LINC00922, a long non‐coding RNA (lncRNA) located at chromosome 16q21, has emerged as a crucial regulatory molecule in cancer progression, chemotherapy resistance, and immune modulation. This lncRNA is predominantly localized in the cytoplasm, with limited expression in the nucleus and exosomes. Elevated LINC00922 expression levels are associated with poor patient prognosis across various cancer types. LINC00922 can regulate cancer cell behavior through complex gene regulatory networks, including interactions with several key signaling pathways, such as the Wnt, telomerase, and immune response pathways. Importantly, LINC00922 participates in multiple competing endogenous RNA axes, influencing the expression patterns of target microRNAs like miR‐424‐5p and miR‐874‐3p, which in turn regulate important cancer‐related genes, such as TFAP2C and GDPD5 contributing to chemotherapy resistance. LINC00922 can also promote immune cell infiltration in tumors, with its high expression levels correlating with extensive immune cell presence, suggesting potential for cancer immunotherapy. Despite these promising findings, the upstream regulatory factors of LINC00922 remain poorly understood and further research is needed to fully uncover its clinical potential. In this review, we highlight the multifaceted roles of LINC00922 in cancer, emphasizing the need for future studies to explore its potential as a therapeutic target and diagnostic biomarker.
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Adipose tissue fibrosis, characterized by abnormal extracellular matrix deposition within adipose tissue, signifies a crucial indicator of adipose tissue malfunction, potentially leading to organ tissue dysfunction. Various factors, including a high-fat diet, non-alcoholic fatty liver disease, and insulin resistance, coincide with adipose tissue fibrosis. MicroRNAs (miRNAs) represent a class of small non-coding RNAs with significant influence on tissue fibrosis through diverse signaling pathways. For instance, in response to a high-fat diet, miRNAs can modulate signaling pathways such as TGF-β/Smad, PI3K/AKT, and PPAR-γ to impact adipose tissue fibrosis. Furthermore, miRNAs play roles in inhibiting fibrosis in different contexts: suppressing corneal fibrosis via the TGF-β/Smad pathway, mitigating cardiac fibrosis through the VEGF signaling pathway, reducing wound fibrosis via regulation of the MAPK signaling pathway, and diminishing fibrosis post-fat transplantation via involvement in the PDGFR-β signaling pathway. Notably, the secretome released by miRNA-transfected adipose-derived stem cells facilitates targeted delivery of miRNAs to evade host immune rejection, enhancing their anti-fibrotic efficacy. Hence, this study endeavors to elucidate the role and mechanism of miRNAs in adipose tissue fibrosis and explore the mechanisms and advantages of the secretome released by miRNA-transfected adipose-derived stem cells in combating fibrotic diseases.
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Long noncoding RNAs (lncRNAs) are a class of nonprotein‐coding transcripts that are longer than 200 nucleotides. LINC00355 is a lncRNA located on chromosome 13q21.31 and is consistently upregulated in various cancers. It regulates the expression of downstream genes at both transcriptional and posttranscriptional levels, including eight microRNAs (miR‐15a‐5p, miR‐34b‐5p, miR‐424‐5p, miR‐1225, miR‐217‐5p, miR‐6777‐3p, miR‐195, and miR‐466) and three protein‐coding genes (ITGA2, RAD18, and UBE3C). LINC00355 plays a role in regulating various biological processes such as cell cycle progression, proliferation, apoptosis, epithelial‐mesenchymal transition, invasion, and metastasis of cancer cells. It is involved in the regulation of the Wnt/β‐catenin signaling pathway and p53 signaling pathway. Upregulation of LINC00355 has been identified as a high‐risk factor in cancer patients and its increased expression is associated with poorer overall survival, recurrence‐free survival, and disease‐free survival. LINC00355 upregulation has been linked to several unfavorable clinical characteristics, including advanced tumor node metastasis and World Health Organization stages, reduced Karnofsky Performance Scale scores, increased tumor size, greater depth of invasion, and more extensive lymph node metastasis. LINC00355 induces chemotherapy resistance in cancer cells by regulating five downstream genes, namely HMGA2, ABCB1, ITGA2, WNT10B, and CCNE1 genes. In summary, LINC00355 is a potential oncogene with great potential as a diagnostic marker and therapeutic target for cancer.
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