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第71届 ASMS 年度盛会 | 安捷伦三大主题与您相约

安捷伦科技(中国)有限公司    2023-05-23       浏览 109 次

第 71 届美国质谱年会即将于 2023 年 6 月 4 – 8 日在休斯顿举行。作为质谱领域的领 导者,安捷伦将携带全新的质谱产品和应用方案亮相 ASMS!


报名通道

立即加入我们,了解我们最 新质谱及解决方案,作为质谱领域佼佼者的您,何不来一场畅快淋漓的探究呢?即刻报名 2023 年 6 月 4 日 - 6 月 8 日三大主题活动,我们在休斯顿期待您的莅临!


扫码报名参加

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Location:Houston Convention Center

Booth Number:Booth 600

Agilent hospitality suite:America’s Ballroom EF at the Hilton America’s Houston Hotel


让我们一起看看安捷伦都有哪些丰富的活动:

01 Sunday Ion Mobility Event

Home Page - Ion Mobility Event - ASMS 2023 (cventevents.com)

Date:Sunday, June 4, 2:00–5:00 pm

Venue:Marriott Marquis Houston

Room:Texas F-G


Agenda

2:00 PM - 2:15 PM 

Introduction and Opening

Dr. Christian Klein, World Wide Product Manager for HRAM, Agilent

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2:15 PM - 2:35 PM 

LipidOz: an Open-source Tool for Automated Elucidation of Lipid Double Bond Positions from Ozone-Induced Dissociation-IMS-MS Data

Dr. Xueyun Zheng, Integrative Omics Group, Pacific Northwest National Laboratory

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2:35 PM - 2:55 PM 

Innovative Data Analysis Strategies for Advancing Ion Mobility MS Workflows featuring Skyline, HRdm High Resolution Demultiplexing, and MetaboAnalyst

Dr. James Dodds, University of North Carolina

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2:55 PM - 3:15 PM  

Tackling the Peptide Isomer Impurity Challenge with High-Resolution Ion Mobility Mass Spectrometry

Amber Jones, MOBILion Corporation

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3:15 PM - 3:30 PM 

Lightning talks

1.Spatially and Temporally Probing Distinctive Phospholipid Alteration in Alzheimer's Research Mouse Brain via High-Resolution Ion Mobility-enabled sn-Position Resolved Lipidomics

Dr. Shuling Xu, Post Doc, Lingjun Li  Lab, School  of Pharmacy, University of Wisconsin - Madison


2.Customizing the Agilent SDK MIDAC to Enable Automated Batch Processing of Data Extraction Within the Mobility Polygon, Including Deconvolution

Lily Miller, Undergraduate Intern at Agilent Technologies, Prell Lab, Department of Chemistry and Biochemistry, University of Oregon

3:30 PM 

10 Minute Break

3:40 PM - 4:00 PM 

Towards more Comprehensive Characterization of PFAS Exposure using Ion Mobility and High-Resolution Mass Spectrometry

Dr. Carrie McDonough, Carnegie Mellon University

4:00 PM - 4:20 PM 

The Hidden Pathophysiology of Lipids and Proteins in Alzheimer’s Revealed with Ion Mobility MS and Quantitative QQQ Biomarker Assays

Dr. Blaine Roberts, Emory University

4:20 PM - 4:40 PM 

Development of RapidFire Native Mass Spectrometry and Collision Induced Unfolding Methodologies for High Throughput Screening of Protein and Oligonucleotide Biotherapeutics. 

Brock Juliano, Ph.D. student, Brandon Ruotolo lab, Dept of Chemistry, Univ of Michigan.

4:40 PM - 4:55 PM

Lightning talks

1.Chiral Pair Isobaric Labeling Strategy for Multiplexed Absolute Quantitation (CHRISTMAS) in Mice Revealed Alteration of Enantiomeric DL-Amino Acids in Alzheimer’s Disease Progression

Zhijun Zhu , Ph.D. Student,  Lingjun Li Lab, School of Pharmacy, University of Wisconsin - Madison


2.Rapid Oligonucleotide Sequencing Using Ion Mobility - Mass Spectrometry

Jack Ryan, Ph.D. Student,  Baker Lab, Department of Chemistry, University of North Carolina - Chapel Hill


02 Breakfast Sessions

Summary - Breakfast Sessions - ASMS 2023 (cventevents.com)

Monday 

  • From Screening to Confirmation: A Comprehensive Food Safety Analysis from Initial DIA Screening to Automatic Reinjection for Suspect Confirmation

  • Accelerating Analysis in the BioPharma Laboratory

Tuesday 

  • Multi-omic, Mass Spectrometry-Based Elucidation of Mechanisms of L-Asparaginase Toxicity in a Mouse Model of Cancer

  • Revolutionize your GC/MS analysis with the power of hydrogen carrier gas and AI technology – Faster, More Reliable and Efficient Results Guaranteed!

Wednesday 

  • Elucidating Cellular Metabolism with a Full Suite of Next-Generation

  • Unravelling the PFAS puzzle with Comprehensive Targeted & Untargeted Workflows


03 User Cocktail Reception

Date:Tuesday, June 6, 2023 5:30 - 7:00 p.m

Venue:Heresay on the Green 1515 Dallas St, Houston, TX 77010

High-Throughput Bioanalytical Analyses of Therapeutic Antibodies Using FAIMS Combined with the Sample Stream Platform and Intact Protein Mass Spectrometry


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