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Applied Biological and Physicochemical Activity of Isoquinoline Alkaloids: Oxoisoaporphine and Boldine

机译:异喹啉生物碱的应用生物化学和理化活性:氧代异吗啡和苯丙氨酸

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摘要

The aim of this study was to determine the electronic influence of substituent groups and annelated rings such as oxazole-oxazinone on the physicochemical and photoprotection, antioxidant capacity, toxicity and singlet oxygen photosensitization biological properties of isoquinoline alkaloid frameworks. Thus, oxoisoaporphine derivatives >1–>5 and 3-azaoxoisoaporphine (>6), some of them with phenolic structures, did not present any antioxidant capacity, possibly either by formation of keto-enol tautomerism species or the formation of unstable free radicals. Due to the singlet oxygen quantum yields (ΦΔ) near to unity, and greater photostability than phenalenone, oxoisoaporphines >4–>6 may be considered as photosensitizers for singlet oxygen production and can be used as new universal study tools. The biological application as antibacterial agents is an important and possible tool in the study of compounds with low cytotoxicity and high reactivity in antineoplastic chemotherapy. On the other hand, when boldine and its annelated derivatives >B1–>4 are irradiated, a photoprotector effect is observed (SPF = 2.35), even after 30 minutes of irradiation. They also act as photoprotectors in cell fibroblast cultures. No hemolysis was detected for boldine hydrochloride and its salts without irradiation. In solutions irradiated before incubation (at concentrations over 200 ppm) photoproducts were toxic to the nauplii of Artemia salina.
机译:这项研究的目的是确定取代基和诸如恶唑-恶嗪酮之类的退火环对异喹啉生物碱骨架的理化和光保护,抗氧化能力,毒性和单线态氧光敏生物特性的电子影响。因此,其中一些具有酚类结构的氧代异aporphine衍生物> 1 – > 5 和3-氮杂氧代异aporphine(> 6 )没有抗氧化能力,可能是通过形成酮-烯醇互变异构物种或不稳定的自由基形成。由于单重态氧的量子产率(ΦΔ)接近于一,并且光稳定性比酚醛酮更高,因此氧异异磷醚> 4 – > 6 可以被认为是产生单重态氧的光敏剂,可以用作新的通用学习工具。在研究抗肿瘤化学治疗中具有低细胞毒性和高反应性的化合物时,作为抗菌剂的生物学应用是重要且可能的工具。另一方面,辐照丁二烯及其退火衍生物> B1 – > 4 时,即使辐照30分钟也能观察到光保护作用(SPF = 2.35)。它们还在细胞成纤维细胞培养物中充当光保护剂。未经照射,未检测到盐酸丁香及其盐的溶血现象。在孵育前(浓度超过200 ppm)照射的溶液中,光产物对卤虫无节幼体有毒。

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