Publications by authors named "Xi-chao Sun"

Article Synopsis
  • The study investigates a fast gene testing method for non-small cell lung cancer (NSCLC) using fresh core needle biopsy samples instead of traditional FFPE tissue specimens.
  • Out of 77 fresh NSCLC samples, 61.0% exhibited EGFR mutations, and the results from fresh samples showed high consistency with paired FFPE samples in detecting gene mutations.
  • The findings suggest that using fresh biopsy samples can reduce patient waiting times for results and could be a viable alternative for gene testing in NSCLC patients.
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Objectives: The objective of the study is to provide an efficient and practical screening strategy to distinguish a broader spectrum of Lynch syndrome (LS) and LS mimics-associated colorectal cancer (CRC), including Lynch-like syndrome (LLS), constitutional mismatch repair-deficiency, familial CRC type X (FCCTX), and polymerase proofreading-associated polyposis syndrome.

Materials And Methods: 1294 cases of CRC samples were detected mismatch repair (MMR) status using immunohistochemistry (IHC) staining, in which the cases with MLH1-deficient CRC underwent BRAF mutation analysis by IHC. Following the personal and/or family history survey, next-generation sequencing (NGS) was used to detect gene variants.

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Glioblastoma (GBM) is an angiogenic malignancy with a highly unfavorable prognosis. Angiogenesis in GBM represents an adaptation to a hypoxic microenvironment and is correlated with tumor growth, invasion, clinical recurrence, and lethality. LBH589 (also called panobinostat) is a histone deacetylase (HDAC) inhibitor with potent antitumor activity.

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Olfactory dysfunction is a common and early symptom of many neurodegenerative diseases, particularly of Alzheimer's disease (AD) and mild cognitive impairment, pointing to the progression to dementia. Recent studies have revealed that valproic acid (VPA) has neuroprotective effects in rodent models of AD. In this study, we investigated the effects of VPA on olfactory dysfunction of APP/PS1 double transgenic mouse models of AD.

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