State Key Laboratory of Biobased Material and Green Papermaking, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250014, PR China; Advanced Materials Institute, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250014, PR China.
Advanced Materials Institute, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250014, PR China.
Int J Biol Macromol. 2024 Oct;277(Pt 2):134239. doi: 10.1016/j.ijbiomac.2024.134239. Epub 2024 Jul 27.
Nasal tamponade is a commonly employed and highly effective treatment method for preventing nasal bleeding. However, the current nasal packing hemostatic materials exhibit some limitations, such as low hemostatic efficiency, the potential for causing secondary injury when removed from the nasal cavity, limited intelligence in their design, and an inability to promote the healing of nasal mucosa wounds. Herein, we report the fabrication of a smart cellulose aerogel through the covalent cross-linking of carboxymethyl cellulose (CMC) macromolecules, while incorporating one-dimensional cellulose nanofibers (CNF) and two-dimensional MXene as reinforcing network scaffolds and conductive fillers. The abundant hydrogen and ether bonds in aerogels make them possess high elasticity in both dry and wet states, which can be compressed 100 times at 90 % deformation with a stress loss of <10 % under water. The highly elastic aerogels can be filled into the narrow nasal passages, pressuring the capillaries and reducing the amount of bleeding. Moreover, the strong interface between aerogels and blood can promote red blood cell aggregation, platelet adhesion and activation, activate intrinsic coagulation pathway and accelerate blood coagulation, resulting in excellent hemostatic ability. Furthermore, the aerogels exhibit excellent hemocompatibility and cytocompatibility, making them suitable for wound healing and capable of fully healing wounds within 15 days. Notably, the presence of MXene causes the aerogels to form a conductive network when exposed to blood, enabling them to perform real-time hemostatic monitoring without removing the dressing. This innovative biomedical aerogel, prepared from natural materials, shows excellent potential for applications in rapid nasal hemostasis.
鼻腔填塞是预防鼻出血的常用且非常有效的治疗方法。然而,目前的鼻腔填塞止血材料存在一些局限性,如止血效率低、从鼻腔取出时可能造成二次损伤、设计智能化程度有限、无法促进鼻腔黏膜伤口愈合等。在此,我们报告了一种智能纤维素气凝胶的制备方法,通过羧甲基纤维素(CMC)大分子的共价交联,同时引入一维纤维素纳米纤维(CNF)和二维 MXene 作为增强网络支架和导电填料。气凝胶中丰富的氢键和醚键使其在干燥和湿润状态下都具有高弹性,在水下可压缩 100 倍,变形 90%时的应力损失<10%。高弹性气凝胶可填充到狭窄的鼻道中,压迫毛细血管,减少出血。此外,气凝胶与血液之间的强界面可以促进红细胞聚集、血小板黏附和激活,激活内源性凝血途径,加速血液凝固,从而具有优异的止血能力。此外,气凝胶还表现出优异的血液相容性和细胞相容性,适合伤口愈合,可在 15 天内完全愈合伤口。值得注意的是,MXene 的存在使气凝胶在接触血液时形成导电网络,使其能够在不拆除敷料的情况下进行实时止血监测。这种由天然材料制备的创新生物医学气凝胶在快速鼻腔止血方面具有巨大的应用潜力。