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首页> 外文期刊>Frontiers in Chemistry >Supramolecular Nano-Encapsulation of Anabasine Reduced Its Developmental Toxicity in Zebrafish
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Supramolecular Nano-Encapsulation of Anabasine Reduced Its Developmental Toxicity in Zebrafish

机译:Anabasine的超分子纳米封装在斑马鱼中降低了其发育毒性

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摘要

Anabasine (ANA), a major piperidine alkaloid originally isolated from wild tobacco trees (Nicotiana glauca), has been known to induce serious developmental toxicities such as skeletal deformities in livestock and humans. In this study, we thoroughly investigated the supramolecular nano-encapsulations of ANA by an artificial nanocontainer, cucurbit[7] uril (CB[7]), and examined the influences of the nano-encapsulation on ANA’s inherent developmental toxicities on a zebrafish model. We have shown that CB[7] formed 1:1 host-guest inclusion complexes with ANA via a relatively high binding strength (Ka of (7.45 ± 0.31)×104) in an aqueous solution, via UV-vis and 1H nuclear magnetic resonance spectroscopic titrations, as well as isothermal titration calorimetry titration. As a consequence, CB[7] significantly attenuated the developmental toxicity of ANA on zebrafish in vivo. In contrast, for a comparative purpose, β-CD didn’t exert any influence on the toxicity of ANA due to its weak binding with ANA, which was not even measurable via either spectroscopic methods or ITC titration. This is the first head-to-head comparison of this pair of nanocontainers, CB[7] and β-CD, on their potential roles in influencing the toxicity of guest molecules and the results suggested that CB[7] could become a more promising functional excipient for reducing the inherent toxicities of active pharmaceutical ingredients, particularly alkaloids that may form relatively strong host-guest binding species with the host.
机译:Anabasine(Ana)是最初从野生烟草树上分离的主要哌啶生物碱(Nicotiana glauca),已知诱导牲畜和人类中的严重发育毒性如骨骼畸形。在这项研究中,我们通过人工纳米Container,葫芦(CB [7])彻底研究了对ANA的超分子纳米包封,并检查了纳米封装对斑马鱼模型的固有发育毒性的影响。我们已经表明CB [7]通过UV-Vis和1H核磁共振,通过相对高的粘合强度(ka(7.45±0.31)×104),形成1:1宿主游客包合物,通过紫外线和1H核磁共振光谱滴定,以及等温滴定热量滴定。因此,CB [7]显着减弱了体内斑马鱼对Zebrafish的发育毒性。相反,对于比较目的,由于其与ANA的弱结合,β-CD对ANA的毒性没有任何影响,这甚至不通过光谱方法或ITC滴定来测量。这是该对纳米纳米氏菌属,CB [7]和β-CD的第一个头脑比较,从而对影响客体分子的毒性的潜在作用,结果表明CB [7]可能变得更加有前途用于减少活性药物成分的固有毒性的功能赋形剂,特别是可以形成具有宿主的相对强烈的宿主结合物种的生物碱。

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