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Bionanotechnology in Cancer Diagnosis and Therapy

Bionanotechnology in Cancer Diagnosis and Therapy

The cancer research world is looking forward to bionanotechnology to find the best solutions for a complete cure from cancer which is not possible with the current established treatment methods. The past decade of research on nano imaging and drug delivery in cancer has witnessed many interesting papers and reviews but there has not been a concise resource that discusses all fields related to nano cancer research in diagnosis and drug delivery. This book fills this gap and presents the latest bionano research in cancer focusing on nanodiagnostics and nanotherapy. The book is organized into two sections. The section on nanodiagnostics focuses on topics such as diagnostic methods in cancer-related therapy and use of radiolabeled nanoparticles magnetic nanoparticles acoustically reflective nanoparticles X-ray computed tomography and optical nanoprobes for diagnosis. The section on nanotherapy focuses on nanomaterials in chemotherapy magnetic nanoparticles for hyperthermia against cancer phototherapy nanotechnology-mediated radiation therapy nanoparticle-mediated small-RNA deliveries for molecular therapies and theranostics. The book will serve as the gateway to enter the beautiful and elegant field of bionanoscience which is considered the last hope for the fight against cancer and will be a highly useful resource for the students researchers teachers and curious readers working in this field or related fields. | Bionanotechnology in Cancer Diagnosis and Therapy

GBP 154.00
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Mass Spectrometry

Mass Spectrometry

It is estimated that there are about 10 million organic chemicals known and about 100 000 new organic compounds are produced each year. Some of these new chemicals are made in the laboratory and some are isolated from natural products. The structural determination of these compounds is the job of the chemist. There are several instrumental techniques used to determine the structures of organic compounds. These include NMR UV/visible infrared spectroscopy mass spectrometry and X-ray crystallography. Of all the instrumental techniques listed infrared spectroscopy and mass spectrometry are the two most popular techniques mainly because they tend to be less expensive and give us the most structural information. This book is an introductory text designed to acquaint undergraduate and graduate students with the basic theory and interpretative techniques of mass spectrometry. Much of the material in this text has been used over a period of several years for teaching courses in materials characterization and chemical analysis. It presents the mass spectra of the major classes of organic compounds and correlates the fragmentation pattern of each spectrum with the structural features of the compound it represents. This has been done for hydrocarbons organic acids ketones aldehydes esters anhydrides phenols amines and amides. The text discusses the origin of the fragments techniques innovations and applications in mass spectrometry. It is interspersed with many illustrations examples an adequate but not overwhelming bibliography and problems for students. It will serve as a lecture text for a one-semester course in mass spectrometry or can be used to teach the mass spectra portion of a broader course in material characterization and chemical analysis.

GBP 76.99
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