Kaiser Eva, Jaganathan Saravana Kumar, Supriyanto Eko, Ayyar Manikandan
Faculty of Biosciences and Medical Engineering, Universiti Teknologi Malaysia, 81310, Johor Bahru, Malaysia.
Ilmenau Institute of Biomedical Engineering and Computer Science, Technical University of Ilmenau, 98693, Ilmenau, Germany.
3 Biotech. 2017 Jul;7(3):174. doi: 10.1007/s13205-017-0830-6. Epub 2017 Jun 29.
Atrial septal defect (ASD) constitutes 30-40% of all congenital heart diseases in adults. The most common complications in the treatment of ASD are embolization of the device and thrombosis formation. In this research, an occluding patch was developed for ASD treatment using a well-known textile technology called electrospinning. For the first time, a cardiovascular occluding patch was fabricated using medical grade polyurethane (PU) loaded with bioactive agents namely chitosan nanoparticles (Cn) and collagen (Co) which is then coated with heparin (Hp). Fourier transform infrared spectrum showed characteristic vibrations of several active constituents and changes in the absorbance due to the inclusion of active ingredients in the patch. The contact angle analysis demonstrated no significant decrease in contact angle compared to the control and the composite patches. The structure of the electrospun nanocomposite (PUCnCoHp) was examined through scanning electron microscopy. A decrease in nanofiber diameter between control PU and PUCnCoHp nanocomposite was observed. Water uptake was found to be decreased for the PUCnCoHp nanocomposite against the control. The hemocompatibility properties of the PUCnCoHp ASD occluding patch was inferred through in vitro hemocompatibility tests like activated partial thromboplastin time (APTT), prothrombin time (PT) and hemolysis assay. It was found that the PT and APTT time was significantly prolonged for the fabricated PUCnCoHp ASD occluding patch compared to the control. Likewise, the hemolysis percentage was also decreased for the PUCnCoHp ASD patch against the control. In conclusion, the developed PUCnCoHp patch demonstrates potential properties to be used for ASD occlusion.
房间隔缺损(ASD)占成人先天性心脏病的30%-40%。ASD治疗中最常见的并发症是封堵器栓塞和血栓形成。在本研究中,利用一种名为静电纺丝的知名纺织技术开发了一种用于ASD治疗的封堵补片。首次使用负载生物活性剂壳聚糖纳米颗粒(Cn)和胶原蛋白(Co)的医用级聚氨酯(PU)制造了一种心血管封堵补片,然后用肝素(Hp)进行涂层。傅里叶变换红外光谱显示了几种活性成分的特征振动以及由于补片中包含活性成分而导致的吸光度变化。接触角分析表明,与对照和复合补片相比,接触角没有显著降低。通过扫描电子显微镜检查了静电纺纳米复合材料(PUCnCoHp)的结构。观察到对照PU和PUCnCoHp纳米复合材料之间纳米纤维直径减小。发现PUCnCoHp纳米复合材料相对于对照的吸水率降低。通过活化部分凝血活酶时间(APTT)、凝血酶原时间(PT)和溶血试验等体外血液相容性试验推断了PUCnCoHp ASD封堵补片的血液相容性特性。结果发现,与对照相比,制造的PUCnCoHp ASD封堵补片的PT和APTT时间显著延长。同样,PUCnCoHp ASD补片相对于对照的溶血百分比也降低。总之,所开发的PUCnCoHp补片显示出用于ASD封堵的潜在特性。