A look into the use of Raman spectroscopy for brain and breast cancer diagnostics: linear and non-linear optics in cancer research as a gateway to tumor cell identity

被引:33
作者
Abramczyk, Halina [1 ]
Brozek-Pluska, Beata [1 ]
Jarota, Arkadiusz [1 ]
Surmacki, Jakub [1 ]
Imiela, Anna [1 ]
Kopec, Monika [1 ]
机构
[1] Lodz Univ Technol, Lab Laser Mol Spect, Wroblewskiego 15 Str, PL-93590 Lodz, Poland
关键词
Cancer diagnostics by using Raman spectroscopy and imaging; virtual histopathology; Raman biopsy; Raman; guided; in; vivo surgery; linear and non-linear optics; RETINOIC ACID RECEPTORS; ANTITUMOR IMIDAZOTETRAZINES; MECHANICAL-PROPERTIES; PHASE-TRANSITIONS; PRIMARY EVENTS; MICROSCOPY; TEMOZOLOMIDE; MICROSPECTROSCOPY; GLIOBLASTOMA; SUPPRESSOR;
D O I
10.1080/14737159.2020.1724092
中图分类号
R36 [病理学];
学科分类号
100104 ;
摘要
Introduction: Currently, intensely developing of linear and non-linear optical methods for cancer detection provides a valuable tool to improve sensitivity and specificity. One of the main reasons for insufficient progress in cancer diagnostics is related to the fact that most cancer types are not only heterogeneous in their genetic composition but also reside in varying microenvironments and interact with different cell types. Until now, no technology has been fully proven for effective detecting of invasive cancer, which infiltrating the extracellular matrix. Areas covered: This review investigates the current status of Raman spectroscopy and Raman imaging for brain and breast cancer diagnostics. Moreover, the review provides a comprehensive overview of the applicability of atomic force microscopy (AFM), linear and non-linear optics in cancer research as a gateway to tumor cell identity. Expert commentary: A combination of linear and non-linear optics, particularly Raman-driven methods, has many additional advantages to identify alterations in cancer cells that are crucial for their proliferation and that distinguish them from normal cells.
引用
收藏
页码:99 / 115
页数:17
相关论文
共 106 条
[51]   Interaction of tumor cells and astrocytes promotes breast cancer brain metastases through TGF-β2/ANGPTL4 axes [J].
Gong, Xianghui ;
Hou, Zhimin ;
Endsley, Michael P. ;
Gronseth, Emily, I ;
Rarick, Kevin R. ;
Jorns, Julie M. ;
Yang, Qiuhui ;
Du, Zhenggui ;
Yan, Ke ;
Bordas, Michelle L. ;
Gershan, Jill ;
Deepak, Parashar ;
Geethadevi, Anjali ;
Chaluvally-Raghavan, Pradeep ;
Fan, Yubo ;
Harder, David R. ;
Ramchandrar, Ramani ;
Wang, Ling .
NPJ PRECISION ONCOLOGY, 2019, 3 (1)
[52]   Tip-Enhanced Raman Imaging of Single-Stranded DNA with Single Base Resolution [J].
He, Zhe ;
Han, Zehua ;
Kizer, Megan ;
Linhardt, Robert J. ;
Wang, Xing ;
Sinyukov, Alexander M. ;
Wang, Jizhou ;
Deckert, Volker ;
Sokolov, Alexei V. ;
Hu, Jonathan ;
Scully, Marlan O. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2019, 141 (02) :753-757
[53]   Frequent epigenetic inactivation of RASSF1A and BLU genes located within the critical 3p21.3 region in gliomas [J].
Hesson, L ;
Bièche, I ;
Krex, D ;
Criniere, E ;
Hoang-Xuan, K ;
Maher, ER ;
Latif, F .
ONCOGENE, 2004, 23 (13) :2408-2419
[54]  
Huang Y, 2018, OVERVIEW PET RADIOPH
[55]  
IAEA, 2018, Basic Science of PET Imaging
[56]   Novel strategies of Raman imaging for brain tumor research [J].
Imiela, Anna ;
Polis, Bartosz ;
Polis, Lech ;
Abramczyk, Halina .
ONCOTARGET, 2017, 8 (49) :85290-85310
[57]  
Jahn I.J., 2018, NANOTECHNOLOGY CHARA, P1, DOI DOI 10.1007/978-3-662-56333-5_1
[58]   Plasmonic nanostructures for surface enhanced spectroscopic methods [J].
Jahn, Martin ;
Patze, Sophie ;
Hidi, Izabella J. ;
Knipper, Richard ;
Radu, Andreea I. ;
Muehlig, Anna ;
Yueksel, Sezin ;
Peksa, Vlastimil ;
Weber, Karina ;
Mayerhoefer, Thomas ;
Cialla-May, Dana ;
Popp, Juergen .
ANALYST, 2016, 141 (03) :756-793
[59]   Bioanalytical Measurements Enabled by Surface-Enhanced Raman Scattering (SERS) Probes [J].
Jamieson, Lauren E. ;
Asiala, Steven M. ;
Gracie, Kirsten ;
Faulds, Karen ;
Graham, Duncan .
ANNUAL REVIEW OF ANALYTICAL CHEMISTRY, VOL 10, 2017, 10 :415-437
[60]   Exploring the ultrafast dynamics of a diarylethene derivative using sub-10 fs laser pulses [J].
Jarota, Arkadiusz ;
Pastorczak, Ewa ;
Tawfik, Walid ;
Xue, Bing ;
Kania, Rafal ;
Abramczyk, Halina ;
Kobayashi, Takayoshi .
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2019, 21 (01) :192-204