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2.
Mol Imaging Biol ; 13(3): 493-499, 2011 06.
Artigo em Inglês | MEDLINE | ID: mdl-20617390

RESUMO

PURPOSE: The purpose of this paper is to validate a rapid and cost-effective ex vivo technique, microCT-based virtual histology, as an alternative to MRI imaging for assessing the therapeutic response in genetically engineered mouse models of cancer. PROCEDURES: All animal procedures were conducted in accordance with the Guidelines for the Care and Use of Laboratory Animals and were approved by the Institutional Animal Care and Use Committee (IACUC) at the University of Texas Health Science Center at San Antonio. MRI imaging was performed on 6-week-old, bortezomib-treated genetically engineered Patched1, p53 mice that recapitulate the characteristics of human medulloblastoma. After MRI scans, the same mice were euthanized to collect brain or spine samples for virtual histology staining followed by microCT scanning. RESULTS: Nine-micrometer resolution ex vivo micro X-ray computed tomography (microCT)-based virtual histology images were qualitatively reflective of high-field live animal images obtained with magnetic resonance imaging (MRI) and histopathology. Cerebellar volumes on microCT-based virtual histology correlated closely with MRI cerebellar volumes (R = 0.998). MRI and microCT-based virtual histology both indicated a significant difference between cerebellar volumes of untreated and treated mice (p = 0.02 and p = 0.04, respectively). The ex vivo microCT method also allowed a 7,430-fold improvement in voxel resolution (voxel volume of 729 µm³ for 9-µm isometric resolution microCT vs. 5,416,800 µm³ for 400 × 111 × 122 µm resolution MRI) at a 28% cost savings ($400 vs. $555 per animal). CONCLUSION: The ex vivo, en bloc technique of microCT-based virtual histology matched MRI in reflecting histopathology. MicroCT-based virtual histology proved to be a more cost-effective technique and less labor-intensive. On the other hand, MRI provides ability to perform in vivo imaging, faster scanning and lower radiation dose by sacrificing the spatial resolution. Thus, both in vivo MRI and ex vivo microCT-based virtual histology are effective means of quantitatively evaluating therapeutic response in preclinical models of cerebellar tumors including the childhood cancer, medulloblastoma.


Assuntos
Meduloblastoma/patologia , Interface Usuário-Computador , Microtomografia por Raio-X/métodos , Animais , Ácidos Borônicos/farmacologia , Ácidos Borônicos/uso terapêutico , Bortezomib , Cerebelo/efeitos dos fármacos , Cerebelo/patologia , Imageamento por Ressonância Magnética , Meduloblastoma/tratamento farmacológico , Camundongos , Tamanho do Órgão/efeitos dos fármacos , Pirazinas/farmacologia , Pirazinas/uso terapêutico , Carga Tumoral/efeitos dos fármacos
3.
Mol Cancer Ther ; 9(8): 2354-64, 2010 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-20663932

RESUMO

Genetically engineered mouse models (GEMM) of cancer are of increasing value to preclinical therapeutics. Optical imaging is a cost-effective method of assessing deep-seated tumor growth in GEMMs whose tumors can be encoded to express luminescent or fluorescent reporters, although reporter signal attenuation would be improved if animals were fur-free. In this study, we sought to determine whether hereditable furlessness resulting from a hypomorphic mutation in the Hairless gene would or would not also affect immune competence. By assessing humoral and cellular immunity of the SKH1 mouse line bearing the hypomorphic Hairless mutation, we determined that blood counts, immunoglobulin levels, and CD4+ and CD8+ T cells were comparable between SKH1 and the C57Bl/6 strain. On examination of T-cell subsets, statistically significant differences in naïve T cells (1.7 versus 3.4 x 10(5) cells/spleen in SKH1 versus C57Bl/6, P = 0.008) and memory T cells (1.4 versus 0.13 x 10(6) cells/spleen in SKH1 versus C57Bl/6, P = 0.008) were detected. However, the numerical differences did not result in altered T-cell functional response to antigen rechallenge (keyhole limpet hemocyanin) in a lymph node cell in vitro proliferative assay. Furthermore, interbreeding the SKH1 mouse line to a rhabdomyosarcoma GEMM showed preserved antitumor responses of CD56+ natural killer cells and CD163+ macrophages, without any differences in tumor pathology. The fur-free GEMM was also especially amenable to multiplex optical imaging. Thus, SKH1 represents an immune competent, fur-free mouse strain that may be of use for interbreeding to other genetically engineered mouse models of cancer for improved preclinical studies.


Assuntos
Avaliação Pré-Clínica de Medicamentos/métodos , Engenharia Genética , Imunocompetência/imunologia , Alopecia/imunologia , Alopecia/patologia , Animais , Contagem de Células Sanguíneas , Modelos Animais de Doenças , Feminino , Imageamento Tridimensional , Imunidade Celular/imunologia , Imunidade Humoral/imunologia , Imunização , Subpopulações de Linfócitos/imunologia , Masculino , Camundongos , Camundongos Pelados , Camundongos Endogâmicos C57BL , Neoplasias/imunologia , Neoplasias/patologia , Linfócitos T/imunologia
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