Ziesmer Jill, Sondén Isabel, Thersleff Thomas, Sotiriou Georgios A
Department of Microbiology Tumor and Cell Biology Karolinska Institutet Stockholm SE-171 77, Sweden.
Department of Materials and Environmental Chemistry Stockholm University Stockholm 10691, Sweden.
Adv Mater Interfaces. 2022 Oct 10;9(34). doi: 10.1002/admi.202201540. eCollection 2022 Dec.
Near-infrared (NIR) photothermal therapy by microneedles (MNs) exhibits high potential against skin diseases. However, high costs, photobleaching of organic agents, low long-term stability, and potential nanotoxicity limit the clinical translation of photothermal MNs. Here, photothermal MNs are developed by utilizing Au nanoaggregates made by flame aerosol technology and incorporated in water-insoluble polymer matrix to reduce intradermal nanoparticle (NP) deposition. The individual Au interparticle distance and plasmonic coupling within the nanoaggregates are controlled by the addition of a spacer during their synthesis rendering the Au nanoaggregates highly efficient NIR photothermal agents. In situ aerosol deposition of Au nanoaggregates on MN molds results in the fabrication of photothermal MNs with thin plasmonic layers. The photothermal performance of these MN arrays is compared to ones made by three methods utilizing NP dispersions, and it is found that similar temperatures are reached with 28-fold lower Au mass due to reduced light scattering losses of the thin layers. Finally, all developed photothermal MN arrays here cause clinically relevant hyperthermia at benign laser intensities while reducing intradermal NP deposition 127-fold compared to conventional MNs made with water-soluble polymers. Such rational design of photothermal MNs requiring low laser intensities and minimal NP intradermal accumulation sets the basis for their safe clinical translation.
通过微针(MN)进行的近红外(NIR)光热疗法在治疗皮肤疾病方面具有很高的潜力。然而,高成本、有机试剂的光漂白、低长期稳定性以及潜在的纳米毒性限制了光热微针的临床应用。在此,利用火焰气溶胶技术制备的金纳米聚集体开发光热微针,并将其掺入水不溶性聚合物基质中,以减少皮内纳米颗粒(NP)的沉积。在金纳米聚集体合成过程中通过添加间隔物来控制纳米聚集体内单个金颗粒间的距离和等离子体耦合,从而使金纳米聚集体成为高效的近红外光热剂。金纳米聚集体在微针模具上的原位气溶胶沉积导致制备出具有薄等离子体层的光热微针。将这些微针阵列的光热性能与利用NP分散体制备的三种方法制备的微针阵列进行比较,发现由于薄层光散射损失的减少,在金质量降低28倍的情况下仍能达到相似的温度。最后,这里开发的所有光热微针阵列在良性激光强度下都会引起临床相关的热疗,同时与用水溶性聚合物制成的传统微针相比,皮内NP沉积减少了127倍。这种需要低激光强度和最小皮内NP积累的光热微针的合理设计为其安全的临床应用奠定了基础。