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1.
Crit Rev Toxicol ; 40(10): 893-911, 2010 Nov.
Artículo en Inglés | MEDLINE | ID: mdl-20854192

RESUMEN

The public health and environmental communities will face many challenges during the next decade. To identify significant issues that might be addressed as part of the International Life Sciences Institute (ILSI) Health and Environmental Sciences Institute (HESI) scientific portfolio, an expert group of key government, academic, and industry scientists from around the world were assembled in 2009 to map the current and future landscape of scientific and regulatory challenges. The value of the scientific mapping exercise was the development of a tool which HESI, individual companies, research institutions, government agencies, and regulatory authorities can use to anticipate key challenges, place them into context, and thus strategically refine and expand scientific project portfolios into the future.


Asunto(s)
Salud Ambiental/legislación & jurisprudencia , Directrices para la Planificación en Salud , Prioridades en Salud/tendencias , Salud Pública/tendencias , Toxicología/tendencias , Academias e Institutos , Gobierno , Humanos , Industrias , Medición de Riesgo/tendencias
3.
Toxicol Pathol ; 33(1): 136-45, 2005.
Artículo en Inglés | MEDLINE | ID: mdl-15805065

RESUMEN

Transcriptomics can be a valuable aid to pathologists. The information derived from microarray studies may soon include the entire transcriptomes of most cell types, tissues and organs for the major species used for toxicology and human disease risk assessment. Gene expression changes observed in such studies relate to every aspect of normal physiology and pathophysiology. When interpreting such data, one is forced to look "far from the lamp post:' and in so doing, face one's ignorance of many areas of biology. The central role of the liver in toxicology, as well as in many aspects of whole-body physiology, makes the hepatic transcriptome an excellent place to start your studies. This article provides data that reveals the effects of fasting and circadian rhythm on the rat hepatic transcriptome, both of which need to be kept in mind when interpreting large-scale gene expression in the liver. Once you become comfortable with evaluating mRNA expression profiles and learn to correlate these data with your clinical and morphological observations, you may wonder why you did not start your studies of transcriptomics sooner. Additional study data can be viewed at the journal website at (www.toxpath.org). Two data files are provided in Excel format, which contain the control animal data from each of the studies referred to in the text,including normalized signal intensity data for each animal (n=5) in the 6-hour, 24-hour, and 5-day time points. These files are briefly described in the associated 'Readme' file, and the complete list of GenBank numbers and Affymetrix IDs are provided in a separate txt file. These files are available at http://taylorandfrancis.metapress.comlopenurl.asp?genre=journal&issn=0192-6233. Click on the issue link for 33(1), then select this article. A download option appears at the bottom of this abstract. In order to access the full article online, you must either have an individual subscription or a member subscription accessed through (www.toxpath.org).


Asunto(s)
Expresión Génica , Hígado/fisiología , Hígado/fisiopatología , Transcripción Genética , Animales , Ritmo Circadiano , Ayuno , Perfilación de la Expresión Génica , Humanos , Modelos Genéticos , Análisis de Secuencia por Matrices de Oligonucleótidos
4.
Toxicol Pathol ; 32 Suppl 2: 49-58, 2004.
Artículo en Inglés | MEDLINE | ID: mdl-15503664

RESUMEN

Digital microscopy, a comprehensive integration of digital imaging and light microscopy, can assist the pathologist to observe, acquire, record, share, analyze, and manage pathology image data. To lead the activity for establishing new generation digital microscopy capacity, novel concepts and strategies of digital pathology information flow and digital pathology platform were designed to integrate personal digital pathology microscopy workstations and other pathology imaging modalities with centralized data storage/management. In addition, a strategy for Web-enabled interactive telepathology that would permit global capacity was designed. A novel concept of high content pathology was also created to develop an automated tissue microscopy imaging and screening approach. These new concepts, strategies, and approaches guided the development and implementation of a digital pathology platform, a telepathology platform, and automated tissue slide imaging capacity. Digital microscopy photography is now able to replace photographic film in toxicologic pathology. Digital pathology and telepathology platforms can provide a networked environment for multisite, global team participation. Our practice also ascertained the central value of digital microscopy which can provide innovative quantitative pathology information and data mining capability with various imaging biomarkers via advanced digital image processing and pathology informatics; these are now the focus of ongoing development.


Asunto(s)
Aumento de la Imagen/métodos , Procesamiento de Imagen Asistido por Computador , Microscopía/métodos , Patología Clínica/instrumentación , Toxicología/instrumentación , Aumento de la Imagen/instrumentación , Patología Clínica/métodos , Telepatología/instrumentación , Telepatología/métodos , Toxicología/métodos
5.
Toxicol Pathol ; 32 Suppl 1: 13-25, 2004.
Artículo en Inglés | MEDLINE | ID: mdl-15209399

RESUMEN

Toxicogenomics is an emerging multidisciplinary science that will profoundly impact the practice of toxicology. New generations of biologists, using evolving toxicogenomics tools, will generate massive data sets in need of interpretation. Mathematical tools are necessary to cluster and otherwise find meaningful structure in such data. The linking of this structure to gene functions and disease processes, and finally the generation of useful data interpretation remains a significant challenge. The training and background of pathologists make them ideally suited to contribute to the field of toxicogenomics, from experimental design to data interpretation. Toxicologic pathology, a discipline based on pattern recognition, requires familiarity with the dynamics of disease processes and interactions between organs, tissues, and cell populations. Optimal involvement of toxicologic pathologists in toxicogenomics requires that they communicate effectively with the many other scientists critical for the effective application of this complex discipline to societal problems. As noted by Petricoin III et al (Nature Genetics 32, 474-479, 2002), cooperation among regulators, sponsors and experts will be essential for realizing the potential of microarrays for public health. Following a brief introduction to the role of mathematics in toxicogenomics, "data interpretation" from the perspective of a pathologist is briefly discussed. Based on oscillatory behavior in the liver, the importance of an understanding of mathematics is addressed, and an approach to learning mathematics "later in life" is provided. An understanding of pathology by mathematicians involved in toxicogenomics is equally critical, as both mathematics and pathology are essential for transforming toxicogenomics data sets into useful knowledge.


Asunto(s)
Interpretación Estadística de Datos , Matemática , Patología , Farmacogenética , Toxicología , Animales , Expresión Génica , Humanos , Almacenamiento y Recuperación de la Información , Cooperación Internacional , Farmacogenética/métodos , Farmacogenética/tendencias
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