Non-canonical anti-cancer, anti-metastatic, anti-angiogenic and immunomodulatory PDT potentials of water soluble phthalocyanine derivatives with imidazole groups and their intracellular mechanism of action

被引:16
作者
Ayaz, Furkan [1 ,2 ]
Yetkin, Derya [3 ,4 ]
Yuzer, Abdulcelil [5 ]
Demircioglu, Kubra [6 ]
Ince, Mine [6 ]
机构
[1] Mersin Univ, Fac Arts & Sci, Dept Biotechnol, TR-33110 Mersin, Turkey
[2] Mersin Univ, Biotechnol Res & Applicat Ctr, TR-33110 Mersin, Turkey
[3] Mersin Univ, Adv Technol Educ Res & Applicat Ctr, TR-33110 Mersin, Turkey
[4] Mersin Univ, Dept Histol & Embryol, TR-33110 Mersin, Turkey
[5] Tarsus Univ, Vocat Sch Tech Sci Mersin Tarsus Organized Ind Zo, Dept Elect & Automat, TR-33100 Mersin, Turkey
[6] Tarsus Univ, Fac Engn, Dept Nat & Math Sci, Mersin, Turkey
关键词
Phthalocyanine; Photodynamic therapy; Cancer; Angiogenesis; Metastasis; Immune system; Immunomodulatory effect; PHOTODYNAMIC THERAPY; BIOLOGICAL-ACTIVITIES; ZINC PHTHALOCYANINE; PHOTOSENSITIZER; SUBSTITUENTS; CANCER; AGENTS;
D O I
10.1016/j.pdpdt.2022.103035
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Cancer is currently a leading health issue globally. Chemotherapy is a prominent treatment method but due to undesired side effects t, there has been a need for novel less toxic approaches. Photodynamic therapy may be listed among the alternatives for efficient and potentially less detrimental applications of cancer therapy. Canonical photodynamic therapy (PDT) approach requires a light source with a specific wavelength of light, a nontoxic photosensitizer and molecular oxygen. PDT creates the desired effect by the photochemical reaction created through interaction of these components to create reactive oxygen species that will act on the cancer cells to enable anti-cancer activities. In our study we focus on non-canonical PDT application. In this approach we are not only aiming to eliminate cancer cells in the environment but also test the anti-metastatic, anti-angiogenic and possible immunomodulatory activities of the novel photosensitizers. Moreover, in our approach, we studied the intracellular pathways that are crucial for carcinogenesis, cell cycle, apoptosis, angiogenesis, metastasis and immune function to decipher the mechanism of the action for each compound. Reactive oxygen species based explanation was not valid in our study, hence it brings out a non canonical approach to PDT applications. Our results suggests that Phthalocyanine derivatives with imidazole groups can be effectively used against lung, colon, breast and prostate cancer while differentially effecting metastasis, angiogenesis, cell cycle, apoptosis and immune system cell's activities. Based on the results, PDT application of these phthalocyanine derivatives can be an effective treatment option to replace chemotherapy to minimize the potential side effects.
引用
收藏
页数:9
相关论文
共 47 条
[1]  
Arruebo Manuel, 2011, Cancers (Basel), V3, P3279, DOI 10.3390/cancers3033279
[2]   Biological activities of the natural imidazole-containing peptidomimetics n-acetylcamosine, carcinine and L-carnosine in ophthalmic and skin care products [J].
Babizhayev, MA .
LIFE SCIENCES, 2006, 78 (20) :2343-2357
[3]   Fluorescence Lifetime Measurements and Biological Imaging [J].
Berezin, Mikhail Y. ;
Achilefu, Samuel .
CHEMICAL REVIEWS, 2010, 110 (05) :2641-2684
[4]   Imidazole and benzimidazole derivatives as chemotherapeutic agents [J].
Boiani, M ;
González, M .
MINI-REVIEWS IN MEDICINAL CHEMISTRY, 2005, 5 (04) :409-424
[5]   Interventional therapy combined with immune checkpoint inhibitors: Emerging opportunities for cancer treatment in the era of immunotherapy [J].
Chang, Xiaofeng ;
Lu, Xiaofeng ;
Guo, Jinhe ;
Teng, Gao-Jun .
CANCER TREATMENT REVIEWS, 2019, 74 :49-60
[6]   Matrigel® invasion by the prostate cancer cell lines, PC3 and DU145, and cathepsin L+B activity [J].
Colella, R ;
Jackson, T ;
Goodwyn, E .
BIOTECHNIC & HISTOCHEMISTRY, 2004, 79 (3-4) :121-127
[7]   Antimicrobial and anticancer photodynamic activity of a phthalocyanine photosensitizer with N-methyl morpholiniumethoxy substituents in non-peripheral positions [J].
Dlugaszewska, Jolanta ;
Szczolko, Wojciech ;
Koczorowski, Tomasz ;
Skupin-Mrugalska, Paulina ;
Teubert, Anna ;
Konopka, Krystyna ;
Kucinska, Malgorzata ;
Murias, Marek ;
Duzgunes, Nejat ;
Mielcarek, Jadwiga ;
Goslinski, Tomasz .
JOURNAL OF INORGANIC BIOCHEMISTRY, 2017, 172 :67-79
[8]   Synthetic pathways to water-soluble phthalocyanines and close analogs [J].
Dumoulin, Fabienne ;
Durmus, Mahmut ;
Ahsen, Vefa ;
Nyokong, Tebello .
COORDINATION CHEMISTRY REVIEWS, 2010, 254 (23-24) :2792-2847
[9]   Tumor-associated Macrophages (TAM) and Inflammation in Colorectal Cancer [J].
Erreni, Marco ;
Mantovani, Alberto ;
Allavena, Paola .
CANCER MICROENVIRONMENT, 2011, 4 (02) :141-154
[10]   The PI3K Pathway in Human Disease [J].
Fruman, David A. ;
Chiu, Honyin ;
Hopkins, Benjamin D. ;
Bagrodia, Shubha ;
Cantley, Lewis C. ;
Abraham, Robert T. .
CELL, 2017, 170 (04) :605-635