Ndongo Sonfack Davaine Joel, Tanguay Boivin Clémence, Touzel Deschênes Lydia, Maurand Thibault, Maguemoun Célina, Berthod François, Gros-Louis François, Champagne Pierre-Olivier
Department of Surgery, Faculty of Medicine, Laval University, Quebec, QC G1V 0A6, Canada.
LOEX, CHU de Québec-Laval University Research Center, Quebec, QC G1J 5B3, Canada.
Bioengineering (Basel). 2024 Aug 13;11(8):826. doi: 10.3390/bioengineering11080826.
The upper respiratory mucosa plays a crucial role in both the physical integrity and immunological function of the respiratory tract. However, in certain situations such as infections, trauma, or surgery, it might sustain damage. Tissue engineering, a field of regenerative medicine, has found applications in various medical fields including but not limited to plastic surgery, ophthalmology, and urology. However, its application to the respiratory system remains somewhat difficult due to the complex morphology and histology of the upper respiratory tract. To date, a culture protocol for producing a handleable, well-differentiated nasal mucosa has yet to be developed. The objective of this review is to describe the current state of research pertaining to cell culture techniques used for producing autologous healthy human upper respiratory cells and mucosal tissues, as well as describe its clinical applications.
A search of the relevant literature was carried out with no time restriction across Embase, Cochrane, PubMed, and Medline Ovid databases. Keywords related to "respiratory mucosa" and "culture techniques of the human airway" were the focus of the search strategy for this review. The risk of bias in retained studies was assessed using the Joanna Briggs Institute's (JBI) critical appraisal tools for qualitative research. A narrative synthesis of our results was then conducted.
A total of 33 studies were included in this review, and thirteen of these focused solely on developing a cell culture protocol without further use. The rest of the studies used their own developed protocol for various applications such as cystic fibrosis, pharmacological, and viral research. One study was able to develop a promising model for nasal mucosa that could be employed as a replacement in nasotracheal reconstructive surgery.
This systematic review extensively explored the current state of research regarding cell culture techniques for producing tissue-engineered nasal mucosa. Bioengineering the nasal mucosa holds great potential for clinical use. However, further research on mechanical properties is essential, as the comparison of engineered tissues is currently focused on morphology rather than comprehensive mechanical assessments.
上呼吸道黏膜在呼吸道的物理完整性和免疫功能中都起着至关重要的作用。然而,在某些情况下,如感染、创伤或手术,它可能会受到损伤。组织工程作为再生医学的一个领域,已在包括但不限于整形外科、眼科和泌尿外科等各种医学领域得到应用。然而,由于上呼吸道复杂的形态和组织学结构,其在呼吸系统中的应用仍然有些困难。迄今为止,尚未开发出一种能够生产出易于处理、分化良好的鼻黏膜的培养方案。本综述的目的是描述用于生产自体健康人上呼吸道细胞和黏膜组织的细胞培养技术的研究现状,并描述其临床应用。
在Embase、Cochrane、PubMed和Medline Ovid数据库中进行了无时间限制的相关文献检索。与“呼吸道黏膜”和“人类气道培养技术”相关的关键词是本综述检索策略的重点。使用乔安娜·布里格斯研究所(JBI)的定性研究批判性评估工具评估纳入研究的偏倚风险。然后对我们的结果进行叙述性综合。
本综述共纳入33项研究,其中13项仅专注于开发细胞培养方案而无进一步应用。其余研究将他们自己开发的方案用于各种应用,如囊性纤维化、药理学和病毒学研究。一项研究能够开发出一种有前景的鼻黏膜模型,可用于鼻气管重建手术中的替代物。
本系统综述广泛探讨了用于生产组织工程鼻黏膜的细胞培养技术的研究现状。鼻黏膜的生物工程在临床应用方面具有巨大潜力。然而,对机械性能的进一步研究至关重要,因为目前对工程组织的比较主要集中在形态学而非全面的机械评估上。