Cherukuri Paul, Curley Steven A
Department of Surgical Oncology and Experimental Therapeutics, University of Texas M. D. Anderson Cancer Center, Houston, TX, USA.
Methods Mol Biol. 2010;624:359-73. doi: 10.1007/978-1-60761-609-2_24.
Shortwave (MHz range) radiofrequency (RF) energy is nonionizing, penetrates deeply into biological tissues with no adverse side effects, and heats metallic nanoparticles efficiently. Targeted delivery of these nanoparticles to cancer cells should result in hyperthermic cytotoxicity upon exposure to a focused, noninvasive RF field. We have demonstrated that gold nanoparticles conjugated with cetuximab (C225) are quickly internalized by Panc-1 (pancreatic adenocarcinoma) and Difi (colorectal adenocarcinoma) cancer cells overexpressing epidermal growth factor receptor (EGFR). Panc-1 or Difi cells treated with naked gold nanoparticles or nonspecific IgG-conjugated gold nanoparticles demonstrated minimal intracellular uptake of gold nanoparticles by transmission electron microscopy (TEM). In contrast, there were dense concentrations of cytoplasmic vesicles containing gold nanoparticles following treatment with cetuximab-conjugated gold nanoparticles. Exposure of cells to a noninvasive RF field produced nearly 100% cytotoxicity in cells treated with the cetuximab-conjugated gold nanoparticles, but significantly lower levels of cytotoxicity in the two control groups (p < 0.00012). Treatment of a breast cancer cell line (CAMA-1) that does not express EGFR with cetuximab-conjugated gold nanoparticles produced no enhanced cytotoxicity following treatment in the RF field. Conjugation of cancer cell-directed targeting agents to gold nanoparticles may represent an effective and cancer-specific therapy to treat numerous types of human malignant disease using noninvasive RF hyperthermia.
短波(兆赫兹范围)射频(RF)能量是非电离的,能深入穿透生物组织且无不良副作用,并能有效加热金属纳米颗粒。将这些纳米颗粒靶向递送至癌细胞,在暴露于聚焦的、非侵入性射频场时应会产生热细胞毒性。我们已经证明,与西妥昔单抗(C225)偶联的金纳米颗粒能被过表达表皮生长因子受体(EGFR)的Panc - 1(胰腺腺癌)和Difi(结肠腺癌)癌细胞迅速内化。用裸金纳米颗粒或非特异性IgG偶联金纳米颗粒处理的Panc - 1或Difi细胞,通过透射电子显微镜(TEM)显示金纳米颗粒的细胞内摄取极少。相比之下,用西妥昔单抗偶联金纳米颗粒处理后,含有金纳米颗粒的细胞质囊泡有密集聚集。将细胞暴露于非侵入性射频场,在用西妥昔单抗偶联金纳米颗粒处理的细胞中产生了近100%的细胞毒性,但在两个对照组中细胞毒性水平显著较低(p < 0.00012)。用西妥昔单抗偶联金纳米颗粒处理不表达EGFR的乳腺癌细胞系(CAMA - 1),在射频场处理后未产生增强的细胞毒性。将癌细胞定向靶向剂与金纳米颗粒偶联,可能代表一种使用非侵入性射频热疗治疗多种人类恶性疾病的有效且癌症特异性疗法。