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Titlebook: Anticancer Plants: Mechanisms and Molecular Interactions; Volume 4 Mohd Sayeed Akhtar,Mallappa Kumara Swamy Book 2018 Springer Nature Singa

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https://doi.org/10.1007/978-3-322-92416-2 of interactions. The best binding affinity is chosen based on the lowest binding energy, total intermolecular energy and highest number of hydrogen bonds to target the phytocompounds. Thus, the aim of this chapter is to focus on the potentiality of the phytocompound based drug discovery for the tre
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Bernd Heidenreich,Walter Mühlhausensease diagnosis and drug discovery. The present chapter focuses on the recent progresses in metabolomics which have transformed it to become a robust systems biology tool in studying both chemical and biochemical events that contribute to the cancer prevention activities of plant preparations or the
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https://doi.org/10.1007/978-3-322-83350-1puter-aided drug design) studies are increasingly being used in both industries and universities. They involve an understanding of the molecular interactions from both qualitative and quantitative points of view. These methods generate and manipulate three-dimensional (3D) molecular structures, calc
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Heinrich von Brentano (1904–1964) signaling pathways inside cancer cells. This emerging class of drugs is called as mitocans that affect the activities related to mitochondria, such as hexokinase inhibition, electron transport/respiratory chain blockage, activation of the mitochondrial membrane permeability transition pore targetin
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,Vielfalt in der Europäischen Union, new plants with anticancer potential. Also, certain agents that have failed in earlier clinical studies are considered for evaluation to obtain novel anticancer drugs using bioinformatics approaches and this field has triggered more interest among researchers in recent years. The aim of this chapte
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