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不同壳聚糖盐和氯化N-三甲基壳聚糖对肠上皮细胞(Caco-2)通透性影响的比较

Comparison of the effect of different chitosan salts and N-trimethyl chitosan chloride on the permeability of intestinal epithelial cells (Caco-2).

作者信息

Kotzé A F, Luessen H L, de Leeuw B J, de Boer A G, Verhoef J C, Junginger H E

机构信息

Department of Pharmaceutics, Potchefstroom University for Christian Higher Education, Republic of South Africa.

出版信息

J Control Release. 1998 Jan 23;51(1):35-46. doi: 10.1016/s0168-3659(97)00154-5.

Abstract

A partially quaternized chitosan derivative, N-trimethyl chitosan chloride (TMC) (degree of quaternization 12.28%), was synthesized and the effects of this novel polymer on the permeability of intestinal epithelial cells, using Caco-2 cell monolayers, were investigated and compared with those of chitosan hydrochloride and chitosan glutamate. Transepithelial electrical resistance (TEER) measurements at pH 6.20 revealed that all these polymers (0.25-1.5% w/v) caused an immediate and pronounced lowering in TEER values in the order chitosan hydrochloride (84% reduction after 2 h incubation) > chitosan glutamate (60% reduction) > TMC (24% reduction) at 0.25% w/v concentrations. At higher concentrations (up to 2.5% w/v), TMC was able to decrease the TEER further. Similar results were obtained in transport studies, using the hydrophilic radioactive markers, [14C]-mannitol (MW 182.2) and [14C]-polyethylene glycol 4000 (PEG-4000, MW 4000). Large increases in the permeation of these markers were found. The transport of [14C]-mannitol was increased 34-fold (chitosan hydrochloride), 25-fold (chitosan glutamate) and 11-fold (TMC) at 0.25% w/v concentrations. Further increases in the permeation of both markers were found at higher concentrations of TMC. Due to its quaternary structure, TMC is better soluble than the other chitosan salts, and its higher solubility may compensate for its lesser effectivity at similar concentrations. It is also soluble at pH 7.40, where the chitosan salts are insoluble and therefore ineffective. No deleterious effects to the cells could be demonstrated with trypan blue exclusion studies and confocal laser scanning microscopy (CLSM). CLSM confirmed that these polymers increase the transport of large hydrophilic compounds (using the fluorescent markers FD-4, MW 4400 and FD-20, MW 19,600) through opening of tight junctions to allow for paracellular transport. It is concluded from this study that the charge, charge density and the structural features of chitosans and chitosan derivatives are important factors determining their potential use as absorption enhancers.

摘要

合成了一种部分季铵化的壳聚糖衍生物,氯化N-三甲基壳聚糖(TMC)(季铵化度为12.28%),并使用Caco-2细胞单层研究了这种新型聚合物对肠上皮细胞通透性的影响,并与盐酸壳聚糖和谷氨酸壳聚糖进行了比较。在pH 6.20下进行的跨上皮电阻(TEER)测量表明,所有这些聚合物(0.25 - 1.5% w/v)都会使TEER值立即显著降低,在0.25% w/v浓度下,降低幅度顺序为盐酸壳聚糖(孵育2小时后降低84%)>谷氨酸壳聚糖(降低60%)> TMC(降低24%)。在较高浓度(高达2.5% w/v)下,TMC能够进一步降低TEER。在使用亲水性放射性标记物[14C]-甘露醇(分子量182.2)和[14C]-聚乙二醇4000(PEG - 4000,分子量4000)的转运研究中也得到了类似结果。发现这些标记物的渗透有大幅增加。在0.25% w/v浓度下,[14C]-甘露醇的转运增加了34倍(盐酸壳聚糖)、25倍(谷氨酸壳聚糖)和11倍(TMC)。在更高浓度的TMC下,两种标记物的渗透进一步增加。由于其季铵结构,TMC比其他壳聚糖盐具有更好的溶解性,其较高的溶解度可能弥补了其在相似浓度下较低的有效性。它在pH 7.40时也可溶解,而壳聚糖盐在该pH下不溶且因此无效。台盼蓝排斥试验和共聚焦激光扫描显微镜(CLSM)未显示对细胞有有害影响。CLSM证实这些聚合物通过打开紧密连接以允许细胞旁转运,从而增加了大的亲水性化合物(使用荧光标记物FD - 4,分子量4400和FD - 20,分子量19,600)的转运。从这项研究得出的结论是,壳聚糖及其衍生物的电荷、电荷密度和结构特征是决定它们作为吸收增强剂潜在用途的重要因素。

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