Molecular Fluorescent Probes for Liver Tumor Imaging.
activatable probe
bioimaging
biomaker
fluorescent probe
liver tumor
Journal
Chemistry, an Asian journal
ISSN: 1861-471X
Titre abrégé: Chem Asian J
Pays: Germany
ID NLM: 101294643
Informations de publication
Date de publication:
14 Apr 2022
14 Apr 2022
Historique:
revised:
01
03
2022
received:
29
01
2022
pubmed:
3
3
2022
medline:
16
4
2022
entrez:
2
3
2022
Statut:
ppublish
Résumé
Liver cancer is a malignant tumor with both high morbidity and mortality. The traditional treatment method is mainly based on hepatectomy for liver tumor. However, it is difficult to accurately distinguish the tumor tissue and its boundary with the naked eye and palpation, leading to an ambiguous resection result, finally causing high recurrence of liver cancer. Molecular fluorescent probes possessing numerous advantages, such as non-invasiveness, high sensitivity, and real-time imaging, have been extensively studied in liver cancer imaging and therapy. In this review, we briefly introduce the recent developments of always-on and activatable fluorescent probes in liver cancer imaging and therapy. Future potential challenges of the fluorescent probes for liver tumor imaging are also discussed. We expect that this review would improve the fluorescent probes development for real clinical application of liver cancer disease.
Identifiants
pubmed: 35234359
doi: 10.1002/asia.202200091
doi:
Substances chimiques
Fluorescent Dyes
0
Molecular Probes
0
Types de publication
Journal Article
Review
Langues
eng
Sous-ensembles de citation
IM
Pagination
e202200091Subventions
Organisme : National Natural Science Foundation of China
ID : 21904035
Organisme : Science and Technology Project of Hunan Province
ID : 2021RC3108
Organisme : Special Funding for the Construction of Innovative Provinces in Hunan
ID : 2021SK4031
Organisme : China Postdoctoral Science Foundation
ID : 2020T130184
Informations de copyright
© 2022 Wiley-VCH GmbH.
Références
S. K. Asrani, H. Devarbhavi, J. Eaton, P. S. Kamath, J. Hepatol. 2019, 70, 151-171.
M. Maluccio, A. Covey, Ca-Cancer J. Clin. 2012, 62, 394-399;
F. X. Bosch, J. Ribes, M. Diaz, R. Cleries, Gastroenterology 2004, 127, 5-16;
R. Pinyol, J. M. Llovet, Nat. Rev. Gastroenterol. Hepatol. 2014, 11, 336-337.
A. Villanueva, N. Engl. J. Med. 2019, 380, 1450-1462.
Q. Zhang, Z. Han, J. Tao, M. Zhao, W. Zhang, P. Li, L. Tang, Y. Gu, Biomater. Sci. 2019, 7, 159-167.
D. D. Aufhauser, E. Sadot, D. R. Murken, K. Eddinger, M. Hoteit, P. L. Abt, D. S. Goldberg, R. P. DeMatteo, M. H. Levine, Ann. Surg. 2018, 267, 922-928.
C. Verslype, O. Rosmorduc, P. Rougier, Ann. Oncol. 2012, 23, vii41-48;
L. Bonanni, N. D. Carino, R. Deshpande, B. J. Ammori, D. J. Sherlock, J. W. Valle, E. Tam, D. A. O'Reilly, Eur. J. Surg. Onc. 2014, 40, 545-550.
Y. Jin, K. Wang, J. Tian, Bioconjugate Chem. 2018, 29, 1475-1484.
R. Weissleder, M. J. Pittet, Nature 2008, 452, 580-589.
R. Zhang, Y. Xu, Y. Zhang, H. S. Kim, A. Sharma, J. Gao, G. Yang, J. S. Kim, Y. Sun, Chem. Sci. 2019, 10, 8348-8353;
D. Cheng, W. Xu, X. Gong, L. Yuan, X.-B. Zhang, Acc. Chem. Res. 2021, 54, 403-415;
X. Chen, Y. Bian, M. Li, Y. Zhang, X. Gao, D. Su, Chem. Asian J. 2020, 15, 3983-3994;
Q. Wu, D. Cheng, Y. Lv, L. Yuan, X. Zhang, Chem. J. Chin. Univ. 2020, 41, 2426-2434;
X. Jiao, Y. Xiao, Y. Li, M. Liang, X. Xie, X. Wang, B. Tang, Anal. Chem. 2018, 90, 7510-7516;
X. Wu, W. Shi, X. Li, H. Ma, Acc. Chem. Res. 2019, 52, 1892-1904;
D. Cheng, J. Peng, Y. Lv, D. Su, D. Liu, M. Chen, L. Yuan, X. Zhang, J. Am. Chem. Soc. 2019, 141, 6352-6361.
H.-H. Han, H. T. Jr, Y. Zang, A. C. Sedgwick, J. Li, J. L. Sessler, X.-P. He, T. D. James, Chem. Soc. Rev. 2021, 50, 9391-9429;
W. Zhang, Z. Hu, J. Tian, C. Fang, Ann. Transl. Med. 2021, 9, 171;
H.-W. Liu, L. Chen, C. Xu, Z. Li, H. Zhang, X.-B. Zhang, W. Tan, Chem. Soc. Rev. 2018, 47, 7140-7180.
