羟基肟酸:广谱化疗药物的研究进展

Q4 Biochemistry, Genetics and Molecular Biology International Journal of Biology and Biomedical Engineering Pub Date : 2020-07-20 DOI:10.46300/91011.2020.14.12
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引用次数: 6

摘要

药物发现的最新进展突出了异羟肟酸与各种金属离子,特别是铁、锌、镁和钙形成络合物的能力,这赋予了它们许多独特的生物学和药理学特性。本文综述了羟肟酸化合物在医药领域的最重要进展,重点介绍了具有抗菌、抗真菌、抗病毒、抗疟、抗结核和抗癌作用的亚磺酰苯胺异羟肟酸(SAHA)及其衍生物及其可能的分子机制。最新的有利进展之一是开发SAHA及其混合物作为有效的抗结核病药物。此外,异羟肟酸与其他药效团基团在一个分子中的结合可以产生大量具有多功能药物前景的新化合物。此外,在过去的十年里,积极的研究重点是将这些化合物制成一类新型抗病毒药物,用于治疗流感、丙型肝炎和其他病毒感染。因此,线性异羟肟酸和环状酸都具有独特的生物活性,可以作为开发有效药物的基础,并通过使用酰胺酶和酰基转移酶的化学和生物转化,通过腈和酰胺进行中试生产。使用微生物制剂从含酰胺的废物衍生原料中合成具有药用价值的化合物也是刺激生物经济的关键因素。
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A review on Hydroxamic Acids: Widespectrum Chemotherapeutic Agents
Recent developments in drug discovery have highlighted the ability of hydroxamic acids to form complexes with various metal ions, in particular iron, zinc, magnesium and calcium, and this imparts them with a number of unique biological and pharmacological properties. This review provides information on the most significant developments of the hydroxamate compounds in the medicinal area with a focus on Suberoylanilide hydroxamic acid (SAHA) and its derivatives with antibacterial, antifungal, antiviral, antimalarial, antitubercular and anticancer effect and their possible molecular mechanisms. One of the latest favorable developments has been on developing SAHA and its hybrids as potent anti-tuberculosis drugs. Moreover, the combination of the hydroxamic acids with other pharmacophore groups in one molecule can lead to the creation of a huge number of new compounds with promising properties as a multifunctional drug. Also, within the last decade, active research has focused to create these compounds into a class of new antiviral drugs designed to treat influenza, hepatitis C, and other viral infections. Thus, both linear hydroxamic acids and cyclic acids having the uniqueness of the set of bioactive properties, have been compiled here and could be looked forward as the basis for the development of effective drugs and forpilot scale productions through nitrile and amides via chemical and biological transformations using amidase and acyltransferase enzymes. Such synthesis of medicinally significant compounds from amide containing waste derived feedstocks using microbial agents is also a key factor for stimulating bioeconomy.
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来源期刊
International Journal of Biology and Biomedical Engineering
International Journal of Biology and Biomedical Engineering Biochemistry, Genetics and Molecular Biology-Biochemistry, Genetics and Molecular Biology (all)
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期刊介绍: Topics: Molecular Dynamics, Biochemistry, Biophysics, Quantum Chemistry, Molecular Biology, Cell Biology, Immunology, Neurophysiology, Genetics, Population Dynamics, Dynamics of Diseases, Bioecology, Epidemiology, Social Dynamics, PhotoBiology, PhotoChemistry, Plant Biology, Microbiology, Immunology, Bioinformatics, Signal Transduction, Environmental Systems, Psychological and Cognitive Systems, Pattern Formation, Evolution, Game Theory and Adaptive Dynamics, Bioengineering, Biotechnolgies, Medical Imaging, Medical Signal Processing, Feedback Control in Biology and Chemistry, Fluid Mechanics and Applications in Biomedicine, Space Medicine and Biology, Nuclear Biology and Medicine.
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