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Feeding Preferences and Salivary Protein Profiles of on Species.

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National Engineering Research Center of Sugarcane, Fujian Agriculture and Forestry University, Fuzhou 350002, China.

The invasion of the fall armyworm poses substantial threats to local agricultural safety, including the sugarcane industry. Exploring the insect-resistance mechanism is crucial for breeding resistant varieties. This study selected three representative materials from the genus─ L.

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Article Synopsis
  • Adenoid cystic carcinomas (AdCC) of salivary gland origin are primarily defined by the presence of specific gene fusions, notably MYB::NFIB and MYBL1::NFIB, with sinonasal AdCC being particularly aggressive and lacking effective treatments.
  • Researchers conducted an extensive analysis of 88 sinonasal AdCC cases using various techniques like NGS and FISH to identify gene fusions and mutations, finding that the majority harbored canonical fusions while some had noncanonical ones, with a few tumors showing no fusions at all.
  • Mutational analysis revealed that about 68% of AdCCs tested (21 out of 31) had mutations in key oncogenes, highlighting potential areas for targeted
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Salivary adenoid cystic carcinoma (SACC) is an intractable malignant tumor originates in the secretory glands and frequently metastasizes to the lungs. Hybrid epithelial-mesenchymal transition (EMT) cells within the tumors are correlated with augmented proliferative capacity and facilitation of lung metastasis. Single-cell RNA sequencing and spatial transcriptomic sequencing are employed to reveal the hybrid EMT subsets within the vascular fibroblast microenvironment.

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Hyalinizing clear cell carcinoma (HCCC) is a rare, low-grade epithelial tumor predominantly found in the salivary glands, with tracheal involvement being particularly uncommon. The present study details a case of primary tracheal HCCC and its clinical presentation, diagnostic challenges and the therapeutic approach used. A 34-year-old female patient presented with a 1-month history of intermittent dyspnea.

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A step towards non-invasive diagnosis of diabetes mellitus using synthesized MOF-MXene hybrid material with extended gate field-effect transistor integration.

J Mater Chem B

December 2024

Laboratory of Sensors, Energy and Electronic devices (Lab SEED), Department of Physics and Nanotechnology, SRMIST, Kattankulathur 603203, Tamil Nadu, India.

The increasing demand for non-invasive and non-enzymatic glucose sensors is driven by the objective of eliminating the need for blood pricks from the body and enabling enzyme-free detection of glucose for diagnosing diabetes mellitus. To address this need, we synthesized Ni MOF-MXene (Ni) hybrid material through a one-pot synthesis method, which acts as a catalyst to detect salivary glucose using an extended gate field effect transistor (EGFET) method. The resulting sensor exhibits good selectivity towards glucose over common interfering molecules such as sucrose, fructose, maltose, uric acid, and ascorbic acid under physiological conditions in saliva.

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