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In vitro cytotoxicity and skin irritation testing of antimicrobial conjugated electrolytes: Interactions with mammalian cells.

机译:抗菌共轭电解质的体外细胞毒性和皮肤刺激性测试:与哺乳动物细胞的相互作用。

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摘要

An estimated 19,000 deaths and ;Until recently, it was unknown if the polymers or oligomers would exhibit similar biocidal activity toward mammalian cells. This work examines the toxicity of CPEs to mammalian cells at three levels: cytoxicity testing of cell monolayers, skin irritation testing of tissues, and intracellular co-localization. Eight CPEs, two PPEs and six OPEs, were selected for these studies based on biocidal activity and diversity of repeat unit number and functional groups.;In the cytotoxicity studies, two cell types were exposed to eight CPEs at concentrations from 1-100 mug/mL for 24 hours. As expected, concentration plays the largest role in determining viability. At intermediate concentrations (∼5-10 mug/mL ), the interplay between light and the light-activated compounds is very important.;To mimic skin exposure in vitro, eight CPEs and two types of electrospun mats were selected for skin irritation testing using tissues derived from human epidermal keratinocytes. PPE-DABCO and PPE-Th were non-irritants up to the highest tested concentrations, 924 mug/mL and 100 mug/mL, respectively. The lack of skin irritation for all substances, as measured by two endpoints, alleviates initial safety concerns for products based on these polymers and oligomers, both in solution and as electrospun mats.;In the localization studies, three compounds (one polymer and two oligomers) were included in growth media above epithelial cell monolayers for 1-4 hours, stained to localize the nearest membrane or organelle, and viewed using fluorescence microscopy. The three compounds were successfully localized to two distinct locations within the cell, indicating that at least two modes of action are possible for these compounds. In all cases, the addition of light changed the effects of the compounds on the mammalian cells. The modes of action of these compounds appear to be governed primarily by length.;For applications below cytotoxic concentrations, these compounds are safe for mammalian cells. The concentrations at which the longer S-OPEs and the DABCO-containing compounds are cytotoxic are much higher than for the shortest S-OPE, PPE-Th, and the remaining two EO-OPEs, thus these compounds have the widest range of concentrations available for potential applications. Although the more aggressive EO-OPEs may find limited applicability for antimicrobial agents, they may find promise for other applications, such as live-cell imaging, intracellular drug delivery, and as anti-cancer agents.
机译:估计有19,000人死亡,直到最近,还不清楚这些聚合物或低聚物是否会对哺乳动物细胞表现出类似的杀生物活性。这项工作从三个层面检查了CPE对哺乳动物细胞的毒性:细胞单层的细胞毒性测试,组织的皮肤刺激性测试以及细胞内共定位。根据杀生物活性以及重复单元数目和功能基团的多样性,选择了8种CPE,2种PPE和6种OPE用于这些研究;在细胞毒性研究中,两种细胞类型暴露于8种CPE,浓度为1-100杯/ mL保持24小时。不出所料,浓度在确定生存力中起着最大的作用。在中等浓度(〜5-10 mug / mL)下,光与光活化化合物之间的相互作用非常重要。为了模拟体外皮肤暴露,选择了八种CPE和两种类型的电纺垫进行皮肤刺激性测试,方法是使用来自人表皮角质形成细胞的组织。在最高测试浓度下,PPE-DABCO和PPE-Th均为非刺激性物质,分别为924杯/毫升和100杯/毫升。通过两个终点测量得出,所有物质均无皮肤刺激性,从而减轻了基于这些聚合物和低聚物的产品在溶液中和作为电纺丝垫的最初的安全性顾虑;在本地化研究中,三种化合物(一种聚合物和两种低聚物) )被包括在上皮细胞单层以上的生长培养基中1-4小时,染色以定位最近的膜或细胞器,并使用荧光显微镜观察。这三种化合物成功地定位在细胞内的两个不同位置,表明这些化合物可能至少有两种作用方式。在所有情况下,光的添加都会改变化合物对哺乳动物细胞的作用。这些化合物的作用方式似乎主要由长度决定。对于低于细胞毒性浓度的应用,这些化合物对哺乳动物细胞是安全的。较长的S-OPE和含DABCO的化合物具有细胞毒性的浓度比最短的S-OPE,PPE-Th和其余两种EO-OPE的浓度高得多,因此这些化合物的可用浓度范围最广用于潜在的应用。尽管更具攻击性的EO-OPEs在抗菌剂中的适用性有限,但它们在其他应用(例如活细胞成像,细胞内药物递送以及作为抗癌剂)中也有望找到希望。

著录项

  • 作者

    Wilde, Kristin N.;

  • 作者单位

    The University of New Mexico.;

  • 授予单位 The University of New Mexico.;
  • 学科 Chemistry Biochemistry.;Engineering Biomedical.;Engineering Chemical.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 130 p.
  • 总页数 130
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:43:29

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