الصفحة 11
الصفحة 11
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Inflammation and cancer : Methods and protocols

Discusses the latest findings on the development and characterization of representative research models for chronic immune-based diseases and inflammation-associated cancers.And covers biochemical, molecular, and cellular biological techniques that are commonly used to dissect the molecular mechanisms and cellular processes that drive the pathogenesis of certain disease states.

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Infections à papillomavirus : État des connaissances, pratiques et prévention vaccinale = Human papillomavirus infections : Current knowledge, practices and vaccination prevention

The impact of papillomavirus (HPV) infection is considerable. More than one in two women has been exposed to HPV in her lifetime and around 10% will develop a chronic infection. Of these, 20% will develop cervical cancer in the absence or failure of screening. In France, high-risk HPV infection causes 80,000 precancerous lesions, 3,400 cervical cancers and the death of 1,000 women every year. Smear screening performed at a regular rate and according to quality standards has resulted in a significant decrease in incidence and mortality over the past 20 years. However, despite this considerable success, the so-called preventable disease has not been eradicated; testing is a complex process that only benefits part of the population while those who benefit endure its weaknesses. Optimization of screening and treatment is now made possible by the use of innovative techniques including the smear in liquid suspension, the HPV test, and soon viral genotyping and molecular markers guaranteeing maximum protection. Because cervical cancer is the result of chronic HPV infection, we already have the extraordinary chance to prevent it with a prophylactic vaccine. This progress will have a major impact on our practices as it happens in a poorly prepared medico-sociological environment. This resolutely practical and educational book provides an overview of knowledge and perspectives on HPV infection and its associated pathologies while deciphering the new challenges and practices in the vaccine era.

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Infection Control in the Intensive Care Unit

Infection Control in the Intensive Care Unit has been entirely rewritten in this second edition. All statements are justified by the best available evidence, avoiding unsubstantiated expert opinion. The book contains a new section dedicated to the microbiology of the critically ill, specifically, how to process and interpret surveillance cultures to distinguish the ‘normal’ from the ‘abnormal’ carrier state. There are five totally new chapters dealing with evidence-based infection control molecular techniques for outbreak analysis; clinical virology in neonatal, paediatric and adult intensive care; the six basic principles of the therapy of an infection; and the role of the pharmacist in infection control. Attention is given to special topics such as nutrition, gut mucosal protection and the control of antimicrobial resistance. The addition of enteral to parenteral antimicrobials contributes to the control of multi-resistant micro-organisms. This completely revised second edition is a ‘must have’ for anyone requiring in depth knowledge in the ever expanding field of infection control.

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In Vivo Imaging of Cancer Therapy

In Vivo Imaging of Cancer Therapy addresses a variety of cutting-edge imaging techniques, including their use for best practice, and provides examples of results found in both pre-clinical and clinical studies. This comprehensive text covers the entire spectrum of in vivo imaging for oncology, including current approaches to detailed anatomic measurements, MR and optical spectroscopy, and molecular imaging techniques requiring exogenously administered imaging agents. The challenges and approaches to quantification are also outlined. The authors describe technologies and methods that are currently clinically available, and many that are still in a developmental stage or useful only in animal studies.

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Improvement of Crop Plants for Industrial End Uses

This book provides concerns useful to promote an increase of the productivity of crops by using functional genomics (to understand the regulation of plant metabolism at molecular, cellular and whole plants), and the improvement of photosynthetic efficiency (to design new plants with enhanced raw materials percent and recovery).

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Immunoinformatics

Immunoinformatics is an emerging subdiscipline of bioinformatics. It utilizes mathematics, information science, computer engineering, genomics, proteomics and immunological methods to bridge immunology and informatics. Similar to bioionformatics which became a driving force in genome research, immunoinformatics enables data-driven research strategies and systems approaches that aim at understanding the networks regulating the immune system. Considering the breath of topic, Immunoinformatics was composed to provide a cross-section of research ranging from data integration, epitope predictions to systems level applications. In ten chapters experts in the field introduce and discuss research strategies for immunologists and bioinformaticians who wish to endeavour existing and new approaches to gain insight into the workings of the immune system.

