Yun Ji-Soo, Hwangbo Seon-Ae, Jeong Young-Gyu
Nanosafety Team, Safety Measurement Institute, Korea Research Institute of Standards and Science (KRISS), 267 Gajeong-ro, Yuseong-gu, Daejeon 34113, Republic of Korea.
Department of Applied Organic Materials Engineering, Chungnam National University, Daejeon 34134, Republic of Korea.
Nanomaterials (Basel). 2023 Sep 22;13(19):2618. doi: 10.3390/nano13192618.
Liposomes are microspheres produced by placing phospholipids in aqueous solutions. Liposomes have the advantage of being able to encapsulate both hydrophilic and hydrophobic functional substances and are thus important mediators used in cosmetics and pharmaceuticals. It is important for liposomes to have small sizes, uniform particle size distribution, and long-term stability. Previously, liposomes have been prepared using a homo mixer, microfluidizer, and horn and bath types of sonicators. However, it is difficult to produce liposomes with small sizes and uniform particle size distribution using these methods. Therefore, we have developed a focused ultrasound method to produce nano-sized liposomes with better size control. In this study, the liposome solutions were prepared using the focused ultrasound method and conventional methods. The liposome solutions were characterized for their size distribution, stability, and morphology. Results showed that the liposome solution prepared using focused ultrasonic equipment had a uniform particle size distribution with an average size of 113.6 nm and a polydispersity index value of 0.124. Furthermore, the solution showed good stability in dynamic light scattering measurements for 4 d and Turbiscan measurements for 1 week.
脂质体是通过将磷脂置于水溶液中产生的微球体。脂质体的优势在于能够包封亲水性和疏水性功能物质,因此是化妆品和制药领域中重要的媒介物。脂质体具有小尺寸、均匀的粒径分布以及长期稳定性非常重要。此前,脂质体已使用均化器、微流体化器以及喇叭型和浴型超声仪制备。然而,使用这些方法难以制备出具有小尺寸和均匀粒径分布的脂质体。因此,我们开发了一种聚焦超声方法来制备尺寸控制更好的纳米级脂质体。在本研究中,脂质体溶液采用聚焦超声方法和传统方法制备。对脂质体溶液的粒径分布、稳定性和形态进行了表征。结果表明,使用聚焦超声设备制备的脂质体溶液具有均匀的粒径分布,平均粒径为113.6 nm,多分散指数值为0.124。此外,该溶液在动态光散射测量中4天内以及在Turbiscan测量中1周内均表现出良好的稳定性。