Challenges in Nasal Cartilage Tissue Engineering to Restore the Shape and Function of the Nose.

IF 5.1 2区 医学 Q2 CELL & TISSUE ENGINEERING Tissue Engineering. Part B, Reviews Pub Date : 2024-12-01 Epub Date: 2024-04-17 DOI:10.1089/ten.TEB.2023.0326
Delphine Vertu-Ciolino, Fanny Brunard, Edwin-Joffrey Courtial, Marielle Pasdeloup, Christophe André Marquette, Emeline Perrier-Groult, Frédéric Mallein-Gerin, Jean-Daniel Malcor
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Abstract

The repair of nasal septal cartilage is a key challenge in cosmetic and functional surgery of the nose, as it determines its shape and its respiratory function. Supporting the dorsum of the nose is essential for both the prevention of nasal obstruction and the restoration of the nose structure. Most surgical procedures to repair or modify the nasal septum focus on restoring the external aspect of the nose by placing a graft under the skin, without considering respiratory concerns. Tissue engineering offers a more satisfactory approach, in which both the structural and biological roles of the nose are restored. To achieve this goal, nasal cartilage engineering research has led to the development of scaffolds capable of accommodating cartilaginous extracellular matrix-producing cells, possessing mechanical properties close to those of the nasal septum, and retaining their structure after implantation in vivo. The combination of a non-resorbable core structure with suitable mechanical properties and a biocompatible hydrogel loaded with autologous chondrocytes or mesenchymal stem cells is a promising strategy. However, the stability and immunotolerance of these implants are crucial parameters to be monitored over the long term after in vivo implantation, to definitively assess the success of nasal cartilage tissue engineering. Here, we review the tissue engineering methods to repair nasal cartilage, focusing on the type and mechanical characteristics of the biomaterials; cell and implantation strategy; and the outcome with regard to cartilage repair. Impact statement Nasal septal cartilage is key to the cosmetic and function of the nose. To repair important damage to the nasal septum, current surgical techniques are complex and limited by graft source availability. Conversely, tissue engineering is a promising strategy to reproduce the dimensions and mechanical properties of the nose without causing donor site morbidity. This approach, however, remains overlooked for the reconstruction of the nasal septum compared with other cartilaginous tissues. This review describes the specific challenges associated with nasal cartilage repair and the pioneering studies leading to advances in the growing field of nose tissue engineering.

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鼻软骨组织工程在恢复鼻子形状和功能方面面临的挑战。
鼻中隔软骨决定了鼻子的形状和呼吸功能,因此修复鼻中隔软骨是鼻部美容和功能性手术的关键挑战。支撑鼻背对于预防鼻腔阻塞和恢复鼻部结构都至关重要。大多数修复或改造鼻中隔的手术都侧重于通过在皮下放置移植体来恢复鼻子的外部结构,而不考虑呼吸方面的问题。组织工程学提供了一种更令人满意的方法,即同时恢复鼻子的结构和生物作用。为了实现这一目标,鼻软骨工程研究开发出了能够容纳软骨 ECM 生成细胞的支架,这种支架具有接近鼻中隔的机械性能,并且在体内植入后仍能保持其结构。将具有适当机械性能的不可吸收核心结构与负载自体软骨细胞或间充质干细胞的生物相容性水凝胶相结合,是一种很有前景的策略。然而,这些植入物的稳定性和免疫耐受性是体内植入后需要长期监测的关键参数,以便明确评估鼻软骨组织工程的成功与否。在此,我们回顾了修复鼻软骨的组织工程方法,重点是生物材料的类型和机械特性、细胞和植入策略以及软骨修复的结果。
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来源期刊
Tissue Engineering. Part B, Reviews
Tissue Engineering. Part B, Reviews Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
12.80
自引率
1.60%
发文量
150
期刊介绍: Tissue Engineering Reviews (Part B) meets the urgent need for high-quality review articles by presenting critical literature overviews and systematic summaries of research within the field to assess the current standing and future directions within relevant areas and technologies. Part B publishes bi-monthly.
期刊最新文献
Analysis of Three-dimensional Printing Strategies for Meniscus/Articular Disc Repair and Regeneration. Epicatechin Derivatives in Tissue Engineering: Antioxidant, Anti-Inflammatory, Regenerative Use. Photoaging Decoded: Extracellular Matrix Alterations and Mechanisms via Mitogen-Activated Protein Kinase/Matrix Metalloproteinase, Transforming Growth Factor-β Pathways, and Glycosaminoglycan Metabolism. Lipids and Minerals, Interplay in Biomineralization: Nature's Alchemy. Challenges in Nasal Cartilage Tissue Engineering to Restore the Shape and Function of the Nose.
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