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黏液包覆的、磁力驱动的粪便模拟物,以模拟粪便对结肠上皮的剪切力。

Mucus-coated, magnetically-propelled fecal surrogate to mimic fecal shear forces on colonic epithelium.

机构信息

Department of Bioengineering, University of Washington, Seattle, WA, 98195, USA; Division of Biological Sciences, University of California San Diego, La Jolla, CA, 92093, USA.

Department of Bioengineering, University of Washington, Seattle, WA, 98195, USA.

出版信息

Biomaterials. 2024 Sep;309:122577. doi: 10.1016/j.biomaterials.2024.122577. Epub 2024 Apr 23.

Abstract

The relationship between the mechanical forces associated with bowel movement and colonic mucosal physiology is understudied. This is partly due to the limited availability of physiologically relevant fecal models that can exert these mechanical stimuli in in vitro colon models in a simple-to-implement manner. In this report, we created a mucus-coated fecal surrogate that was magnetically propelled to produce a controllable sweeping mechanical stimulation on primary intestinal epithelial cell monolayers. The mucus layer was derived from purified porcine stomach mucins, which were first modified with reactive vinyl sulfone (VS) groups followed by reaction with a thiol crosslinker (PEG-4SH) via a Michael addition click reaction. Formation of mucus hydrogel network was achieved at the optimal mixing ratio at 2.5 % w/v mucin-VS and 0.5 % w/v PEG-4SH. The artificial mucus layer possessed similar properties as the native mucus in terms of its storage modulus (66 Pa) and barrier function (resistance to penetration by 1-μm microbeads). This soft, but mechanically resilient mucus layer was covalently linked to a stiff fecal hydrogel surrogate (based on agarose and magnetic particles, with a storage modulus of 4600 Pa). The covalent bonding between the mucus and agarose ensured its stability in the subsequent fecal sliding movement when tested at travel distances as long as 203 m. The mucus layer served as a lubricant and protected epithelial cells from the moving fecal surrogate over a 1 h time without cell damage. To demonstrate its utility, this mucus-coated fecal surrogate was used to mechanically stimulate a fully differentiated, in vitro primary colon epithelium, and the physiological stimulated response of mucin-2 (MUC2), interleukin-8 (IL-8) and serotonin (5HT) secretion was quantified. Compared with a static control, mechanical stimulation caused a significant increase in MUC2 secretion into luminal compartment (6.4 × ), a small but significant increase in IL-8 secretion (2.5 × and 3.5 × , at both luminal and basal compartments, respectively), and no detectable alteration in 5HT secretion. This mucus-coated fecal surrogate is expected to be useful in in vitro colon organ-on-chips and microphysiological systems to facilitate the investigation of feces-induced mechanical stimulation on intestinal physiology and pathology.

摘要

肠运动相关的机械力与结肠黏膜生理学之间的关系尚未得到充分研究。这在一定程度上是由于可用的生理相关粪便模型有限,这些模型无法以简单的方式在体外结肠模型中施加这些机械刺激。在本报告中,我们创建了一种涂有粘液的粪便替代物,该替代物可通过磁场推动,在原代肠上皮细胞单层上产生可控的扫动机械刺激。粘液层源自纯化的猪胃粘蛋白,该粘蛋白首先用反应性乙烯砜(VS)基团进行修饰,然后通过迈克尔加成点击反应与巯基交联剂(PEG-4SH)反应。在 2.5%w/v 粘蛋白-VS 和 0.5%w/v PEG-4SH 的最佳混合比下形成粘液水凝胶网络。人工粘液层在存储模量(66Pa)和屏障功能(阻止 1μm 微珠渗透)方面与天然粘液具有相似的特性。这种柔软但机械弹性的粘液层通过共价键与硬粪便水凝胶替代物(基于琼脂糖和磁性颗粒,存储模量为 4600Pa)相连。在长达 203m 的测试行程中,当测试时,粘液与琼脂糖之间的共价键确保了粘液层在随后的粪便滑动运动中的稳定性。粘液层起到了润滑剂的作用,并且在 1 小时的时间内保护上皮细胞免受移动的粪便替代物的伤害,而不会造成细胞损伤。为了证明其用途,我们将这种涂有粘液的粪便替代物用于机械刺激完全分化的体外原代结肠上皮细胞,并定量测量粘蛋白-2(MUC2)、白细胞介素-8(IL-8)和 5-羟色胺(5HT)分泌的生理刺激反应。与静态对照相比,机械刺激使 MUC2 分泌到腔室中的量显著增加(6.4×),IL-8 分泌量略有增加(腔室和基底腔室分别为 2.5×和 3.5×),而 5HT 分泌量没有明显变化。这种涂有粘液的粪便替代物有望在体外结肠类器官和微生理系统中得到应用,以促进对粪便诱导的机械刺激对肠道生理学和病理学的研究。

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