Bonamy Clément, Pesnel Sabrina, Ben Haddada Maroua, Gorgette Olivier, Schmitt Christine, Morel Anne-Laure, Sauvonnet Nathalie
Torskal, 2 rue Maxime Rivière, 97490 Sainte-Clotilde, France.
Group Intracellular Trafficking and Tissue Homeostasis, Institut Pasteur, Université Paris Cité, 75015 Paris, France.
ACS Omega. 2023 Jan 20;8(4):4092-4105. doi: 10.1021/acsomega.2c07054. eCollection 2023 Jan 31.
Skin cancer is a global health issue and mainly composed of melanoma and nonmelanoma cancers. For the first clinical proof of concept on humans, we decided to study good prognosis skin cancers, i.e., carcinoma basal cell. In UE, the first-line treatment remains surgical resection, healing most of the tumors, but presents aesthetic disadvantages with a high reoccurrence rate on exposed areas. Moreover, the therapeutic indications could extend to melanoma and metastasis, which is a different medical strategy that could combine this treatment. Indeed, patients with late-stage melanoma are in a therapeutic impasse, despite recent targeted and immunological therapies. Photothermal therapy using gold nanoparticles is the subject of many investigations due to their strong potential to treat cancers by physical, thermal destruction. We developed gold nanoparticles synthesized by green chemistry (gGNPs), using endemic plant extract from Reunion Island, which have previously showed their efficiency at a preclinical stage. Here, we demonstrate that these gGNPs are less cytotoxic than gold nanoparticles synthesized by Turkevich's method. Furthermore, our work describes the optimization of gGNP coating and stabilization, also taking into consideration the gGNP path in cells (endocytosis, intracellular trafficking, and exocytosis), their specificity toward cancerous cells, their cytotoxicity, and their in vivo efficiency. Finally, based on the metabolic switch of cancerous cells overexpressing Glut transporters in skin cancers, we demonstrated that glucose-stabilized gGNP (gGNP@G) enables a quick internalization, fourfold higher in cancerous cells in contrast to healthy cells with no side cytotoxicity, which is particularly relevant to target and treat cancer.
皮肤癌是一个全球性的健康问题,主要由黑色素瘤和非黑色素瘤癌症组成。为了获得关于人类的首个临床概念验证,我们决定研究预后良好的皮肤癌,即基底细胞癌。在欧洲,一线治疗仍然是手术切除,能治愈大多数肿瘤,但存在美学缺陷,且在暴露部位复发率高。此外,治疗适应症可能扩展到黑色素瘤和转移瘤,这是一种不同的医疗策略,可能会结合这种治疗方法。事实上,尽管最近有靶向治疗和免疫治疗,但晚期黑色素瘤患者仍处于治疗困境。由于金纳米颗粒具有通过物理热破坏治疗癌症的强大潜力,利用金纳米颗粒的光热疗法是许多研究的主题。我们利用留尼汪岛的本地植物提取物通过绿色化学合成了金纳米颗粒(gGNPs),这些金纳米颗粒在临床前阶段已显示出其有效性。在这里,我们证明这些gGNPs的细胞毒性比通过特克维奇方法合成的金纳米颗粒小。此外,我们的工作描述了gGNP包衣和稳定化的优化,同时考虑了gGNP在细胞中的路径(内吞作用、细胞内运输和胞吐作用)、它们对癌细胞的特异性、细胞毒性以及体内效率。最后,基于皮肤癌中过表达Glut转运蛋白的癌细胞的代谢转换,我们证明葡萄糖稳定的gGNP(gGNP@G)能够快速内化,与健康细胞相比,癌细胞中的内化速度快四倍,且无副作用细胞毒性,这对于靶向和治疗癌症尤为重要。