Xu Zexian, Jin Jiachang, Hou Lei, Zhu Yabin, Xu Dingli, Xu Zhenqiang, Shen Zhisen
Department of Human Anatomy and Histoembryology, The Medical School, Ningbo University, Ningbo, Zhejiang 315211, P.R.China.
Department of Human Anatomy and Histoembryology, The Medical School, Ningbo University, Ningbo, Zhejiang 315211,
Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2019 Apr 25;36(2):238-244. doi: 10.7507/1001-5515.201707017.
The biocompatible hydrogel was fabricated under suitable conditions with natural dextran and polyethylene glycol (PEG) as the reaction materials. The oligomer (Dex-AI) was firstly synthesized with dextran and allylisocyanate (AI). This Dex-AI was then reacted with poly (ethyleneglycoldiacrylate) (PEGDA) under the mass ratio of 4∶6 to get hydrogel (DP) with the maximum water absorption of 810%. This hydrogel was grafted onto the surface of medical catheter via diphenyl ketone treatment under ultraviolet (UV) initiator. The surface contact angle became lower from (97 ± 6.1)° to (25 ± 4.2)° after the catheter surface was grafted with hydrogel DP, which suggests that the catheter possesses super hydrophilicity with hydrogel grafting. The evaluation after they were implanted into ICR rats subcutaneously verified that this catheter had less serious inflammation and possessed better histocompatibility comparing with the untreated medical catheter. Therefore, it could be concluded that hydrogel grafting is a good technology for patients to reduce inflammation due to catheter implantation, esp. for the case of retention in body for a relative long time.
以天然葡聚糖和聚乙二醇(PEG)作为反应原料,在合适的条件下制备了生物相容性水凝胶。首先用葡聚糖和烯丙基异氰酸酯(AI)合成低聚物(Dex-AI)。然后将该Dex-AI与聚乙二醇二丙烯酸酯(PEGDA)按质量比4∶6反应,得到最大吸水率为810%的水凝胶(DP)。在紫外线(UV)引发剂作用下,通过二苯甲酮处理将该水凝胶接枝到医用导管表面。导管表面接枝水凝胶DP后,表面接触角从(97±6.1)°降低到(25±4.2)°,这表明接枝水凝胶后导管具有超亲水性。将其皮下植入ICR大鼠后的评估证实,与未处理的医用导管相比,该导管炎症较轻,具有更好的组织相容性。因此,可以得出结论,水凝胶接枝是一种能减少患者因导管植入引起炎症的良好技术,尤其是对于在体内留置相对较长时间的情况。