Increased Throughput in the Determination of PPCPs in Water Using Optimized MS Cycle Times in a High Sensitivity UHPLC-Triple Quadrupole System
Applications | 2016 | Agilent TechnologiesInstrumentation
Pharmaceuticals and personal care products (PPCPs) are emerging contaminants in surface waters that can harm aquatic life at trace levels. Rapid, sensitive, and high-throughput analytical methods are essential to monitor these compounds effectively without extensive sample preparation.
This study evaluates optimized software and firmware modifications in a UHPLC-triple quadrupole MS system to reduce inter-MRM delay times, enabling direct injection of water samples and high-throughput analysis of 32 PPCPs down to 0.5 ng/L.
Sample preparation consisted of simple filtration and direct injection (40 μL) without solid-phase extraction. An Agilent 1290 Infinity II UHPLC with a ZORBAX Eclipse Plus RRHD C18 column (2.1×50 mm, 60 °C) was coupled to an Agilent 6495 triple quadrupole MS with Jet Stream ionization. Mobile phases were water and acetonitrile (0.03 % formic acid), operated at 0.5 mL/min with polarity-switching MRM. Inter-MRM delays were optimized to allow dwell times of 0.5 ms.
Direct injection and optimized inter-MRM delays yielded the following outcomes:
The method eliminates time-consuming SPE, delivering high throughput and sensitivity in a single polarity-switching run. It is well-suited for routine environmental monitoring and QA/QC of water samples.
Future developments may include expanding analyte panels, integrating online sampling interfaces, and real-time field deployable systems to support continuous water quality surveillance.
Optimized inter-MRM delay times in a high-sensitivity UHPLC-triple quadrupole system enable sub-ms dwell times, direct injection of untreated water, and swift analysis of multiple PPCPs with excellent accuracy and precision.
Agilent Technologies. Application Note 5991-7299EN, December 2016.
LC/MS, LC/MS/MS, LC/QQQ
IndustriesEnvironmental
ManufacturerAgilent Technologies
Summary
Importance of the Topic
Pharmaceuticals and personal care products (PPCPs) are emerging contaminants in surface waters that can harm aquatic life at trace levels. Rapid, sensitive, and high-throughput analytical methods are essential to monitor these compounds effectively without extensive sample preparation.
Objectives and Study Overview
This study evaluates optimized software and firmware modifications in a UHPLC-triple quadrupole MS system to reduce inter-MRM delay times, enabling direct injection of water samples and high-throughput analysis of 32 PPCPs down to 0.5 ng/L.
Methodology and Instrumentation
Sample preparation consisted of simple filtration and direct injection (40 μL) without solid-phase extraction. An Agilent 1290 Infinity II UHPLC with a ZORBAX Eclipse Plus RRHD C18 column (2.1×50 mm, 60 °C) was coupled to an Agilent 6495 triple quadrupole MS with Jet Stream ionization. Mobile phases were water and acetonitrile (0.03 % formic acid), operated at 0.5 mL/min with polarity-switching MRM. Inter-MRM delays were optimized to allow dwell times of 0.5 ms.
Results and Discussion
Direct injection and optimized inter-MRM delays yielded the following outcomes:
- Analysis of 32 PPCPs in a 6 min UHPLC run, achieving limits of quantitation as low as 0.5 ng/L.
- Dwell time comparison showed <12 % signal loss at 0.5 ms versus 5 ms settings.
- Calibration curves for diclofenac and venlafaxine displayed R² > 0.997 over 0.5–1000 ng/L, with RSD < 10 % and accuracy between 85–112 %.
- Reproducible responses (RSD < 10 %) at sub-ng/L levels for atrazine and diltiazem.
- Screening of real surface water samples identified differing PPCP profiles, including bupropion and lamotrigine at ng/L concentrations.
Benefits and Practical Applications
The method eliminates time-consuming SPE, delivering high throughput and sensitivity in a single polarity-switching run. It is well-suited for routine environmental monitoring and QA/QC of water samples.
Future Trends and Potential Applications
Future developments may include expanding analyte panels, integrating online sampling interfaces, and real-time field deployable systems to support continuous water quality surveillance.
Conclusion
Optimized inter-MRM delay times in a high-sensitivity UHPLC-triple quadrupole system enable sub-ms dwell times, direct injection of untreated water, and swift analysis of multiple PPCPs with excellent accuracy and precision.
Reference
Agilent Technologies. Application Note 5991-7299EN, December 2016.
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
Similar PDF
Method for Direct Analysis of Contaminants in Surface Waters With High Accuracy and Precision Using an Agilent 6470A Triple Quadrupole LC/MS System
2016|Agilent Technologies|Applications
Method for Direct Analysis of Contaminants in Surface Waters With High Accuracy and Precision Using an Agilent 6470A Triple Quadrupole LC/MS System Application Note Environmental, Surface Water, Personal Care Products (PPCPs) Authors Abstract Jian-Zhong Li and Craig Marvin Using the…
Key words
bupropion, bupropioncotinine, cotininecontaminants, contaminantsdextrorphan, dextrorphansurface, surfaceclarithromycin, clarithromycingemfibrozil, gemfibroziltriclopyr, triclopyrtriclosan, triclosanvenlafaxine, venlafaxinelamotrigine, lamotriginegabapentin, gabapentinsucralose, sucralosedeet, deetmrm
Highly Sensitive Detection of Pharmaceuticals and Personal Care Products (PPCPs) in Water Using an Agilent 6495 Triple Quadrupole Mass Spectrometer
2014|Agilent Technologies|Applications
Highly Sensitive Detection of Pharmaceuticals and Personal Care Products (PPCPs) in Water Using an Agilent 6495 Triple Quadrupole Mass Spectrometer Application Note Authors Abstract Dan-Hui Dorothy Yanga, b Mark A. Murphy , and Sue Zhang a This Application Note describes…
Key words
pdf, pdfreporting, reportingenviromental, enviromentalion, ionmontelukast, montelukastppcps, ppcpsppt, pptmodafinil, modafinilprecursor, precursorname, nameerythromycin, erythromycinmetformin, metformincelecoxib, celecoxibwater, watergabapentin
Agilent 6495C Triple Quadrupole LC/MS system
2019|Agilent Technologies|Brochures and specifications
Experience the Highest Level of Confidence Agilent 6495C Triple Quadrupole LC/MS system The Highest Level of Confidence Your samples are precious and turnaround time is critical to the success of your organization. A sensitive, yet rugged instrument that provides day-in,…
Key words
counts, countsacquisition, acquisitiontmrm, tmrmmin, minmrm, mrmtime, timeanalytical, analyticalagilent, agilentconfidence, confidencespotlights, spotlightsquantitation, quantitationsensitivity, sensitivitylloq, lloqdatabase, databaseresponse
Sensitive Screening of Pharmaceuticals and Personal Care Products (PPCPs) in Water Using an Agilent 6545 Q-TOF LC/MS System
2015|Agilent Technologies|Applications
Sensitive Screening of Pharmaceuticals and Personal Care Products (PPCPs) in Water Using an Agilent 6545 Q-TOF LC/MS System Application Note Authors Abstract Dan-Hui Dorothy Yang1, Mark A. Murphy , Yue Song , Jimmy Chan 2 1 3 As a follow…
Key words
ppcps, ppcpsmass, masstemazepam, temazepamwater, wateraccuracy, accuracyibuprofen, ibuprofenswarm, swarmmodafinil, modafinildeet, deetacq, acqcotinine, cotininewere, wereerythromycin, erythromycinpersonal, personalinternal