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Killing malignant melanoma cells with protoporphyrin IX-loaded polymersome-mediated photodynamic therapy and cold atmospheric plasma

机译:负载原卟啉IX的多聚体介导的光动力疗法和冷血浆杀死恶性黑色素瘤细胞

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摘要

Traditional cancer treatments contain several limitations such as incomplete ablation and multidrug resistance. It is known that photodynamic therapy (PDT) is an effective treatment for several tumor types especially melanoma cells. During the PDT process, protoporphyrin IX (PpIX), an effective photosensitizer, can selectively kill cancer cells by activating a special light source. When tumor cells encapsulate a photosensitizer, they can be easily excited into an excited state by a light source. In this study, cold atmospheric plasma (CAP) was used as a novel light source. Results of some studies have showed that cancer cells can be effectively killed by using either a light source or an individual treatment due to the generation of reactive oxygen species and electrons from a wide range of wavelengths, which suggest that CAP can act as a potential light source for anticancer applications compared with UV light sources. Results of the present in vitro study indicated for the first time that PpIX can be successfully loaded into polymersomes. Most importantly, cell viability studies revealed that PpIX-loaded polymersomes had a low toxicity to healthy fibroblasts (20% were killed) at a concentration of 400 µg/mL, but they showed a great potential to selectively kill melanoma cells (almost 50% were killed). With the application of CAP posttreatment, melanoma cell viability significantly decreased (80% were killed) compared to not using a light source (45% were killed) or using a UV light source (65% were killed). In summary, these results indicated for the first time that PpIX-loaded polymersomes together with CAP posttreatment could be a promising tool for skin cancer drug delivery with selective toxicity toward melanoma cells sparing healthy fibroblasts.
机译:传统的癌症治疗方法有一些局限性,例如不完全消融和多药耐药性。众所周知,光动力疗法(PDT)是对几种肿瘤类型,尤其是黑素瘤细胞的有效治疗。在PDT过程中,有效的光敏剂原卟啉IX(PpIX)可以通过激活特殊光源来选择性杀死癌细胞。当肿瘤细胞包裹光敏剂时,它们很容易被光源激发成激发态。在这项研究中,冷大气等离子体(CAP)被用作新型光源。一些研究结果表明,由于活性氧和多种波长的电子的产生,可以通过使用光源或单独治疗有效杀死癌细胞,这表明CAP可以作为潜在的光。与紫外线光源相比,它是用于抗癌应用的光源。本体外研究的结果首次表明,PpIX可以成功加载到聚合物囊泡中。最重要的是,细胞活力研究表明,在400 µg / mL的浓度下,载有PpIX的聚合物囊泡对健康的成纤维细胞毒性低(杀死了20%),但它们显示出选择性杀死黑素瘤细胞的巨大潜力(几乎50%杀死)。与不使用光源(杀死45%)或不使用紫外线光源(杀死65%)相比,使用CAP后处理可显着降低黑素瘤细胞的活力(杀死80%)。总之,这些结果首次表明,载有PpIX的聚合物囊泡与CAP后处理可能是皮肤癌药物递送的有前途的工具,对保留健康成纤维细胞的黑素瘤细胞具有选择性毒性。

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