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用于设计生态可持续“人工鼻”的由明胶和壳聚糖组成的仿生热湿交换过滤器

Nature-Inspired Heat and Moisture Exchanger Filters Composed of Gelatin and Chitosan for the Design of Eco-Sustainable "Artificial Noses".

作者信息

Campodoni Elisabetta, Artusi Chiara, Vazquez Iglesias Brais, Nicosia Alessia, Belosi Franco, Vandini Alberta, Monticelli Paolo, Tampieri Anna, Sandri Monica

机构信息

Institute of Science, Technology and Sustainability for Ceramics (ISSMC-CNR), Faenza, RA 48018, Italy.

Pollution S.r.l., Budrio, BO 40054, Italy.

出版信息

ACS Appl Polym Mater. 2023 Apr 12;5(5):3468-3479. doi: 10.1021/acsapm.3c00140. eCollection 2023 May 12.

Abstract

For long-term mechanical ventilation, during anesthesia or intensive care, it is crucial to preserve a minimum level of humidity to avoid damage to the respiratory epithelium. Heat and moisture exchange filters (HME), also called "artificial noses," are passive systems that contribute to delivering inspired gases at about the same conditions of healthy respiration, i.e., 32 °C and relative humidity higher than 90%. Current HME devices suffer from limitations linked either to performance and filtration efficiency to their inadequate antibacterial efficiency, sterilization methods, and durability. Furthermore, in times of global warming and diminishing petroleum oil reserves, replacing the employing of synthetic materials with biomass biodegradable raw materials has considerable economic and environmental value. In the present study, a generation of eco-sustainable, bioinspired, and biodegradable HME devices are designed and developed through a green-chemistry process based on raw materials deriving from food waste and taking inspiration from the functioning, structure, and chemistry of our respiratory system. In particular, different blends are obtained by mixing aqueous solutions of gelatin and chitosan in various polymer ratios and concentrations and then by cross-linking them with different low amounts of genipin, a natural chemical cross-linker. Finally, the blends, post-gelation, are freeze-dried to obtain three-dimensional (3D) highly porous aerogels reproducing both the highly exposed surface area of the upper respiratory ways and the chemical composition of the mucus secretion covering the nasal mucosae. Results are comparable with accepted standards for HME devices and suitable bacteriostatic potential, thus validating these bioinspired materials as promising candidates to be used as an eco-sustainable generation of HME devices.

摘要

对于长期机械通气、麻醉或重症监护期间,保持最低湿度水平以避免呼吸道上皮受损至关重要。热湿交换过滤器(HME),也称为“人工鼻”,是一种被动系统,有助于在与健康呼吸大致相同的条件下输送吸入气体,即32°C且相对湿度高于90%。目前的HME装置存在局限性,要么与性能和过滤效率有关,要么与抗菌效率不足、灭菌方法和耐用性有关。此外,在全球变暖和石油储备减少的时代,用生物质可生物降解原材料替代合成材料的使用具有相当大的经济和环境价值。在本研究中,通过基于食物垃圾衍生原材料的绿色化学过程,并从我们呼吸系统的功能、结构和化学中获取灵感,设计并开发了一代生态可持续、受生物启发且可生物降解的HME装置。具体而言,通过将明胶和壳聚糖的水溶液以不同的聚合物比例和浓度混合,然后用不同少量的京尼平(一种天然化学交联剂)对其进行交联,获得不同的混合物。最后,将混合物在凝胶化后进行冷冻干燥,以获得三维(3D)高度多孔气凝胶,其既再现了上呼吸道高度暴露的表面积,又再现了覆盖鼻黏膜的黏液分泌物的化学成分。结果与HME装置的公认标准相当,且具有合适的抑菌潜力,从而验证了这些受生物启发的材料作为生态可持续一代HME装置的有前途的候选材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/13fd/10186330/b2bafb425ac2/ap3c00140_0002.jpg

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