采用超高惰性技术的 Agilent Altura HPLC 色谱柱
Altura 超高惰性 HPLC 色谱柱
Altura 色谱柱采用创新的超高惰性技术。这款先进的涂层可阻断活性金属位点,在保持传统不锈钢 HPLC 色谱柱强度、耐压性和一致性的同时,确保样品流路完全惰性。
最终实现什么效果?Altura 色谱柱可充分释放固定相的真实分离潜力。在面对挑战性的金属敏感型分析物时,您将获得卓越的色谱性能、更快的平衡速度,以及更高的检测灵敏度。
首次发布的 Altura 超高惰性 HPLC 色谱柱涵盖反相和 HILIC 两种固定相,适用于多肽、寡核苷酸、极性代谢物等金属敏感型分析物。
- 超高惰性 HPLC 色谱柱
产品详细信息
- 减少非特异性结合,实现更纯净的选择性
- 峰形越好,拖尾越少
- 改进了样品回收率,提高了灵敏度
- 坚固涂层与柱床设计带来更长使用寿命
- 快速平衡,更快获取高质量数据
- 适用于各种色谱分析技术
- 以更低检出限满足日益严格的法规要求
- 重要资料
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Pushing the Boundaries of Biomolecular Separation with Inert HPLC Column Hardware
This white paper outlines the performance of Altura columns across a range of analytes and conditions.
- 白皮书
- English
- 2025 年 9 月 23 日
- 408.24 KB
Reach New Heights in Performance: Agilent Altura HPLC Columns with Ultra Inert Technology
Agilent Altura HPLC columns with Ultra Inert technology sets a new standard in liquid chromatographic performance, providing the reliability and efficiency you need for your most demanding applications.
- 产品样本
- English
- 2025 年 10 月 3 日
- 2.10 MB
Analysis of GLP-1 Agonists Using the Agilent 1290 Infinity II Bio LC System and Altura Ultra Inert HPLC Column
This application brief describes analysis of glucagon-like peptide-1 (GLP-1) receptor agonists using the Agilent 1290 Infinity II Bio LC and an Altura Peptide Plus column with Ultra Inert technology.
- 应用简报
- English
- 2025 年 12 月 3 日
- 460.44 KB
- 应用简报
- 用户手册
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Agilent Biomolecule Reversed-Phase LC Columns User Guide
This user guide provides general information for the Agilent Altura, AdvanceBio, and Bio HPLC reversed-phase columns, including operating parameters.
- 用户手册
- English
- 2026 年 3 月 13 日
- 252.37 KB
Agilent Altura Poroshell HILIC-Z Columns
Agilent Altura Poroshell HILIC-Z columns with Ultra Inert technology are designed and manufactured for normal-phase separation of small, polar analytes such as amino acids and organic acid metabolites.
- 用户手册
- English
- 2025 年 8 月 27 日
- 244.66 KB
Piotr Alvarez
Senior Scientist, RIC Group
The deactivated HILIC-Z column substantially reduced the undesired analyte-surface interactions in the analysis of GLP-1 receptor agonist drug products. We observed at least a 30% increase in sensitivity and reduction in peak tailing for the analysis of acidic peptides and excipients. Peptide impurities eluting in the peak tail were hardly detectable when using conventional stainless steel hardware.
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