Tang Guosheng, Xiong Ranhua, Lv Dan, Xu Ronald X, Braeckmans Kevin, Huang Chaobo, De Smedt Stefaan C
College of Chemical Engineering Jiangsu Key Lab of Biomass-based Green Fuels and Chemicals Nanjing Forestry University (NFU) Nanjing 210037 P. R. China.
Laboratory of General Biochemistry and Physical Pharmacy Faculty of Pharmaceutical Sciences Ghent University Ottergemsesteenweg 460 9000 Ghent Belgium.
Adv Sci (Weinh). 2019 Feb 28;6(9):1802342. doi: 10.1002/advs.201802342. eCollection 2019 May 3.
Multicompartmental microparticles (MCMs) have attracted considerable attention in biomedical engineering and materials sciences, as they can carry multiple materials in the separated phases of a single particle. However, the robust fabrication of monodisperse, highly compartmental MCMs at the micro- and nanoscales remains challenging. Here, a simple one-step and oil-free process, based on the gas-flow-assisted formation of microdroplets ("gas-shearing"), is established for the scalable production of monodisperse MCMs. By changing the configuration of the needle system and gas flow in the spray ejector device, the oil-free gas-shearing process easily allows the design of microparticles consisting of two, four, six, and even eight compartments with a precise control over the properties of each compartment. As oils and surfactants are not used, the gas-shearing method is highly cytocompatible. The versatile applications of such MCMs are demonstrated by producing a magnetic microrobot and a biocompatible carrier for the coculturing of cells. This research suggests that the oil-free gas-shearing strategy is a reliable, scalable, and biofriendly process for producing MCMs that may become attractive materials for biomedical applications.
多隔室微粒(MCMs)在生物医学工程和材料科学领域引起了广泛关注,因为它们能够在单个微粒的不同相中携带多种材料。然而,在微米和纳米尺度上稳健地制备单分散、高度隔室化的MCMs仍然具有挑战性。在此,基于气流辅助微滴形成(“气剪”)建立了一种简单的一步法且无油工艺,用于可扩展地生产单分散MCMs。通过改变针系统的配置和喷雾喷射装置中的气流,无油气剪工艺能够轻松设计出由两个、四个、六个甚至八个隔室组成的微粒,并对每个隔室的性质进行精确控制。由于未使用油和表面活性剂,气剪方法具有高度的细胞相容性。通过制造磁性微型机器人和用于细胞共培养的生物相容性载体,展示了此类MCMs的广泛应用。这项研究表明,无油气剪策略是一种可靠、可扩展且生物友好的生产MCMs的工艺,这些MCMs可能成为生物医学应用中有吸引力的材料。