Morphological aspects of interactions between microparticles and mammalian cells: intestinal uptake and onward movement

Katharine E. Carr , Sharon H. Smyth , Melissa T. McCullough , John F. Morris , Siobhan M. Moyes
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引用次数: 104

Abstract

Uptake of ingested microparticles into small intestinal tissues and on to secondary organs has moved from being an anecdotal phenomenon to a recognised and quantifiable process, which is relevant to risk assessment of accidental exposure, treatment of multi-organ dysfunction syndrome and therapeutic uses of encapsulated drug or vaccine delivery. This review puts in context with the literature the findings of a morphological study of microparticle uptake, using two approaches.

The first is a rat in vivo in situ model, appropriate to a study rooted in the exposure of human populations to microparticles. Latex microspheres 2 μm in diameter are the principal particle type used, although others are also investigated. Most data are based on microscopy, but analysis of macerated bulk tissue is also useful. Uptake occurs at early time points after a single dose and is shown to take place almost entirely at villous rather than Peyer's patch sites: however, multiple feeding and therefore a longer time-span produces a higher proportion of particles associated with Peyer's patches, albeit for very small total uptake at those later time points. Uptake is less affected by species, fasting and immunological competence than by age and reproductive status.

The second approach uses in vitro methods to confirm the role of intercellular junctions in particle uptake. Particle-associated tight junction opening, in a Caco-2 monolayer, is reflected in changes in transepithelial resistance and particle uptake across the epithelial monolayer: Tight junction opening and particle uptake are both increased further by external irradiation, ethanol and sub-epithelial macrophages, but reduced by exposure to ice. An M cell model has looser tight junctions than Caco-2 cells, but a similar level of particle uptake. These results, along with the changes seen in junctional proteins after particle addition, confirm the role of tight junctions in uptake but suggest that adhering junctions are also important.

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微粒与哺乳动物细胞相互作用的形态学方面:肠道摄取和向前运动
摄入的微粒进入小肠组织并进入第二器官,已从一种传闻现象转变为一种公认和可量化的过程,这与意外接触的风险评估、多器官功能障碍综合征的治疗以及胶囊化药物或疫苗递送的治疗用途有关。这篇综述在文献的背景下提出了微粒摄取形态学研究的发现,使用两种方法。第一个是大鼠体内原位模型,适合于基于人类暴露于微粒的研究。直径2 μm的乳胶微球是使用的主要颗粒类型,尽管其他颗粒也在研究中。大多数数据是基于显微镜,但分析浸泡的大块组织也是有用的。摄取发生在单次给药后的早期时间点,并且几乎完全发生在绒毛而不是Peyer贴片部位:然而,多次给药和因此较长的时间跨度会产生与Peyer贴片相关的更高比例的颗粒,尽管在这些较晚的时间点的总摄取很小。摄取受物种、禁食和免疫能力的影响较小,而受年龄和生殖状况的影响较小。第二种方法使用体外方法来确认细胞间连接在颗粒摄取中的作用。在Caco-2单分子层中,颗粒相关的紧密连接开放反映在跨上皮单层的上皮阻力和颗粒摄取的变化中:外部照射、乙醇和亚上皮巨噬细胞均进一步增加紧密连接开放和颗粒摄取,但暴露于冰会减少。M细胞模型比Caco-2细胞具有更松散的紧密连接,但颗粒摄取水平相似。这些结果,以及颗粒加入后连接蛋白的变化,证实了紧密连接在摄取中的作用,但表明粘附连接也很重要。
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来源期刊
CiteScore
4.67
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>12 weeks
期刊介绍: Progress in Histochemistry and Cytochemistry publishes comprehensive and analytical reviews within the entire field of histochemistry and cytochemistry. Methodological contributions as well as papers in the fields of applied histo- and cytochemistry (e.g. cell biology, pathology, clinical disciplines) will be accepted.
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