Possible Enhancement of Photodynamic Therapy (PDT) Colorectal Cancer Treatment when Combined with Cannabidiol

被引:31
作者
Nkune, Nkune W. [1 ]
Kruger, Cherie A. [1 ]
Abrahamse, Heidi [1 ]
机构
[1] Univ Johannesburg, Fac Hlth Sci, Laser Res Ctr, Johannesburg, South Africa
基金
新加坡国家研究基金会;
关键词
Colorectal Cancer (CRC); combinative treatment; Cannabis sativa; Cannabidiol (CBD); Photodynamic Therapy (PDT); targeted therapy; COLON-CANCER; INDUCED APOPTOSIS; DRUG-DELIVERY; ZINC PHTHALOCYANINE; RADIATION-THERAPY; TARGETED THERAPY; RECTAL-CANCER; STAGE-II; NANOPARTICLES; AUTOPHAGY;
D O I
10.2174/1871520620666200415102321
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Colorectal Cancer (CRC) has a high mortality rate and is one of the most difficult diseases to manage due to tumour resistance and metastasis. The treatment of choice for CRC is reliant on the phase and time of diagnosis. Despite several conventional treatments available to treat CRC (surgical excision, chemo-, radiation and immune-therapy), resistance is a major challenge, especially if it has metastasized. Additionally, these treatments often cause unwanted adverse side effects and so it remains imperative to investigate alternative combination therapies. Photodynamic Therapy (PDT) is a promising treatment modality for the primary treatment of CRC, since it is non-invasive, has few side effects and selectively damages only cancerous tissues, leaving adjacent healthy structures intact. PDT involves three fundamentals: a Photosensitizer (PS) drug localized in tumour tissues, oxygen, and light. Upon PS excitation using a specific wavelength of light, an energy transfer cascade occurs, that ultimately yields cytotoxic species, which in turn induces cell death. Cannabidiol (CBD) is a cannabinoid compound derived from the Cannabis sativa plant, which has shown to exert anticancer effects on CRC through different pathways, inducing apoptosis and so inhibiting tumour metastasis and secondary spread. This review paper highlights current conventional treatment modalities for CRC and their limitations, as well as discusses the necessitation for further investigation into unconventional active nanoparticle targeting PDT treatments for enhanced primary CRC treatment. This can be administered in combination with CBD, to prevent CRC secondary spread and enhance the synergistic efficacy of CRC treatment outcomes, with less side effects.
引用
收藏
页码:137 / 148
页数:12
相关论文
共 111 条
[71]   Inhibition of autophagy potentiates the apoptosis-inducing effects of photodynamic therapy on human colon cancer cells [J].
Ouyang, Guoqing ;
Xiong, Li ;
Liu, Zhipeng ;
Lam, Brandon ;
Bui, Brian ;
Ma, Lun ;
Chen, Xiang ;
Zhou, Pan ;
Wang, Kunpeng ;
Zhang, Zijian ;
Huang, He ;
Miao, Xiongying ;
Chen, Wei ;
Wen, Yu .
PHOTODIAGNOSIS AND PHOTODYNAMIC THERAPY, 2018, 21 :396-403
[72]  
Palaghia M., 2015, Jurnalul de Chirurgie, V10, P249, DOI DOI 10.7438/1584-9341-10-4-2
[73]   Nano based drug delivery systems: recent developments and future prospects [J].
Patra, Jayanta Kumar ;
Das, Gitishree ;
Fraceto, Leonardo Fernandes ;
Ramos Campos, Estefania Vangelie ;
del Pilar Rodriguez-Torres, Maria ;
Susana Acosta-Torres, Laura ;
Armando Diaz-Torres, Luis ;
Grillo, Renato ;
Swamy, Mallappa Kumara ;
Sharma, Shivesh ;
Habtemariam, Solomon ;
Shin, Han-Seung .
JOURNAL OF NANOBIOTECHNOLOGY, 2018, 16
[74]   Anti-angiogenic treatment (Bevacizumab) improves the responsiveness of photodynamic therapy in colorectal cancer [J].
Peng, Cheng-Liang ;
Lin, Hua-Ching ;
Chiang, Wei-Lun ;
Shih, Ying-Hsia ;
Chiang, Ping-Fang ;
Luo, Tsai-Yueh ;
Cheng, Chun-Chia ;
Shieh, Ming-Jium .
PHOTODIAGNOSIS AND PHOTODYNAMIC THERAPY, 2018, 23 :111-118
[75]   Therapeutic targeting in nanomedicine: the future lies in recombinant antibodies [J].
Pietersz, Geoffrey A. ;
Wang, Xiaowei ;
Yap, May Lin ;
Lim, Bock ;
Peter, Karlheinz .
NANOMEDICINE, 2017, 12 (15) :1873-1889
[76]   Antitumor activity of photodynamic therapy performed with nanospheres containing zinc-phthalocyanine [J].
Portilho, Flavia Arruda ;
de Oliveira Cavalcanti, Claudio Eduardo ;
Miranda-Vilela, Ana Luisa ;
Carneiro Estevanato, Luciana Landim ;
Figueiro Longo, Joao Paulo ;
Menezes Almeida Santos, Maria de Fatima ;
Bocca, Anamelia Lorenzetti ;
Martins, Olimpia Paschoal ;
Simioni, Andreza R. ;
Morais, Paulo Cesar ;
Azevedo, Ricardo Bentes ;
Tedesco, Antonio Claudio ;
Marques Lacava, Zulmira Guerrero .
JOURNAL OF NANOBIOTECHNOLOGY, 2013, 11
[77]   The Role of Angiogenesis in Cancer Treatment [J].
Rajabi, Mehdi ;
Mousa, Shaker A. .
BIOMEDICINES, 2017, 5 (02)
[78]   Natural compounds and combination therapy in colorectal cancer treatment [J].
Rejhova, A. ;
Opattova, A. ;
Cumova, A. ;
Sliva, D. ;
Vodicka, P. .
EUROPEAN JOURNAL OF MEDICINAL CHEMISTRY, 2018, 144 :582-594
[79]   Surgery for Colorectal Cancer - Trends, Developments, and Future Perspectives [J].
Rentsch, Markus ;
Schiergens, Tobias ;
Khandoga, Andrej ;
Werner, Jens .
VISCERAL MEDICINE, 2016, 32 (03) :184-191
[80]   Applications of nanoparticle systems in drug delivery technology [J].
Rizvi, Syed A. A. ;
Saleh, Ayman M. .
SAUDI PHARMACEUTICAL JOURNAL, 2018, 26 (01) :64-70