Watt Meghan M, Moitra Parikshit, Sheffield Zach, Ostadhossein Fatemeh, Maxwell Elizabeth A, Pan Dipanjan
Department of Small Animal Clinical Sciences, University of Florida College of Veterinary Medicine, Gainesville, Florida, USA.
Department of Pediatrics, Center for Blood Oxygen Transport and Hemostasis, Health Sciences Facility III, University of Maryland Baltimore School of Medicine, Baltimore, Maryland, USA.
Wiley Interdiscip Rev Nanomed Nanobiotechnol. 2023 Mar;15(2):e1845. doi: 10.1002/wnan.1845. Epub 2022 Aug 17.
The lymphatic system is the first site of metastasis for most tumors and is a common reason for the failure of cancer therapy. The lymphatic system's anatomical properties make it difficult to deliver chemotherapy agents at therapeutic concentrations while avoiding systemic toxicity. Carbon nanoparticles offer a promising alternative for identifying and transporting therapeutic molecules. The larger diameter of lymphatic vessels compared to the diameter of blood vessels, allows carbon nanoparticles to selectively enter the lymphatic system once administered subcutaneously. Carbon nanoparticles stain tumor-draining lymph nodes black following intratumoral injection, making them useful in sentinel lymph node mapping. Drug-loaded carbon nanoparticles allow higher concentrations of chemotherapeutics to accumulate in regional lymph nodes while decreasing plasma drug accumulation. The use of carbon nanoparticles for chemotherapy delivery has been associated with lower mortality, fewer histopathology changes in vital organs, and lower serum concentrations of hepatocellular enzymes. This review will focus on the ability of carbon nanoparticles to target the lymphatics as well as their current and potential applications in sentinel lymph node mapping and oncology treatment regimens. This article is categorized under: Implantable Materials and Surgical Technologies > Nanoscale Tools and Techniques in Surgery.
淋巴系统是大多数肿瘤转移的首个部位,也是癌症治疗失败的常见原因。淋巴系统的解剖学特性使得在避免全身毒性的同时,难以输送达到治疗浓度的化疗药物。碳纳米颗粒为识别和运输治疗分子提供了一种有前景的替代方案。与血管直径相比,淋巴管直径更大,这使得碳纳米颗粒在皮下给药后能够选择性地进入淋巴系统。瘤内注射后,碳纳米颗粒会将引流肿瘤的淋巴结染成黑色,使其在前哨淋巴结定位中有用。载药碳纳米颗粒可使化疗药物在区域淋巴结中积累更高浓度,同时减少血浆药物积累。使用碳纳米颗粒进行化疗给药与更低的死亡率、重要器官更少的组织病理学变化以及更低的血清肝细胞酶浓度相关。本综述将聚焦于碳纳米颗粒靶向淋巴管的能力及其在前哨淋巴结定位和肿瘤治疗方案中的当前及潜在应用。本文分类如下:可植入材料与外科技术>外科手术中的纳米级工具与技术。