Next-Generation qPCR for the High-Throughput Measurement of Gene Expression in Multiple Leukocyte Subsets

被引:12
|
作者
Adamski, Mateusz G. [1 ,2 ]
Li, Yan [1 ]
Wagner, Erin [1 ]
Yu, Hua [1 ]
Seales-Bailey, Chloe [1 ]
Soper, Steven A. [3 ]
Murphy, Michael [4 ]
Baird, Alison E. [1 ]
机构
[1] Suny Downstate Med Ctr, Dept Neurol, Brooklyn, NY 11203 USA
[2] Jagiellonian Univ, Dept Neurol, Coll Med, Krakow, Poland
[3] Univ N Carolina, Chapel Hill, NC USA
[4] Louisiana State Univ, Baton Rouge, LA 70803 USA
基金
美国国家卫生研究院;
关键词
next-generation qPCR; gene expression; reference genes; normalization; leukocyte subsets; BLOOD MONONUCLEAR-CELLS; HUMAN PERIPHERAL-BLOOD; REAL-TIME PCR; ISCHEMIC-STROKE; T-CELLS; VALIDATION; MICROARRAY; BIOMARKERS; MONOCYTES; PROFILES;
D O I
10.1177/1087057113489882
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Clinical studies of gene expression are increasingly using the whole blood, peripheral blood mononuclear cells, and leukocyte subsets involved in the innate and adaptive immune responses. However, the small amount of RNA available in the clinical setting is a limitation for commonly used methods such as quantitative polymerase chain reactions (qPCR) and microarrays. Our aim was to design 96 gene assays to simultaneously measure gene expression in the whole blood and seven leukocyte subsets using a new-generation qPCR methodhigh-throughput nanofluidic reverse transcription qPCR (HT RT-qPCR). The leukocyte subset purity was 94% to 98% for seven subsets and was less for the T-cell receptor subset (80%). The HT RT-qPCR replicate sample measurements were highly reproducible (r = 0.997, p < 2.2 x 10(-16)), and the Ct values from HT RT-qPCR correlated significantly with those from qPCR. The control genes were differentially expressed across the eight leukocyte subsets in the control subjects (p = 1.3 x 10(-5), analysis of variance). Two analytical methods, absolute and relative, gave concordant results and were significantly correlated (p = 1.9 x 10(-9)). HT RT-qPCR permits the rapid, reproducible, and quantitative measurement of multiple transcripts using minimal sample amounts. The protocol described yielded leukocyte subsets of high purity and identified two analytic methods for use.
引用
收藏
页码:1008 / 1017
页数:10
相关论文
共 50 条
  • [1] High-Throughput Next-Generation Sequencing of Polioviruses
    Montmayeur, Anna M.
    Ng, Terry Fei Fan
    Schmidt, Alexander
    Zhao, Kun
    Magana, Laura
    Iber, Jane
    Castro, Christina J.
    Chen, Qi
    Henderson, Elizabeth
    Ramos, Edward
    Shaw, Jing
    Tatusov, Roman L.
    Dybdahl-Sissoko, Naomi
    Endegue-Zanga, Marie Claire
    Adeniji, Johnson A.
    Oberste, M. Steven
    Burns, Cara C.
    JOURNAL OF CLINICAL MICROBIOLOGY, 2017, 55 (02) : 606 - 615
  • [2] High-Throughput Microdissection for Next-Generation Sequencing
    Rosenberg, Avi Z.
    Armani, Michael D.
    Fetsch, Patricia A.
    Xi, Liqiang
    Tina Thu Pham
    Raffeld, Mark
    Chen, Yun
    O'Flaherty, Neil
    Stussman, Rebecca
    Blackler, Adele R.
    Du, Qiang
    Hanson, Jeffrey C.
    Roth, Mark J.
    Filie, Armando C.
    Roh, Michael H.
    Emmert-Buck, Michael R.
    Hipp, Jason D.
    Tangrea, Michael A.
    PLOS ONE, 2016, 11 (03):
  • [3] High-Throughput Measurement of Binding Kinetics by mRNA Display and Next-Generation Sequencing
    Jalali-Yazdi, Farzad
    Lai, Lan Huong
    Takahashi, Terry T.
    Roberts, Richard W.
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2016, 55 (12) : 4007 - 4010
  • [4] A high-throughput MAC strategy for next-generation WLANs
    Kim, S
    Kim, Y
    Choi, S
    Jang, K
    Chang, JB
    SIXTH IEEE INTERNATIONAL SYMPOSIUM ON A WORLD OF WIRELESS MOBILE AND MULTIMEDIA NETWORKS, PROCEEDINGS, 2005, : 278 - 285
  • [5] High-Throughput SuperSAGE for Digital Gene Expression Analysis of Multiple Samples Using Next Generation Sequencing
    Matsumura, Hideo
    Yoshida, Kentaro
    Luo, Shujun
    Kimura, Eiji
    Fujibe, Takahiro
    Albertyn, Zayed
    Barrero, Roberto A.
    Krueger, Detlev H.
    Kahl, Guenter
    Schroth, Gary P.
    Terauchi, Ryohei
    PLOS ONE, 2010, 5 (08):
  • [6] Automation and miniaturization of high-throughput qPCR for gene expression profiling
    Raveendran, Santhi
    Saeed, Asma
    Kalikiri, Mahesh Kumar Reddy
    Manjunath, Harshitha Shobha
    Al Massih, Alia
    Al Hashmi, Muna
    Al Azwani, Iman
    Kabeer, Basirudeen Syed Ahamed
    Mathew, Rebecca
    Tomei, Sara
    SLAS TECHNOLOGY, 2025, 31
  • [7] Next-Generation High-Throughput Functional Annotation of Microbial Genomes
    Baric, Ralph S.
    Crosson, Sean
    Damania, Blossom
    Miller, Samuel I.
    Rubin, Eric J.
    MBIO, 2016, 7 (05):
  • [8] Rapid, high-throughput library preparation for next-generation sequencing
    Grunenwald, Haiying
    Baas, Brad
    Caruccio, Nicholas
    Syed, Fraz
    NATURE METHODS, 2010, 7 (08) : III - IV
  • [9] Rapid, high-throughput library preparation for next-generation sequencing
    Haiying Grunenwald
    Brad Baas
    Nicholas Caruccio
    Fraz Syed
    Nature Methods, 2010, 7 : iii - iv
  • [10] MCCA: A high-throughput MAC strategy for next-generation WLANs
    Kim, Seongkwan
    Choi, Sunghyun
    Kim, Youngsoo
    Jang, Kyunghun
    IEEE WIRELESS COMMUNICATIONS, 2008, 15 (01) : 32 - 39