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磁性微胶囊作为人类胃肠道中交联剂和饮食依赖性活性氧的新型生物监测器。

Magnetic microcapsules as novel biomonitors of cross-linking agents and diet-dependent reactive oxygen species in the human gastrointestinal tract.

作者信息

Bingham S A, Shah A B, Ellul A, Cummings J H, O'Neill I K

机构信息

MRC Dunn Clinical Nutrition Centre, Cambridge, UK.

出版信息

Environ Health Perspect. 1993 Mar;99:293-5. doi: 10.1289/ehp.9399293.

Abstract

Six healthy, scientifically informed human volunteers were given 14C-labeled polyethyleneimine (PEI) microcapsules by mouth. Fecal 14C recovery was inversely related to mean gut transit time (r = -0.66), and the extent of cross-linking between the membrane and core PEI was inversely related to total fecal output (r = -0.81). Cross-linking of PEI microcapsules may be a biomonitor of endogenous cross-linking agents within the human gastrointestinal tract. Extensive loss of [14C]CH3 label occurred from the microcapsules during human transit and in in vitro fermentations with human fecal flora. A mechanism whereby reactive oxygen species could arise in the iron-rich core of these microcapsules, leading to loss of [14C]CH3 label, is proposed.

摘要

六名健康的、具备科学知识的人类志愿者口服了含14C标记的聚乙烯亚胺(PEI)微胶囊。粪便中14C的回收率与平均肠道转运时间呈负相关(r = -0.66),并且膜与核心PEI之间的交联程度与粪便总排出量呈负相关(r = -0.81)。PEI微胶囊的交联可能是人类胃肠道内源性交联剂的生物监测指标。在人体转运过程以及与人类粪便菌群进行的体外发酵过程中,微胶囊中的[14C]CH3标记大量丢失。本文提出了一种机制,即这些微胶囊富含铁的核心中可能产生活性氧物种,从而导致[14C]CH3标记丢失。

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