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Immunogenetics: Methods and Protocols

Explores techniques for working in the field of immunogenetics, i.e. fundamental and translational research into the adaptive immune receptor repertoire. Many chapters are dedicated to lab protocols, bioinformatics, and immunoinformatics analysis of high-resolution immunome analysis, exemplified by numerous applications. Additionally, the newest technological variations on these protocols are discussed, including non-amplicon, single-cell, and cell-free strategies. Written for the highly successful Methods in Molecular Biology series, chapters include introductions to their respective topics, lists of the necessary materials and reagents, step-by-step, readily reproducible laboratory protocols, and tips on troubleshooting and avoiding known pitfalls.

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Immune receptors : Methods and protocols

Explores immune cell receptors that are used in the detection of microbes, either by binding directly to non-self molecules or through indirectly sensing microbe-associated cellular disturbances. The covers methods for studying receptor-ligand interactions at both molecular and cellular levels; methods to create and characterize novel antibody reagents; and methods to characterize the molecular processes that lead to adaptive receptor maturation. This book also contains chapters that look at high-throughput strategies that describe the diversity of immune receptors and cells. Written in the highly successful Methods in Molecular Biology series format, chapters include introductions to their respective topics, lists of the necessary materials and reagents, step-by-step, readily reproducible laboratory protocols, and tips on troubleshooting and avoiding known pitfalls.

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Immune mediators in cancer : Methods and protocols

Provides a comprehensive collection of classic and cutting-edge methodologies as well as bioinformatics and genome-editing approaches that are used to quantify immune mediators and analyze their function and biological activity in cancer cells and tissues. Beginning with a section on the detection of immune mediators in samples, the volume continues with sections covering cytokine bioassays, the expression and regulation of immune mediators in cancer cells, and methods to navigate the enormous datasets created by modern DNA and RNA sequencing and proteomic technology. Written in the highly successful Methods in Molecular Biology series format, chapters include introductions to their respective topics, lists of the necessary materials and reagents, step-by-step, readily reproducible laboratory protocols, and tips on troubleshooting and avoiding known pitfalls.

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Immobilisation of DNA on Chips II

DNA chips are gaining increasing importance in different fields ranging from medicine to analytical chemistry with applications in the latter in food safety and food quality issues as well as in environmental protection. In the medical field, DNA chips are frequently used in arrays for gene expression studies to identify diseased cells due to over- or under-expression of certain genes, to follow the response of drug treatments, or to grade cancers), for genotyping of individuals, for the detection of single nucleotide polymorphisms, point mutations, and short tandem reports, or moreover for genome and transcriptome analyses in the quasi post-genomic sequencing era. Furthermore, due to some unique properties of DNA molecules, self-assembled layers of DNA are promising candidates in the field of molecular electronics.the main focus of these two volumes is on the immobilization chemistry, considering the various aspects of the immobilization process itself, since different types of nucleic acids, support materials, surface activation chemistries and patterning tools are of key concern.

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Immediate Early Genes in Sensory Processing, Cognitive Performance and Neurological Disorders

This book reviews and details experiments and theories that challenge the reader to expand their view on how IEG research is currently being used to advance our understanding of static and active brain circuits, enabling the processing, acquisition and storage of new information in healthy systems. In addition, we explore roles of IEGs in clinical neuropathology, with potential utility in molecular modeling, to highlight, on a go-forward basis, candidate mechanisms for novel targets in clinical intervention.

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Imaging in Drug Discovery and Early Clinical Trials

Efficient tools for the selection and validation of drug targets both at the preclinical and clinical level are required. Non-invasive imaging and in particular molecular imaging methods are becoming essential technologies to support drug discovery and dvelopment. Imaging provides structural, functional, metabolic and molecular readouts that are being applied to characterize a disease phenotype (diagnosis), to elucidate molecular mechanisms involved, to evaluate drug efficacy and safety, and to identify potential biomarkers of the drug's mechanism-of-action, efficacy and safety. Non-invasive imaging techniques constitute a bridge between preclinical and clinical drug evaluation. In this monograph the contribution of imaging modalities to the various stages of drug discovery and development, from early target validation to their use in clinical development programs, is described. Chapters are devoted to the description of the drug discovery process as such, to the various imaging modalities being used both preclinically and clinically, to applications of imaging during the optimization of a lead compound (addressing issues such as bioavailability and efficacy) and during the drug safety evaluation.

