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通过光生物调节刺激和匀化原卟啉 IX 的内源性产生,以提高光动力疗法的疗效。

Stimulation and homogenization of the protoporphyrin IX endogenous production by photobiomodulation to increase the potency of photodynamic therapy.

机构信息

Laboratory for Functional and Metabolic Imaging, Institute of Physics, Swiss Federal Institute of Technology (EPFL), Station 6, 1015 Lausanne, Switzerland.

Laboratory for Functional and Metabolic Imaging, Institute of Physics, Swiss Federal Institute of Technology (EPFL), Station 6, 1015 Lausanne, Switzerland.

出版信息

J Photochem Photobiol B. 2021 Dec;225:112347. doi: 10.1016/j.jphotobiol.2021.112347. Epub 2021 Oct 28.

Abstract

Protoporphyrin IX (PpIX) is produced in the mitochondria and used as fluorescent contrast agent or photosensitizer after exogenous 5-aminolevulinic acid (ALA) delivery in cancer photodynamic detection and therapy (PDT). Although routinely used in the clinics, the stimulated production of PpIX is often insufficient and/or heterogeneous within the lesions, thereby limiting the PDT performances. Since photobiomodulation, which is based on the illumination of the tissues with sub-thermal radiometric conditions in the red or near-infrared, is known to stimulate the cell metabolism, we have optimized these conditions in vitro. Some of them lead to the homogenization and strong stimulation of the PpIX endogenous production. Interestingly, combined sequentially, PBM enhanced significantly the potency of PpIX-based PDT in vitro and in vivo in tumors grown on the chicken embryo chorioallantoic membrane. These results are in excellent agreement with other assays based on measurements of the cell survival/death, the production of reactive oxygen species, including singlet oxygen, and the mitochondrial membrane potential.

摘要

原卟啉 IX(PpIX)在细胞线粒体中生成,在经外源性 5-氨基酮戊酸(ALA)递送至肿瘤后,可用作荧光对比剂或光动力治疗(PDT)的光敏剂。尽管 PpIX 的激发生成在临床上得到了广泛应用,但在病变部位,其生成往往不足且/或不均匀,从而限制了 PDT 的疗效。光生物调节是基于在红色或近红外光的亚热辐射条件下对组织进行照射,已知其可以刺激细胞代谢,因此我们已经对这些条件进行了体外优化。其中一些条件可使 PpIX 的内源性生成均匀且强烈增强。有趣的是,将这些条件进行序贯组合,可显著增强基于 PpIX 的 PDT 在体外和体内的功效,尤其是在鸡胚绒毛尿囊膜上生长的肿瘤中。这些结果与其他基于细胞存活/死亡、活性氧(包括单线态氧)产生以及线粒体膜电位测量的检测结果非常吻合。

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