State Key Lab of Metal Matrix Composites, School of Materials Science and Engineering Shanghai Jiao Tong University, Shanghai, 200240, P. R. China.
International Peace Maternity and Child Health Hospital, Shanghai Key Laboratory of Embryo Original Diseases, Shanghai Jiao Tong University School of Medicine, Shanghai, 200240, P. R. China.
Adv Healthc Mater. 2024 Jan;13(2):e2302175. doi: 10.1002/adhm.202302175. Epub 2023 Oct 2.
Endometriosis (EM) is a prevalent and debilitating gynecological disorder primarily affecting women of reproductive age. The diagnosis of EM is historically hampered by delays, owing to the absence of reliable diagnostic and monitoring techniques. Herein, it is reported that photoacoustic imaging can be a noninvasive modality for deep-seated EM by employing a hyaluronic-acid-modified polydopamine (PDA@HA) nanoparticle as the contrast agent. The PDA@HA nanoparticles exhibit inherent absorption and photothermal effects when exposed to near-infrared light, proficiently converting thermal energy into sound waves. Leveraging the targeting properties of HA, distinct photoacoustic signals emanating from the periphery of orthotopic EM lesions are observed. These findings are corroborated through anatomical observations and in vivo experiments involving mice with green fluorescent protein-labeled EM lesions. Moreover, the changes in photoacoustic intensity over a 24 h period reflect the dynamic evolution of PDA@HA nanoparticle biodistribution. Through the utilization of a photoacoustic ultrasound modality, in vivo assessments of EM lesion volumes are conducted. This innovative approach not only facilitates real-time monitoring of the therapeutic kinetics of candidate drugs but also obviates the need for the sacrifice of experimental mice. As such, this study presents a promising avenue for enhancing the diagnosis and drug-screening processes of EM.
子宫内膜异位症(EM)是一种常见且使人虚弱的妇科疾病,主要影响育龄妇女。由于缺乏可靠的诊断和监测技术,EM 的诊断历来存在延迟。本文报道了光声成像是一种非侵入性的深部 EM 诊断方法,采用透明质酸修饰的聚多巴胺(PDA@HA)纳米颗粒作为对比剂。PDA@HA 纳米颗粒在近红外光照射下表现出固有吸收和光热效应,能将热能有效地转化为声波。利用 HA 的靶向特性,可以观察到源自异位 EM 病变周围的明显光声信号。这些发现通过对具有绿色荧光蛋白标记的 EM 病变的小鼠的解剖学观察和体内实验得到证实。此外,24 小时内光声强度的变化反映了 PDA@HA 纳米颗粒生物分布的动态演变。通过使用光声超声模式,可以对 EM 病变体积进行体内评估。这种创新方法不仅便于实时监测候选药物的治疗动力学,还避免了牺牲实验小鼠的需要。因此,本研究为提高 EM 的诊断和药物筛选过程提供了一个有前途的途径。