SMALL ANIMAL IMAGING FACILITY (SAIF) The mission of the Small Animal Imaging Facility (SAIF) is to advance cancer research by providing cancer center members with powerful imaging technologies and the expertise necessary to successfully integrate imaging sciences into preclinical cancer research. Dr. John D. Hazle serves as director, and Dr. James A. Bankson serves as co-director. The facility includes faculty experts, specially trained staff, and state-of-the-art imaging instrumentation, most of which is not available anywhere else in the cancer center. The SAIF has 3 separate sites across the campus to ensure convenient access to all cancer center members. SAIF imaging laboratories are located on the North Campus adjacent to and contiguous with the small animal vivarium, inside the South Campus Vivarium, and in South Campus Research Building #3. SAIF faculty and staff are available to support all aspects of imaging in preclinical cancer research, from proposal and experiment design through data acquisition, analysis, interpretation, and presentation. Currently, the SAIF has 21 unique pieces of imaging equipment optimized for small animals and a full complement of ancillary equipment for support of animals before, during, and after experiments. The imaging equipment includes 3 high-field magnetic resonance scanners, a low-field permanent magnet magnetic resonance scanner, a dynamic nuclear polarization system for generating hyperpolarized magnetic resonance agents, a microcomputed tomography system, a positron emission tomography/single-photon emission computed tomography/computed tomography scanner, 2 small- animal radiation research platforms, 2 ultrasound systems (1 capable of photoacoustic imaging), a dedicated photoacoustic imaging system, a cabinet X-Ray system, 6 optical imaging systems, and a prototype magnetic relaxometry system (on loan as part of a research agreement). During this grant period, MD Anderson has funded $5,918,344 in capital equipment, and approximately $1.1M has been obtained through NCI Shared or High-end Instrumentation grants. Annual operational funding is $195,521 (20%) from the CCSG, $719,742 (74%) from program income, and $53,413 (6%) of institutional support. During this 6-year grant period, the SAIF served a total of 250 cancer center members, including investigators from all 16 CCSG programs. A total of 87% of all usage was peer-review funded, and the SAIF is requesting $200,057 (20%) from the CCSG in grant Yr44. Overall use has increased 2.7-fold in Yr42 over the average use in the prior funding cycle. The SAIF supported 181 peer-reviewed publications during this reporting period, with 51 (28%) published in journals with IF >10 and 119 (66%) published in those with IF >5.
The specific aims are:
Aim 1 : To maintain a broad range of state-of-the-art imaging instrumentation and dedicated staff that support the preclinical imaging needs of cancer center members;
Aim 2 : To provide consultation, training and support in the planning, acquisition, and analysis of imaging data;
and Aim 3 : To develop and implement new technologies and methods that improve the accuracy and precision of quantitative imaging biomarkers in preclinical cancer research.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Center Core Grants (P30)
Project #
2P30CA016672-43
Application #
9794659
Study Section
Subcommittee I - Transistion to Independence (NCI)
Project Start
Project End
Budget Start
2019-07-01
Budget End
2020-06-30
Support Year
43
Fiscal Year
2019
Total Cost
Indirect Cost
Name
University of Texas MD Anderson Cancer Center
Department
Type
DUNS #
800772139
City
Houston
State
TX
Country
United States
Zip Code
77030
Assi, Rita; Garcia-Manero, Guillermo; Ravandi, Farhad et al. (2018) Addition of eltrombopag to immunosuppressive therapy in patients with newly diagnosed aplastic anemia. Cancer 124:4192-4201
Alhuraiji, Ahmad; Kantarjian, Hagop; Boddu, Prajwal et al. (2018) Prognostic significance of additional chromosomal abnormalities at the time of diagnosis in patients with chronic myeloid leukemia treated with frontline tyrosine kinase inhibitors. Am J Hematol 93:84-90
Luo, Yangkun; Xu, Yujin; Liao, Zhongxing et al. (2018) Automatic segmentation of cardiac substructures from noncontrast CT images: accurate enough for dosimetric analysis? Acta Oncol :1-7
Zhao, Na; Cao, Jin; Xu, Longyong et al. (2018) Pharmacological targeting of MYC-regulated IRE1/XBP1 pathway suppresses MYC-driven breast cancer. J Clin Invest 128:1283-1299
Liu, Yihua; Weber, Zachary; San Lucas, F Anthony et al. (2018) Assessing inter-component heterogeneity of biphasic uterine carcinosarcomas. Gynecol Oncol 151:243-249
Joint Head and Neck Radiotherapy-MRI Development Cooperative (2018) Dynamic contrast-enhanced magnetic resonance imaging for head and neck cancers. Sci Data 5:180008
Jensen, Garrett; Tao, Randa; Eng, Cathy et al. (2018) Treatment of primary rectal adenocarcinoma after prior pelvic radiation: The role of hyperfractionated accelerated reirradiation. Adv Radiat Oncol 3:595-600
Staffas, Anna; Burgos da Silva, Marina; Slingerland, Ann E et al. (2018) Nutritional Support from the Intestinal Microbiota Improves Hematopoietic Reconstitution after Bone Marrow Transplantation in Mice. Cell Host Microbe 23:447-457.e4
Boddu, Prajwal; Borthakur, Gautam; Koneru, Mythili et al. (2018) Initial Report of a Phase I Study of LY2510924, Idarubicin, and Cytarabine in Relapsed/Refractory Acute Myeloid Leukemia. Front Oncol 8:369
Takahashi, Nobuaki; Chen, Hsing-Yu; Harris, Isaac S et al. (2018) Cancer Cells Co-opt the Neuronal Redox-Sensing Channel TRPA1 to Promote Oxidative-Stress Tolerance. Cancer Cell 33:985-1003.e7

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