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Electrophoresis is a widely used method in the field of life sciences, having multiple practical applications in physical, chemical, biochemical, and molecular biology domains. This book contains 8 chapters depicting various applications of this technique in biochemistry, molecular biology, and physical chemistry. This book presents the link between the exposed method and its applications in a very explicit manner and offers a wide range of practical examples. The book provides not only a vision of actual methods but also their necessary further improvements and suggested developments. Therefore, a particular attention was given to the described techniques as true guidelines in the fields where electrophoresis is recommended, being useful for not only the scientists but also the laboratory clinicians.
Synthetic biology gives us a new hope because it combines various disciplines, such as genetics, chemistry, biology, molecular sciences, and other disciplines, and gives rise to a novel interdisciplinary science. We can foresee the creation of the new world of vegetation, animals, and humans with the interdisciplinary system of biological sciences. These articles are contributed by renowned experts in their fields. The field of synthetic biology is growing exponentially and opening up new avenues in multidisciplinary approaches by bringing together theoretical and applied aspects of science.
This book explores the role of nucleic acid analysis and the advances it has led to in the field of life sciences. The first section is a collection of chapters covering experimental methods used in molecular biology, the techniques adjacent to these methods, and the steps of analysis before and after obtaining raw DNA data. The second section deals with the principles of chromatography, method development, sample preparation, and industrial applications.
This thorough introductory volume presents the background, applications, and stepwise directions for standard DNA and RNA isolation techniques. Unlike a kit chemistry approach, this book provides a breadth of information necessary for junior or non-expert researchers to learn and apply these techniques in their work. An accessible, indispensable how-to guide for researchers in immunology, molecular biology, zoology, forensic science, genetics, botany, neuroscience, physiology, and others.
The book focuses on interesting topics in plant biotechnology and its applications. The first section covers a number of specific medicinal plants and their secondary metabolites using genetic and metabolic engineering. The pharmaceutical uses of these plant bioactive compounds and their applications in treating a variety of diseases including cancer, as well as recent works on in silico and bioinformatic analysis are described. The second section deals with innovative plant molecular pharming approaches and reviews the potential for using various plant host systems to design and produce effective new drugs to treat different illnesses and diseases such as HIV, infectious diseases, and other human and livestock diseases.
Do you want to know the details that should be taken into consideration in order to have accurate conventional and real-time PCR results? If so, this book is for you. Polymerase Chain Reaction for Biomedical Applications is a collection of chapters for both novice and experienced scientists and technologists aiming to address obtaining an optimized real-time PCR result, simultaneous processing of a large number of samples and assays, performing PCR and RT-PCR on cell lysate without extraction of DNA or RNA, detecting false-positive PCR results, detecting organisms in viral and microbial diseases and hospital environment, following safety assessments of food products, and using PCR for introduction of mutations. This is a must-have book for any PCR laboratory.
Belli virüsler dışında, dünyada, bütün biyolojik hayatlarda genetik kodun taşıyıcısı DNA'dır. DNA, RNA'ya kıyasla daha dayanıklı olduğu gibi aynı zamanda daha kolay onarılmaktadır. Bu nedenle DNA, hem varlığın sürdürülmesinde ve hem de çoğalmak için gerekli olan genetik bilginin daha kararlı bir şekilde taşınmasında önemli rol oynamaktadır. Her türün kendine özgü bir gen havuzu bulunmasına rağmen özellikle çevresel etkenler, DNA'da ve/veya DNA'nın paketlendiği kromozomlarda, mutasyon olarak bilinen kalıcı değişikliklere sebep olabilmektedir. Örneğin insanda, somatik hücrelerde, mutasyonlar eğer proto-onkogenlerde, tümör baskılayıcı g...