Publications by authors named "Hui-Miao Wang"

Background: Raddeanin A is a triterpenoid isolated from Anemone raddeana Regel. It exhibits a broad spectrum of biological activities such as anti-tumor and anti-inflammatory, however, its neuroprotective effect in targeting Alzheimer's disease (AD) remains uninvestigated.

Purpose: To provide scientific base for the development of novel AD drug by clarifying the neuroprotective effect and molecular mechanisms of raddeanin A in both in vitro and in vivo AD model.

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The incidence of rheumatoid arthritis (RA) is increasing with age. DNA fragments is known to accumulate in certain autoimmune diseases, but the mechanistic relationship among ageing, DNA fragments and RA pathogenesis remain unexplored. Here we show that the accumulation of DNA fragments, increasing with age and regulated by the exonuclease TREX1, promotes abnormal activation of the immune system in an adjuvant-induced arthritis (AIA) rat model.

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Article Synopsis
  • Alzheimer's disease makes it hard for people to think and remember things, and it happens when a protein called β-amyloid builds up in the brain.
  • A study found that a special compound called hyperoside can help stop this buildup and protect brain cells in mice that have a type of Alzheimer's.
  • The research shows that hyperoside could improve brain function and reduce damage caused by Alzheimer’s, making it a possible treatment for the disease.
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  • 5-demethylnobiletin is a natural compound found in citrus peels, known for its various biological benefits including anti-cancer and anti-inflammatory effects, but its impact on melanin production has not been previously studied.
  • The study aimed to explore how 5-demethylnobiletin influences melanogenesis by examining its effects on key proteins and pathways in melanoma cells, particularly focusing on tyrosinase and the microphthalmia-associated transcription factor (MITF).
  • The results demonstrated that 5-demethylnobiletin promotes melanin synthesis and melanosome transport by activating specific signaling pathways, suggesting its potential as a treatment for pigment disorders like vitiligo.
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Exosomes are nano-extracellular vesicles with diameters ranging from 30 to 150 nm, which are secreted by the cell. With their role in drug cargo loading, exosomes have been applied to carry compounds across the blood-brain barrier in order to target the central nervous system (CNS). In this study, high-purity exosomes isolated by the ultra-high-speed separation method were applied as the natural compound carrier, with the loading efficiency confirmed by UHPLC-MS analysis.

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With the increase in human lifespan, population aging is one of the major problems worldwide. Aging is an irreversible progressive process that affects humans via multiple factors including genetic, immunity, cellular oxidation and inflammation. Progressive neuroinflammation contributes to aging, cognitive malfunction, and neurodegenerative diseases.

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Literary evidence depicts that aggregated β-amyloid (Aβ) leads to the pathogenesis of Alzheimer's disease (AD). Although many traditional Chinese medicines (TCMs) are effective in treating neurodegenerative diseases, there is no effective way for identifying active compounds from their complicated chemical compositions. Instead of using a traditional herbal separation method with low efficiency, we herein apply UHPLC-DAD-TOF/MS for the accurate identification of the active compounds that inhibit the fibrillation of Aβ (1-42), via an evaluation of the peak area of individual chemical components in chromatogram, after incubation with an Aβ peptide.

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