PI: MOSMANN, TIM Project: 2R24AI054953-06 Title: Human Immunology Center at the University of Rochester Accession Number: 12131189 ================== NOTICE: THIS ABSTRACT WAS EXTRACTED FROM APPLICATION AND HAS NOT BEEN PROOFED BY AN SRA. WHEN THERE ARE PROBLEMS WITH THE APPLICATION SCANNING PROCESS, THE EXTRACTED TEXT MAY BE INCORRECT OR INCOMPLETE. ================== Rochester Human Immunology Center (RHIC)'s immunological research is typically located in multiple departments, so centralizing expertise in a Human Immunology Center enhances the efficiency and thorough development of robust, standardized assays, the development of innovative methods, and the communication of this expertise to diverse researchers. Rochester is an excellent environment for this type of structure, because of a strong culture of collaboration, an increased emphasis on translational research, a broad, strong research program in basic and clinical immunology, and outstanding research in Optics that facilitates the development of powerful new techniques. The RHIC will acquire, develop and disseminate expertise in cutting-edge techniques in human immunology to enhance the efficiency and comparability of data in basic and clinical research. By accelerating the acquisition of robust methods in many projects, and increasing the value of clinical data obtained under defined, reproducible conditions, the RHIC will provide an excellent return on investment. Expertise in existing and new immunological methods will be acquired by the RHIC Core Laboratory, standard operating protocols (SOPs) will be developed and benchmarked against national standards, and research personnel trained. Techniques that will be developed to a high level include multichromatic (18-color) flow cytometry, ELISPOT and Fluorospot assays for antibodies and cytokines, Luminex protein assays, and production of custom reagents. These techniques will be applied in short-term collaborations to disseminate the methods, and in long-term collaborations (funded outside the RHIC) in clinical trials and other studies. The RHIC will also develop two innovative optical methods for immunological analysis. First, an array-based protein assay using reflectance has the potential to analyze large numbers of samples, rapidly and at low cost. This may be very useful in large-scale analysis of immune responses against multiple related antigens, e.g. in influenza outbreaks. Second, Quantum dots with excellent potential for flow cytometry and in vivo microscopy will be developed. Pilot Projects will be supported on the basis of their potential for developing new immunological technologies or opening up new areas of investigation. Information will be shared among the human immunology research community by discussion groups, training programs, seminars, workshops and a website.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Resource-Related Research Projects (R24)
Project #
5R24AI054953-07
Application #
7690278
Study Section
Special Emphasis Panel (ZAI1-AR-I (J1))
Program Officer
Quill, Helen R
Project Start
2003-09-30
Project End
2013-08-31
Budget Start
2009-09-01
Budget End
2010-08-31
Support Year
7
Fiscal Year
2009
Total Cost
$886,541
Indirect Cost
Name
University of Rochester
Department
Microbiology/Immun/Virology
Type
Schools of Dentistry
DUNS #
041294109
City
Rochester
State
NY
Country
United States
Zip Code
14627
Rebhahn, Jonathan A; Roumanes, David R; Qi, Yilin et al. (2016) Competitive SWIFT cluster templates enhance detection of aging changes. Cytometry A 89:59-70
Nedelkovska, Hristina; Rosenberg, Alexander F; Hilchey, Shannon P et al. (2016) Follicular Lymphoma Tregs Have a Distinct Transcription Profile Impacting Their Migration and Retention in the Malignant Lymph Node. PLoS One 11:e0155347
Aghaeepour, Nima; Chattopadhyay, Pratip; Chikina, Maria et al. (2016) A benchmark for evaluation of algorithms for identification of cellular correlates of clinical outcomes. Cytometry A 89:16-21
Deng, Nan; Mosmann, Tim R (2015) Optimization of the cytokine secretion assay for human IL-2 in single and combination assays. Cytometry A 87:777-83
Kvistborg, Pia; Gouttefangeas, Cécile; Aghaeepour, Nima et al. (2015) Thinking outside the gate: single-cell assessments in multiple dimensions. Immunity 42:591-2
Rebhahn, Jonathan A; Deng, Nan; Sharma, Gaurav et al. (2014) An animated landscape representation of CD4+ T-cell differentiation, variability, and plasticity: insights into the behavior of populations versus cells. Eur J Immunol 44:2216-29
Deng, Nan; Weaver, Jason M; Mosmann, Tim R (2014) Cytokine diversity in the Th1-dominated human anti-influenza response caused by variable cytokine expression by Th1 cells, and a minor population of uncommitted IL-2+IFN?- Thpp cells. PLoS One 9:e95986
Yadav, Amrita R; Mace, Charles R; Miller, Benjamin L (2014) Examining the interactions of the splicing factor MBNL1 with target RNA sequences via a label-free, multiplex method. Anal Chem 86:1067-75
Yadav, Amrita R; Sriram, Rashmi; Carter, Jared A et al. (2014) Comparative study of solution-phase and vapor-phase deposition of aminosilanes on silicon dioxide surfaces. Mater Sci Eng C Mater Biol Appl 35:283-90
Mosmann, Tim R; Naim, Iftekhar; Rebhahn, Jonathan et al. (2014) SWIFT-scalable clustering for automated identification of rare cell populations in large, high-dimensional flow cytometry datasets, part 2: biological evaluation. Cytometry A 85:422-33

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