1.Effects of intracerebral ventricular GLP-1(7-36) on blood glucose and its regulatory hormones in rats
Yongmei ZHAO ; Hongwei QI ; Wenkai TONG
Chinese Journal of Diabetes 1995;0(04):-
After intracerebral ventricular administration of GLP-1 in NS or 30% glucose to rats,their effects on blood glucose and glucose regulatory hormones were observed. The results demonstrated:1. Intracerebral ventricular administration of GLP-1 in NS didn't influence plasma stucose, insulin and glucagon secretion.2. Intracerebral ventricular administration of GLP-1 in 30% glucose increased plasma glucose concentration significantly and decreased insulin concentration,but no change of glucagon concentration. This experiment showed that GLP-1 might participate in CNS regulation of pancreatic islet hormonesecretion.
2.Long non-coding RNA DUXAP9 promotes the proliferation and metastasis of head and neck squamous cell carcinoma
ZHOU Wenkai ; WANG Jiaxuan ; WANG Yuanfeng ; CHEN Meng ; TAO Xingru ; LIU Zheqi ; ZHANG Xu ; JI Tong ; CAO Wei
Journal of Prevention and Treatment for Stomatological Diseases 2022;30(6):381-389
Objective:
To investigate the role of long non-coding RNA double homeobox A pseudogene 9 (DUXAP9) in head and neck squamous cell carcinoma (HNSCC) and to evaluate the expression level, molecular function and mechanism of DUXAP9 in HNSCC cells.
Methods:
Differential expression of lncRNAs between normal and tumor tissues in HNSCC tissues were screened using lncRNA microarray, the expression level of DUXAP9 in HNSCC tissues and its relationship with prognosis were analyzed in the TCGA database. The expression levels of DUXAP9 in HNSCC tissues and cell lines were detected using qRT-PCR. The function in HNSCC cells after DUXAP9 silencing was evaluated using the CCK-8 assay, wound healing assay, Transwell migration assay and subcutaneous xenograft assay in nude mice. Changes in the transcription and translation of epithelial-mesenchymal transition (EMT)-related proteins in head and neck squamous cell carcinoma cells after DUXAP9 silencing were detected using qRT-PCR and Western blot.
Results:
lncRNA microarray results showed that, compared to adjacent normal tissues, DUXAP9 was abnormally upregulated in HNSCC tissues. Analysis from TCGA database showed that, compared to HNSCC patients with low DUXAP9 expression, HNSCC patients with high DUXAP9 expression had poorer survival. The relative expression of DUXAP9 in HNSCC tissues and 4 HNSCC cell lines increased compared to paired adjacent normal tissues as detected using qRT-PCR. Silencing DUXAP9 significantly inhibited the proliferation, migration and expression of EMT-related genes in HNSCC cells. The silencing of DUXAP9 significantly inhibited subcutaneous tumorigenesis of the HNSCC cell line CAL27 in nude mice.
Conclusion
Silencing DUXAP9 significantly inhibited the proliferation of HNSCC cells and subcutaneous xenografts in nude mice. DUXAP9 may mediate the migration of head and neck squamous cell carcinoma cells via the EMT pathway.
3.Spatial transcriptomics reveals that metabolic characteristics define the tumor immunosuppression microenvironment via iCAF transformation in oral squamous cell carcinoma.
Zheqi LIU ; Zhen ZHANG ; Yu ZHANG ; Wenkai ZHOU ; Xu ZHANG ; Canbang PENG ; Tong JI ; Xin ZOU ; Zhiyuan ZHANG ; Zhenhu REN
International Journal of Oral Science 2024;16(1):9-9
Tumor progression is closely related to tumor tissue metabolism and reshaping of the microenvironment. Oral squamous cell carcinoma (OSCC), a representative hypoxic tumor, has a heterogeneous internal metabolic environment. To clarify the relationship between different metabolic regions and the tumor immune microenvironment (TME) in OSCC, Single cell (SC) and spatial transcriptomics (ST) sequencing of OSCC tissues were performed. The proportion of TME in the ST data was obtained through SPOTlight deconvolution using SC and GSE103322 data. The metabolic activity of each spot was calculated using scMetabolism, and k-means clustering was used to classify all spots into hyper-, normal-, or hypometabolic regions. CD4T cell infiltration and TGF-β expression is higher in the hypermetabolic regions than in the others. Through CellPhoneDB and NicheNet cell-cell communication analysis, it was found that in the hypermetabolic region, fibroblasts can utilize the lactate produced by glycolysis of epithelial cells to transform into inflammatory cancer-associated fibroblasts (iCAFs), and the increased expression of HIF1A in iCAFs promotes the transcriptional expression of CXCL12. The secretion of CXCL12 recruits regulatory T cells (Tregs), leading to Treg infiltration and increased TGF-β secretion in the microenvironment and promotes the formation of a tumor immunosuppressive microenvironment. This study delineates the coordinate work axis of epithelial cells-iCAFs-Tregs in OSCC using SC, ST and TCGA bulk data, and highlights potential targets for therapy.
Humans
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Carcinoma, Squamous Cell/metabolism*
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Squamous Cell Carcinoma of Head and Neck
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Mouth Neoplasms/metabolism*
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Immunosuppression Therapy
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Transforming Growth Factor beta
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Head and Neck Neoplasms
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Gene Expression Profiling
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Tumor Microenvironment