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朝向鼻软骨组织工程学。

Toward tissue-engineering of nasal cartilages.

机构信息

Department of Biomedical Engineering, University of California Irvine, 3120 Natural Sciences II, Irvine, CA 92697-2715, USA.

Department of Biomedical Engineering, University of California Irvine, 3120 Natural Sciences II, Irvine, CA 92697-2715, USA.

出版信息

Acta Biomater. 2019 Apr 1;88:42-56. doi: 10.1016/j.actbio.2019.02.025. Epub 2019 Feb 19.

Abstract

Nasal cartilage pathologies are common; for example, up to 80% of people are afflicted by deviated nasal septum conditions. Because cartilage provides the supportive framework of the nose, afflicted patients suffer low quality of life. To correct pathologies, graft cartilage is often required. Grafts are currently sourced from the patient's septum, ear, or rib. However, their use yields donor site morbidity and is limited by tissue quantity and quality. Additionally, rhinoplasty revision rates exceed 15%, exacerbating the shortage of graft cartilage. Alternative grafts, such as irradiated allogeneic rib cartilage, are associated with complications. Tissue-engineered neocartilage holds promise to address the limitations of current grafts. The engineering design process may be used to create suitable graft tissues. This process begins by identifying the surgeon's needs. Second, nasal cartilages' properties must be understood to define engineering design criteria. Limited investigations have examined nasal cartilage properties; numerous additional studies need to be performed to examine topographical variations, for example. Third, tissue-engineering processes must be applied to achieve the engineering design criteria. Within the recent past, strategies have frequently utilized human septal chondrocytes. As autologous and allogeneic rib graft cartilage is used, its suitability as a cell source should also be examined. Fourth, quantitative verification of engineered neocartilage is critical to check for successful achievement of the engineering design criteria. Finally, following the FDA paradigm, engineered neocartilage must be orthotopically validated in animals. Together, these steps delineate a path to engineer functional nasal neocartilages that may, ultimately, be used to treat human patients. STATEMENT OF SIGNIFICANCE: Nasal cartilage pathologies are common and lead to greatly diminished quality of life. The ability to correct pathologies is limited by cartilage graft quality and quantity, as well as donor site morbidity and surgical complications, such as infection and resorption. Despite the significance of nasal cartilage pathologies and high rhinoplasty revision rates (15%), little characterization and tissue-engineering work has been performed compared to other cartilages, such as articular cartilage. Furthermore, most work is published in clinical journals, with little in biomedical engineering. Therefore, this review discusses what nasal cartilage properties are known, summarizes the current state of nasal cartilage tissue-engineering, and makes recommendations via the engineering design process toward engineering functional nasal neocartilage to address current limitations.

摘要

鼻软骨病变很常见;例如,多达 80%的人患有鼻中隔偏曲。由于软骨提供了鼻子的支撑框架,受影响的患者生活质量较低。为了纠正病变,通常需要移植软骨。移植物目前来自患者的鼻中隔、耳朵或肋骨。然而,它们的使用会导致供体部位的发病率,并受到组织数量和质量的限制。此外,鼻整形术的翻修率超过 15%,加剧了移植物软骨的短缺。替代移植物,如辐照同种异体肋软骨,与并发症相关。组织工程化的新软骨有望解决当前移植物的局限性。工程设计过程可用于创建合适的移植物组织。该过程首先要确定外科医生的需求。其次,必须了解鼻软骨的特性,以确定工程设计标准。目前对鼻软骨特性的研究有限;需要进行更多的研究来检查例如,地形变化。第三,必须应用组织工程化过程来实现工程设计标准。在最近的过去,策略经常使用人鼻中隔软骨细胞。随着自体和同种异体肋骨移植软骨的使用,也应该检查其作为细胞来源的适用性。第四,对工程化新软骨进行定量验证对于检查成功实现工程设计标准至关重要。最后,按照 FDA 的范例,必须在动物体内对工程化新软骨进行正交验证。这些步骤共同描绘了一条工程功能性鼻新软骨的道路,最终可能用于治疗人类患者。意义声明:鼻软骨病变很常见,导致生活质量大大降低。纠正病变的能力受到软骨移植物质量和数量的限制,以及供体部位发病率和手术并发症的限制,例如感染和吸收。尽管鼻软骨病变和鼻整形术翻修率(15%)很高,但与其他软骨(如关节软骨)相比,对其进行的特征描述和组织工程工作很少。此外,大多数工作发表在临床期刊上,而生物医学工程方面的工作很少。因此,本综述讨论了已知的鼻软骨特性,总结了鼻软骨组织工程的现状,并通过工程设计过程提出了建议,以工程功能性鼻新软骨来解决当前的局限性。

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