Specifically, the mechanisms underlying the cardiorenal protective effect of Yiqi-Huoxue-Jiangzhuo formula (YHJF), a traditional Chinese herbal medicine, have not yet been clarified.

Methods: A classical CKD mouse model was constructed by 5/6 nephrectomy (Nx) to study the effects of YHJF intervention on 5/6 Nx mice cardiorenal function, gut microbial composition, gut-derived metabolites, and NLRP3 inflammasome pathways.

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Quality evaluation of Chinese medicinal decoction pieces is vital for the development of the downstream industries, and is an important channel for implementing the strategy of "higher quality, higher price, and priority for the high quality" for traditional Chinese medicine. At the moment, the quality of Chinese medicinal decoction pieces is mainly evaluated based on chemical component examination. Considering the weak preliminary research foundation and poor research conditions, traditional experience-based evaluation is undervalued in the quality rating of Chinese medicinal decoction pieces.

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Accumulating evidence has demonstrated that microRNAs (miRNAs) regulate various physiological and pathological processes at the transcriptional level, thus called novel regulators in immune response. In this study, we used bioinformatics and functional experiments to determine the role of miR-103 and miR-190 in the regulation of IL-1R1 gene involved in the immune and inflammatory responses in miiuy croakers. First, we predicted the target genes of miR-103 and miR-190 through bioinformatics and found that IL-1R1 is a direct target gene of miR-103 and miR-190.

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