Sun Wenjun, Tian Yang, Wang Zengming, Zhang Hui, Zheng Aiping
Institute of Pharmacology and Toxicology, Academy of Military Medical Sciences, Beijing 100850, China.
Polymers (Basel). 2022 May 12;14(10):1975. doi: 10.3390/polym14101975.
Cyclosporin A nanocrystals (CsA-NCs) interaction with Caco-2 cells were investigated in this study, including cellular uptake and transport across Caco-2 cell monolayers. CsA-NCs of 165 nm, 240 nm and 450 nm were formulated. The dissolution of CsA-NCs was investigated by paddle method. The effect of size, concentration and incubation time on cellular uptake and dissolution kinetics of CsA-NCs in cells were studied. Uptake mechanisms were also evaluated using endocytotic inhibitors and low temperature (4 °C). The cell monolayers were incubated with each diameter CsA-NCs to evaluate the effect of size on the permeation characteristics of CsA across the intestinal mucosa. The results of dissolution study showed that 165 nm CsA-NC had the highest dissolution rate followed by 240 CsA-NC and finally 450 nm CsA-NC. The saturation of cell uptake of CsA-NCs was observed with the increase of incubation concentration and time. 240 nm and 450 nm CsA-NCs had the lowest and highest uptake efficiency at different time and drug concentration, respectively. The uptake of all three-sized CsA-NCs declined significantly in some different degree after the pre-treatment with different endocytosis inhibitors. 165 nm CsA-NC showed a highest transport capacity across monolayers at the same concentration and time. The results suggest that the size of CsA-NCs can not only affect the efficiency of cellular uptake, but also the type of endocytosis. Decreasing particle size of CsA-NCs can improve transport capacity of CsA through cell monolayer.
本研究考察了环孢素A纳米晶体(CsA-NCs)与Caco-2细胞的相互作用,包括细胞摄取和跨Caco-2细胞单层的转运。制备了粒径为165 nm、240 nm和450 nm的CsA-NCs。采用桨法研究了CsA-NCs的溶出情况。研究了粒径、浓度和孵育时间对CsA-NCs在细胞内摄取及溶出动力学的影响。还使用内吞抑制剂和低温(4℃)评估了摄取机制。用不同直径的CsA-NCs孵育细胞单层,以评估粒径对CsA跨肠黏膜渗透特性的影响。溶出研究结果表明,165 nm CsA-NC的溶出速率最高,其次是240 nm CsA-NC,最后是450 nm CsA-NC。随着孵育浓度和时间的增加,观察到CsA-NCs的细胞摄取达到饱和。在不同时间和药物浓度下,240 nm和450 nm CsA-NCs的摄取效率分别最低和最高。用不同的内吞抑制剂预处理后,三种粒径的CsA-NCs的摄取均有不同程度的显著下降。在相同浓度和时间下,165 nm CsA-NC跨单层的转运能力最高。结果表明,CsA-NCs的粒径不仅会影响细胞摄取效率,还会影响内吞作用类型。减小CsA-NCs的粒径可提高CsA通过细胞单层的转运能力。