Ear Science Institute Australia, Ear Sciences Centre, School of Surgery, The University of Western Australia, Sir Charles Gairdner Hospital, Perth, WA, Australia.
Expert Rev Med Devices. 2009 Nov;6(6):653-64. doi: 10.1586/erd.09.47.
Chronic perforations of the eardrum or tympanic membrane represent a significant source of morbidity worldwide. Myringoplasty is the operative repair of a perforated tympanic membrane and is a procedure commonly performed by otolaryngologists. Its purpose is to close the tympanic membrane, improve hearing and limit patient susceptibility to middle ear infections. The success rates of the different surgical techniques used to perform a myringoplasty, and the optimal graft materials to achieve complete closure and restore hearing, vary significantly in the literature. A number of autologous tissues, homografts and synthetic materials are described as graft options. With the advent and development of tissue engineering in the last decade, a number of biomaterials have been studied and attempts have been made to mimic biological functions with these materials. Fibroin, a core structural protein in silk from silkworms, has been widely studied with biomedical applications in mind. Several cell types, including keratinocytes, have grown on silk biomaterials, and scaffolds manufactured from silk have successfully been used in wound healing and for tissue engineering purposes. This review focuses on the current available grafts for myringoplasty and their limitations, and examines the biomechanical properties of silk, assessing the potential benefits of a silk fibroin scaffold as a novel device for use as a graft in myringoplasty surgery.
慢性鼓膜穿孔或鼓膜穿孔代表着全世界发病率的一个重要来源。鼓室成形术是鼓膜穿孔的手术修复,是耳鼻喉科医生常进行的一种手术。其目的是封闭鼓膜,改善听力,并限制患者易患中耳感染。在文献中,用于进行鼓室成形术的不同手术技术的成功率以及实现完全封闭和恢复听力的最佳移植物材料差异很大。许多自体组织、同种异体移植物和合成材料被描述为移植物选择。随着过去十年组织工程学的出现和发展,许多生物材料已经被研究,并试图用这些材料来模拟生物功能。丝素是家蚕丝中的核心结构蛋白,已广泛研究用于生物医学应用。几种细胞类型,包括角质形成细胞,已在丝生物材料上生长,并且由丝制成的支架已成功用于伤口愈合和组织工程目的。这篇综述重点介绍了目前用于鼓室成形术的移植物及其局限性,并研究了丝的生物力学特性,评估了丝素纤维支架作为一种新型移植物在鼓室成形术中应用的潜力。