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Titlebook: Bone Toxicology; Susan Y. Smith,Aurore Varela,Rana Samadfam Book 2017 Springer International Publishing AG 2017 Bone Pharmacology.Bone Phy

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發(fā)表于 2025-3-21 18:06:13 | 只看該作者 |倒序瀏覽 |閱讀模式
期刊全稱Bone Toxicology
影響因子2023Susan Y. Smith,Aurore Varela,Rana Samadfam
視頻videohttp://file.papertrans.cn/190/189716/189716.mp4
發(fā)行地址Comparative bone biology of animal species commonly used in toxicology studies with humans.Special considerations highlighted for Juvenile toxicology.Collection of chapters on bone interactions with o
學(xué)科分類Molecular and Integrative Toxicology
圖書封面Titlebook: Bone Toxicology;  Susan Y. Smith,Aurore Varela,Rana Samadfam Book 2017 Springer International Publishing AG 2017 Bone Pharmacology.Bone Phy
影響因子The content of this book is intended to provide the toxicologist in drug development in the pharmaceutical and biotechnology industries with a broad understanding of bone and its interactions with other organ systems in safety assessments.? The book is divided into three parts.? The first part describes our current understanding of bone biology and its primary regulatory pathways.? Additional chapters address regulatory and study design considerations for incorporating bone end points in toxicology studies, with special consideration being given to juvenile toxicology studies.? This is intended to address recent regulatory requirements to evaluate skeletal development for drugs in development for pediatric populations. ?The second part of the book describes the principal techniques and methods used in bone research; understanding how these end-points are derived is fundamental to their appropriate application.? These first two parts of the book provide thebackground and the means to develop the concepts in part three which describes bone and its interaction with other organ systems.? The unique series of chapters in part three, contributed to by key leaders in their respective fiel
Pindex Book 2017
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Bone Physiology and Biologybasic function attributed to the cellular components, the osteoblasts osteocytes and osteoclasts. In the second section, the interplay between these matrix components and the cells will be discussed in the context of skeletal growth, skeletal adaptation (modeling), and skeletal maintenance (bone rem
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Specific Considerations for Bone Evaluations for Pediatric Therapeuticsin the requirements for juvenile toxicity testing of pharmaceuticals and biopharmaceuticals since 1998, with regulatory agencies commonly requiring nonclinical studies; particular emphasis is often being placed on evaluations of growth and the development of the skeleton. A number of therapeutic cla
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Animal Models in Bone Researchlating those effects into effects in humans is required, because of the skeletal intermediary organization that only exists in vivo. Bone cells function in vivo within the intermediary organizations of modeling, which controls bone growth and shape changes, and remodeling, which controls bone renewa
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Biochemical Markers of Bone Turnovere skeleton level and to investigate potential mechanisms. The goal of this chapter is to describe the biochemical markers of bone turnover, consisting of markers of bone formation and bone resorption, considered important when conducting safety assessments in a preclinical setting. The bone formatio
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Pituitary Hormone-Driven Mechanism for Skeletal Loss over the past decade that these hormones and their receptors have more ubiquitous functions. Organs, such as the skeleton, are regulated by and respond to pituitary hormones, particularly when circulating levels are perturbed in disease. Additionally, certain pituitary hormones are also expressed i
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