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主题:MNPs
按主题分类的文章 "MNPs"
- 纳米材料在废水处理中的应用 水是人类生活和生产中不可缺少的物质。随着工业的发展,水污染问题越来越严重。例如,工业生产中的重金属(如 ...
- Nanoparticle-Based Gene Delivery In gene delivery, vectors are essential in the passage of DNA (hydrophilic, negatively charged) through cell membranes (hydrophobic, negatively charged). In addition, therapeutic efficiency also depends on the efficient delivery of DNA to the target site. Due to the many delivery barriers in the ...
- 基于纳米颗粒的基因传递 在基因传递中,载体在DNA(亲水,带负电)通过细胞膜(疏水,带负电)的过程中是必不可少的。此外,治疗效率还取决于DNA有效地递送到靶部位。由于系统中存在许多传递障碍,如细胞内摄取、内体逃逸、DNA释放和核摄取等,以及细胞外屏障,如避免颗粒清除机制、靶向特定组织和/或感兴趣的细胞、保护 ...
- Nanoparticle-Based Small Molecule Drug Delivery Small-molecule drugs are variable-specificity drugs targeted within cells, typically well-defined organic substances with a molecular weight of fewer than 900 Daltons, that help regulate biological processes. Due to differences in size, manufacturing, pharmacokinetics, pharmacodynamics, and ...
- 基于纳米颗粒的小分子药物递送 小分子药物是细胞内靶向的可变特异性药物,通常是结构明确、分子量小于900 ...
- Application of Magnetic Nanoparticles in RNA and DNA Separation Over the past few decades, magnetic nanoparticles (MNPs) have been increasingly used to separate and differentiate biomolecules, which is the basis of most current molecular diagnostic procedures. The size, morphology, and dispersion of MNPs endow them with specificity, affinity, and binding ...
- 磁性纳米颗粒在RNA和DNA分离中的应用 在过去的几十年里,磁性纳米颗粒(MNPs)越来越多地用于分离和区分生物分子,这也是目前大多数分子诊断程序的基础。MNPs的大小、形态和分散性赋予了它们对生物分子的特异性、亲和力和结合能力。
- Application of Magnetic Particles in Organelle Separation In bioanalytical chemistry, it is very important to isolate organelles to analyze their content or function, which is the basis of many biomedical analyses.
- 磁颗粒在细胞器分离中的应用 在生物分析化学中,使用分离细胞器以分析其含量或功能是非常重要的,它是许多生物医学分析的基础。
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