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Imaging Cellular and Molecular Biological Functions

Imaging cellular and molecular biological function’ provides a unique selection of essays by leading experts, aiming at scientist and student alike who are interested in all aspects of modern imaging, from its application and up-scaling to its development. Indeed the philosophy of this volume is to provide student, researcher, PI, professional or provost the means to enter this applications field with confidence, and to construct the means to answer their own specific questions.

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I recettori dellangiotensina : Dalla biologia molecolare alla terapia con gli antagonisti recettoriali

Describes all the structural and functional characteristics of angiotensin receptors, with particular reference to their molecular and pharmacological properties. The therapeutic applications of AT1 receptor antagonists and the results obtained from large trials are also discussed, especially in arterial hypertension, heart failure, diabetic nephropathy and stroke.

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Hypoxia and Exercise

The 14th volume in the series will focus on cutting edge research at the interface of hypoxia and exercise. The work will cover the range from molecular mechanisms of muscle fatigue and muscle wasting to whole body exercise on the world’s highest mountains. State of the art papers on training at high altitude for low altitude athletic performance will also be featured.

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Hydrogen bonding : New insights

Hydrogen Bonding – New Insights is an extensive text which takes numerous examples from experimental studies and uses these to illustrate theoretical investigations to allow a greater understanding of hydrogen bonding phenomenon. The most important topics in recent studies are considered including: *Intra-molecular H-bonds *Differences between H-bond and van der Waals interactions from one side and covalent bonds from the other *Bader theory to analyze H-bonding *Influence of weak H-bonds upon structure and function of biological molecules *H-bonds in crystal structures

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Hydrogen bonded polymers

Control of polymeric structure is among the most important endeavours of modern macromolecular science. In particular, tailoring the positioning and strength of intermolecular forces within macromolecules by synthetic me- odsandthusgaining structuralcontrolover the'nalpolymeric materials has become feasible, resulting in the ?eld of supramolecular polymer science. - sides other intermolecular forces, hydrogen bonds are unique intermolecular forces enabling the tuning of material properties via self-assembly processes, The important contribution of hydrogen bondstotheareaofsupramole- lar polymer chemistry is de'nitely outstanding, most of all since the potency of hydrogen-bonding systems has been found to be unique in relation to other supramolecular interactions.

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Hydrogels : Design, Synthesis and Application in Drug Delivery and Regenerative Medicine

Hydrogels are crosslinked, macromolecular polymeric materials arranged in a three-dimensional network, which can absorb and retain large amounts of water. Hydrogels are commonly used in clinical practice and experimental medicine for a wide range of applications, including drug delivery, tissue engineering and regenerative medicine, diagnostics, cellular immobilization, separation of biomolecules or cells, and barrier materials to regulate biological adhesions.

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Hybrid Methods of Molecular Modeling

Hybrid Methods of Molecular Modeling is a self-contained advanced review volume. It provides a step by step derivation of the consistent theoretical picture of hybrid modeling methods and a thorough analysis of the concepts and current practical methods of hybrid modeling based on this theory. The book presents its material sequentially, paying attention both to the physical soundness of the approximations used and to the mathematical rigor necessary for the practical development of the robust modeling code.

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Human Nucleotide Expansion Disorders

Human neurological and neuromuscular disorders caused by nucleotide expansion, first discovered in 1991, are the focus of growing interest of practicing physicians and of interested biomedical researchers. This volume represents a comprehensive and up-to-date description of many of the better-studied disorders. The expert authors discuss molecular, clinical and pathological aspects of the diseases as well as our current understanding of their underlying mechanisms. Of special interest are ideas and initial results of the different therapeutic strategies that can be employed to overcome some of the disorders. As a summary of the state-of-the-art research in this field, this book is of value to human geneticists, molecular biologists and biochemists as well as to practicing neurologists and pediatricians.

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