Freezing processes of several liquids under static magnetic field(SMF) less than 50 mT were investigated. Central temperature of liquid samples held in glass test tubes immersed in a liquid bath was measured and colle...Freezing processes of several liquids under static magnetic field(SMF) less than 50 mT were investigated. Central temperature of liquid samples held in glass test tubes immersed in a liquid bath was measured and collected. Nucleation temperature and phase transition time were obtained from freezing curves. Normality tests were performed for nucleation temperature of these liquids with/without magnetic field and normality distributions were justified. Analysis of variances was carried out for nucleation temperature of these liquids with magnetic field flux density as the influencing factor. Results showed that no significant difference was found for deionized water with or without SMF. However, differences exist in 0.9% NaCl solution and 5% ethylene glycol solution with and without SMF. Nucleation temperature of 0.9% NaCl with SMF is lower than that without SMF, while its phase transition time is shorter than that without SMF. Nucleation temperature of 5% ethylene glycol with SMF is higher than that without SMF, while its phase transition time is not modified with SMF.展开更多
Increasing evidence suggests that long noncoding RNAs(lncRNAs) play vital roles in the transformation and maintenance of cancer phenotypes and have important clinical implications. These lncRNAs control important aspe...Increasing evidence suggests that long noncoding RNAs(lncRNAs) play vital roles in the transformation and maintenance of cancer phenotypes and have important clinical implications. These lncRNAs control important aspects of tumor biology, including proliferation, angiogenesis, metastasis, and the microenvironment by regulating RNA and protein interactions or through their ability to base pair with RNA and DNA. In this study, we review the mechanism of the function of lncRNAs in cancer and their diagnostic roles in cancer phenotypes, which make them attractive as non-invasive biomarkers from body fluid samples for different types of cancer.展开更多
基金Supported by the National Natural Science Foundation of China(51306104)
文摘Freezing processes of several liquids under static magnetic field(SMF) less than 50 mT were investigated. Central temperature of liquid samples held in glass test tubes immersed in a liquid bath was measured and collected. Nucleation temperature and phase transition time were obtained from freezing curves. Normality tests were performed for nucleation temperature of these liquids with/without magnetic field and normality distributions were justified. Analysis of variances was carried out for nucleation temperature of these liquids with magnetic field flux density as the influencing factor. Results showed that no significant difference was found for deionized water with or without SMF. However, differences exist in 0.9% NaCl solution and 5% ethylene glycol solution with and without SMF. Nucleation temperature of 0.9% NaCl with SMF is lower than that without SMF, while its phase transition time is shorter than that without SMF. Nucleation temperature of 5% ethylene glycol with SMF is higher than that without SMF, while its phase transition time is not modified with SMF.
文摘Increasing evidence suggests that long noncoding RNAs(lncRNAs) play vital roles in the transformation and maintenance of cancer phenotypes and have important clinical implications. These lncRNAs control important aspects of tumor biology, including proliferation, angiogenesis, metastasis, and the microenvironment by regulating RNA and protein interactions or through their ability to base pair with RNA and DNA. In this study, we review the mechanism of the function of lncRNAs in cancer and their diagnostic roles in cancer phenotypes, which make them attractive as non-invasive biomarkers from body fluid samples for different types of cancer.