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Titlebook: Cancer Drug Delivery Systems Based on the Tumor Microenvironment; Yasuhiro Matsumura,David Tarin Book 2019 Springer Japan KK, part of Spri

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On Relevant Items for SuperK-Gd Physics,icelles. Polymeric micelles are formed by various driving forces such as hydrophobic interactions, electrostatic interactions, metal complex formation. Polymeric micelles are useful as a drug delivery system (DDS) because they can stably encapsulate a variety of compounds and can control release of
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https://doi.org/10.1007/978-3-662-63294-9ncapsulation of many drugs into it. Notably, the liposome is suitable as a targetable drug carrier, since it can be easily conjugated with functional pilot molecules such as antibody, peptide, sugar chain, etc., on its surface. These liposomes are referred to as active targeting liposomes, and they
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Neutrinos in der Astrophysik und Kosmologie,f a tumor as an anchor and launchpad for disseminating chemotherapeutic agents within a tumor. It also utilizes a phenomenon called the Enhanced Permeability and Retention (EPR) effect, described in this chapter and elsewhere in this book, to localize and concentrate the effect of the therapy on the
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Lothar Oberauer,Judith Oberauertroma that inhibits the penetration of anticancer agents. Many types of cancer form varying degrees of stroma, which generally increases with disease progression. Noninvasive imaging methods for assessing the degree of stroma formation in individual cancers are useful for diagnosing malignancy poten
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Yasuhiro Matsumura,David TarinIntroduces drug design based on cancer pathophysiology.Describes the benefits of a drug delivery system that integrates nanotechnology, biotechnology, and nano biotechnology.Explains the new cancer dr
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echnology, and nano biotechnology.Explains the new cancer dr.This book proposes the importance of new systems of drug design and delivery based on cancer pathophysiology in addition to cancer molecular and cellular biology. The current studies based on molecular and cellular biology while ignoring p
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