Comparison of Direct and Indirect cold atmospheric-pressure plasma methods in the B16F10 melanoma cancer cells treatment

被引:0
作者
Fariba Saadati
Hamed Mahdikia
Hojjat-Allah Abbaszadeh
Mohammad-Amin Abdollahifar
Maryam Sadat Khoramgah
Babak Shokri
机构
[1] Physics Department of Shahid Beheshti University,Laser and Plasma research institute
[2] G.C.,Hearing Disorders Research Center, Loghman Hakim Medical Center & Department of Biology and Anatomical Sciences, School of Medicine
[3] P.O. Box,Department of Biotechnology, School of Advanced Technologies in Medicine
[4] Shahid Beheshti University,undefined
[5] G.C.,undefined
[6] P.O. Box,undefined
[7] Shahid Beheshti University of Medical Sciences,undefined
[8] Shahid Beheshti University of Medical Sciences,undefined
来源
Scientific Reports | / 8卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
In this study a novel method was implemented and investigated in order to destroy cancer cells inside the mouse body on a clinical level. In the case of in-vitro study, MTT assay was employed to discover an effective dose of applied plasma and distinguish the plasma effect in direct and in indirect treatments. Tumor growth was also measured in in-vivo section so that the effectiveness of direct and indirect treatments could be compared. Furthermore, an investigation was conducted to study the interferences between a conventional method (chemotherapy) and plasma treatment so as to increase the effectiveness of treatment inside the body. Hematoxylin and Eosin, Flow Cytometry, TUNEL and Western Blot assay were used to investigate any cell alteration and the impact of various treatment methods on cancer cell and amount of their apoptosis and protein levels. Radiology and CT scan images were taken to determine the final tumor volume. The results showed a significant cell death and substantial reduction in tumor growth in direct plasma treatment in comparison with indirect plasma treatment. Eventually, dramatic destruction of cancer cells was observed while using of indirect plasma-chemotherapy combination, thus introducing an effective method for deep tissue tumors can be introduced.
引用
收藏
相关论文
共 50 条
[11]   B cells Promote Tumor Immunity against B16F10 Melanoma [J].
Kobayashi, T. ;
Matsushita, T. ;
Hamaguchi, Y. ;
Hasegawa, M. ;
Fujimoto, M. ;
Takehara, K. .
JOURNAL OF INVESTIGATIVE DERMATOLOGY, 2015, 135 :S18-S18
[12]   Associations of PKC isoforms with the cytoskeleton of B16F10 melanoma cells [J].
Szalay, J ;
Bruno, P ;
Bhati, R ;
Adjodha, J ;
Schueler, D ;
Summerville, V ;
Vazeos, R .
JOURNAL OF HISTOCHEMISTRY & CYTOCHEMISTRY, 2001, 49 (01) :49-65
[13]   Interactions of B16F10 melanoma cells aggregated on a cellulose substrate [J].
Hindie, M. ;
Vayssade, M. ;
Dufresne, M. ;
Queant, S. ;
Warocquier-Clerout, R. ;
Legeay, G. ;
Vigneron, P. ;
Olivier, V. ;
Duval, J. -L. ;
Nagel, M. -D. .
JOURNAL OF CELLULAR BIOCHEMISTRY, 2006, 99 (01) :96-104
[14]   Comparison of direct and indirect effects of non-thermal atmospheric-pressure plasma on bacteria [J].
Fridman, Gregory ;
Brooks, Ari D. ;
Balasubramanian, Manjula ;
Fridman, Alexander ;
Gutsol, Alexander ;
Vasilets, Victor N. ;
Ayan, Halim ;
Friedman, Gary .
PLASMA PROCESSES AND POLYMERS, 2007, 4 (04) :370-375
[15]   Cold atmospheric plasma cancer treatment, direct versus indirect approaches [J].
Malyavko, Alisa ;
Yan, Dayun ;
Wang, Qihui ;
Klein, Andrea L. ;
Patel, Khyati C. ;
Sherman, Jonathan H. ;
Keidar, Michael .
MATERIALS ADVANCES, 2020, 1 (06) :1494-1505
[16]   Cold atmospheric plasma treatment of melanoma and glioblastoma cancer cells [J].
Vermeylen, Stijn ;
De Waele, Jorrit ;
Vanuytsel, Steven ;
De Backer, Joey ;
Van der Paal, Jonas ;
Ramakers, Marleen ;
Leyssens, Karen ;
Marcq, Elly ;
Van Audenaerde, Jonas ;
Smits, Evelien L. J. ;
Dewilde, Sylvia ;
Bogaerts, Annemie .
PLASMA PROCESSES AND POLYMERS, 2016, 13 (12) :1195-1205
[17]   Antiproliferative and Proapoptotic Actions of Okra Pectin on B16F10 Melanoma Cells [J].
Vayssade, Muriel ;
Sengkhamparn, Nipaporn ;
Verhoef, Rene ;
Delaigue, Claire ;
Goundiam, Oumou ;
Vigneron, Pascale ;
Voragen, Alphons G. J. ;
Schols, Henk A. ;
Nagel, Marie-Danielle .
PHYTOTHERAPY RESEARCH, 2010, 24 (07) :982-989
[18]   Radiosensitizing Effect of Rosmarinic Acid in Metastatic Melanoma B16F10 Cells [J].
Alcaraz, Miguel ;
Alcaraz-Saura, Miguel ;
Achel, Daniel Gyingiri ;
Olivares, Amparo ;
Antonio Lopez-Morata, Jose ;
Castillo, Julian .
ANTICANCER RESEARCH, 2014, 34 (04) :1913-1921
[19]   Benzo(a)pyrene represses melanogenesis in B16F10 mouse melanoma cells [J].
Joo, Da Hye ;
Cha, Hwa Jun ;
Kim, Karam ;
Jung, Minhee ;
Ko, Jung Min ;
An, In Sook ;
Lee, Sung Nae ;
Jang, Hyun Hee ;
Bae, Seunghee ;
Roh, Nam Kyung ;
Ahn, Kyu Joong ;
An, Sungkwan .
MOLECULAR & CELLULAR TOXICOLOGY, 2015, 11 (03) :349-355
[20]   Antiproliferative and antiproteolytic activity of pentoxifylline in cultures of B16F10 melanoma cells [J].
Dua, P ;
Gude, RP .
CANCER CHEMOTHERAPY AND PHARMACOLOGY, 2006, 58 (02) :195-202