Literature DB >> 30080208

Utilizing 18F-FDG PET/CT Imaging and Quantitative Histology to Measure Dynamic Changes in the Glucose Metabolism in Mouse Models of Lung Cancer.

Milica Momcilovic1, Sean T Bailey2, Jason T Lee3, Charles Zamilpa3, Anthony Jones3, Gihad Abdelhady1, James Mansfield4, Kevin P Francis5, David B Shackelford6.   

Abstract

A hallmark of advanced tumors is a switch to aerobic glycolysis that is readily measured by [18F]-2-fluoro-2-deoxy-D-glucose positron emission tomography (18F-FDG PET) imaging. Co-mutations in the KRAS proto-oncogene and the LKB1 tumor suppressor gene are frequent events in lung cancer that drive hypermetabolic, glycolytic tumor growth. A critical pathway regulating the growth and metabolism of these tumors is the mechanistic target of the rapamycin (mTOR) pathway, which can be effectively targeted using selective catalytic mTOR kinase inhibitors. The mTOR inhibitor MLN0128 suppresses glycolysis in mice bearing tumors with Kras and Lkb1 co-mutations, referred to as KL mice. The therapy response in KL mice is first measured by 18F-FDG PET and computed tomography (CT) imaging before and after the delivery of MLN0128. By utilizing 18F-FDG PET/CT, researchers are able to measure dynamic changes in the glucose metabolism in genetically engineered mouse models (GEMMs) of lung cancer following a therapeutic intervention with targeted therapies. This is followed by ex vivo autoradiography and a quantitative immunohistochemical (qIHC) analysis using morphometric software. The use of qIHC enables the detection and quantification of distinct changes in the biomarker profiles following treatment as well as the characterization of distinct tumor pathologies. The coupling of PET imaging to quantitative histology is an effective strategy to identify metabolic and therapeutic responses in vivo in mouse models of disease.

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Year:  2018        PMID: 30080208      PMCID: PMC6126521          DOI: 10.3791/57167

Source DB:  PubMed          Journal:  J Vis Exp        ISSN: 1940-087X            Impact factor:   1.424


  41 in total

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Journal:  Proc Natl Acad Sci U S A       Date:  2011-12-30       Impact factor: 11.205

Review 2.  Optical imaging: current applications and future directions.

Authors:  Gary D Luker; Kathryn E Luker
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3.  Analysis of lung tumor initiation and progression using conditional expression of oncogenic K-ras.

Authors:  E L Jackson; N Willis; K Mercer; R T Bronson; D Crowley; R Montoya; T Jacks; D A Tuveson
Journal:  Genes Dev       Date:  2001-12-15       Impact factor: 11.361

Review 4.  Understanding the Intersections between Metabolism and Cancer Biology.

Authors:  Matthew G Vander Heiden; Ralph J DeBerardinis
Journal:  Cell       Date:  2017-02-09       Impact factor: 41.582

5.  Gastrointestinal hamartomatous polyposis in Lkb1 heterozygous knockout mice.

Authors:  Hiroyuki Miyoshi; Masayuki Nakau; Tomo-o Ishikawa; Michael F Seldin; Masanobu Oshima; Makoto M Taketo
Journal:  Cancer Res       Date:  2002-04-15       Impact factor: 12.701

6.  Impact of animal handling on the results of 18F-FDG PET studies in mice.

Authors:  Barbara J Fueger; Johannes Czernin; Isabel Hildebrandt; Chris Tran; Benjamin S Halpern; David Stout; Michael E Phelps; Wolfgang A Weber
Journal:  J Nucl Med       Date:  2006-06       Impact factor: 10.057

7.  Preparation and characterization of L-[5-11C]-glutamine for metabolic imaging of tumors.

Authors:  Wenchao Qu; Shunichi Oya; Brian P Lieberman; Karl Ploessl; Limin Wang; David R Wise; Chaitanya R Divgi; Lewis A Chodosh; Lewis P Chodosh; Craig B Thompson; Hank F Kung
Journal:  J Nucl Med       Date:  2011-12-15       Impact factor: 10.057

Review 8.  Maximizing mouse cancer models.

Authors:  Kristopher K Frese; David A Tuveson
Journal:  Nat Rev Cancer       Date:  2007-09       Impact factor: 60.716

9.  Functional genomics reveal that the serine synthesis pathway is essential in breast cancer.

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Journal:  Nature       Date:  2011-08-18       Impact factor: 49.962

10.  TSC1 loss synergizes with KRAS activation in lung cancer development in the mouse and confers rapamycin sensitivity.

Authors:  M-C Liang; J Ma; L Chen; P Kozlowski; W Qin; D Li; J Goto; T Shimamura; D N Hayes; M Meyerson; D J Kwiatkowski; K-K Wong
Journal:  Oncogene       Date:  2009-12-07       Impact factor: 9.867

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  4 in total

1.  Diagnostic Value of 18F-NOTA-FAPI PET/CT in a Rat Model of Radiation-Induced Lung Damage.

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Journal:  Front Oncol       Date:  2022-06-02       Impact factor: 5.738

2.  Inhibition of Granulocytic Myeloid-Derived Suppressor Cells Overcomes Resistance to Immune Checkpoint Inhibition in LKB1-Deficient Non-Small Cell Lung Cancer.

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Journal:  Cancer Res       Date:  2021-04-14       Impact factor: 12.701

Review 3.  Insights Into Leukocyte Trafficking in Inflammatory Arthritis - Imaging the Joint.

Authors:  Julia E Manning; Jonathan W Lewis; Lucy-Jayne Marsh; Helen M McGettrick
Journal:  Front Cell Dev Biol       Date:  2021-03-09

4.  lncRNA GAS6-AS1 inhibits progression and glucose metabolism reprogramming in LUAD via repressing E2F1-mediated transcription of GLUT1.

Authors:  Jing Luo; Huishan Wang; Li Wang; Gaoming Wang; Yu Yao; Kai Xie; Xiaokun Li; Lin Xu; Yi Shen; Binhui Ren
Journal:  Mol Ther Nucleic Acids       Date:  2021-05-01       Impact factor: 8.886

  4 in total

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