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Tips to maximize electrode lifetime for Echo MS system

While it’s easy to think of the Echo® MS system as an ultrafast LC system in front of the SCIEX Triple Quad 6500+ mass spectrometer, the system operates on fundamentally different principles. For this reason, it requires different routine maintenance to keep it...

Echo MS system maintenance operations

The Echo® MS system is a robust platform, and like any other platform, requires some routine maintenance on a regular basis. Here are 3 maintenance steps that can help you ensure consistent, reliable performance: Immediately before use or after switching carrier...

Standard front-end cleaning for TripleTOF systems

General points: Use of laboratory deionized (DI) water is specified at points in the procedure. However, if there are any concerns regarding quality, please utilize a reputable supplier of pure deionized water (>18.2M ohm).  5-10 liters will typically be required...

PFAS testing: 2024 in review and what to expect for 2025

PFAS testing: 2024 in review and what to expect for 2025

For as long as PFAS persist in the environment, there is no doubt they will persist in our conversations as environmental scientists. Globally, PFAS contamination has been detected in water supplies, soil and even in the blood of people and wildlife. Different countries are at various stages of addressing PFAS contamination and many governments have set regulatory limits and are working on assessing the extent of contamination, cleaning up affected sites and researching safer alternatives.

Unveiling the power of ZT Scan DIA: Insights from Ludwig Sinn’s presentation at World HUPO Congress 2024

Unveiling the power of ZT Scan DIA: Insights from Ludwig Sinn’s presentation at World HUPO Congress 2024

In a recent presentation at the World HUPO Congress 2024, Ludwig Sinn from the Ralser lab shared exciting advancements in proteomics research, focusing on the innovative ZT Scan DIA acquisition modes developed in collaboration with SCIEX. Let us explore the key highlights and benefits of this innovative technology.

Inside the box: Complementary fragmentation with LC-MS for Metabolite Identification

Inside the box: Complementary fragmentation with LC-MS for Metabolite Identification

Liquid chromatography-mass spectrometry is commonly used for Met ID but confident soft spot identification is not always possible. Imagine the advantage of unambiguous metabolite identification using liquid chromatography-mass spectrometry (LC-MS) reducing the need for additional safety testing during drug discovery. Quickly and easily generate the information you need using routine assays that are robust and efficient, enabling confident decision-making while also saving time and money.

Understanding PFAS and its impact on U.S. drinking water

Understanding PFAS and its impact on U.S. drinking water

In recent years, per- and polyfluoroalkyl substances (PFAS), often referred to as “forever chemicals,” have become a growing topic of interest due to their persistence in the environment and potential health risks. These synthetic compounds have been widely used in various industrial applications and consumer products since the 1940s. PFAS can be found in the air, soil, and water, and studies have shown that most people have detectable levels of PFAS in their bloodstream. One of the main exposure pathways for humans is through drinking water, particularly in communities located near industrial sites, military bases, or areas where firefighting foam has been used.

Using Scheduled Ionization to reduce system ion load for proteomics data acquisition

Using Scheduled Ionization to reduce system ion load for proteomics data acquisition

When analyzing highly complex samples from biological matrices, there can be significant amounts of material that elute in the wash cycle of the LC run, depending on the up-front sample preparation used.  The Scheduled Ionization mode, available in both SCIEX OS...

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