T. Aoki, D. Yasuda, Y. Shimizu, M. Odaira, T. Niiya, T. Kusano, K. Mitamura, K. Hayashi, N. Murai, T. Koizumi, H. Kato, Y. Enami, M. Miwa, M. Kusano, World J. Surg. 2008, 32, 1763-1767.
F. G. D. Amaral, J. Cipolla-Neto, Arch. Endocrinol. Metab. 2018, 4, 472-479;
T. H. Wang, C. Hsueh, C. C. Chen, W. S. Li, C. T. Yeh, J. H. Lian, J. L. Chang, C. Y. Chen, Int. J. Mol. Sci. 2018, 19, 2687.
M. Huang, Q. Zhao, Z. Ye, D. Xu, S. Tang, T. Jiang, Anal. Methods 2020, 12, 4556-4561.
D. Chen, C. K. Soh, W. H. Goh, H. Wang, J. Med. Chem. 2018, 61, 1552-1575.
C. Tang, Y. Du, Q. Liang, Z. Cheng, J. Tian, Mol. Imaging Biol. 2020, 22, 476-485.
V. Jayanthi, A. B. Das, U. Saxena, Biosens. Bioelectron. 2017, 91, 15-23;
L. Wu, X. Qu, Chem. Soc. Rev. 2015, 44, 2963-2997;
L. Wu, A. C. Sedgwick, X. Sun, S. D. Bull, X. P. He, T. D. James, Acc. Chem. Res. 2019, 52, 2582-2597.
X. Chen, F. Wang, J. Y. Hyun, T. Wei, J. Qiang, X. Ren, I. Shin, J. Yoon, Chem. Soc. Rev. 2016, 45, 2976-3016.
M. Valko, D. Leibfritz, J. Moncol, M. T. Cronin, M. Mazur, J. Telser, Int. J. Biochem. Cell Biol. 2007, 39, 44-84.
C. C. Winterbourn, Nat. Chem. Biol. 2008, 4, 278-286;
E. Elinav, R. Nowarski, C. A. Thaiss, B. Hu, C. Jin, R. A. Flavell, Nat. Rev. Cancer 2013, 13, 759-771;
S. Prasad, S. C. Gupta, A. K. Tyagi, Cancer Lett. 2017, 387, 95-105.
X. Han, Y. Ma, Y. Chen, X. Wang, Z. Wang, Anal. Chem. 2020, 92, 2830-2838.
G. I. Giles, C. Jacob, Biol. Chem. 2002, 383, 375-388.
V. S. Lin, W. Chen, M. Xian, C. J. Chang, Chem. Soc. Rev. 2015, 44, 4596-4618.
S. I. Reja, N. Sharma, M. Gupta, P. Bajaj, V. Bhalla, R. D. Parihar, P. Ohri, G. Kaur, M. Kumar, Chem. Eur. J. 2017, 23, 9872-9878.
N. Couto, J. Wood, J. Barber, Free Radical Biol. Med. 2016, 95, 27-42.
T. P. Dalton, H. G. Shertzer, A. Puga, Annu. Rev. Pharmacol. Toxicol. 1999, 39, 67-101.
X. Han, X. Song, F. Yu, L. Chen, Chem. Sci. 2017, 8, 6991-7002.
D. Zhai, S.-C. Lee, S.-W. Yun, Y.-T. Chang, Chem. Commun. 2013, 49, 7207-7209.
T. Ida, T. Sawa, H. Ihara, Y. Tsuchiya, Y. Watanabe, Y. Kumagai, M. Suematsu, H. Motohashi, S. Fujii, T. Matsunaga, M. Yamamoto, K. Ono, N. O. Devarie-Baez, M. Xian, J. M. Fukuto, T. Akaike, Proc. Natl. Acad. Sci. USA 2014, 111, 7606-7611.
X. Han, F. Yu, X. Song, L. Chen, Chem. Sci. 2016, 7, 5098-5107.
L. He, X. Yang, K. Xu, W. Lin, Anal. Chem. 2017, 89, 9567-9573.
Q. He, R. Li, Z. Yuan, H. Kassaye, J. Zheng, C. Wei, F. Wang, Y. Yao, L. Gui, H. Chen, Anal. Methods 2019, 11, 1857-1867.
H. Singh, K. Tiwari, R. Tiwari, S. K. Pramanik, A. Das, Chem. Rev. 2020, 120, 4254-4255.
P. H. Lange, J. L. Millan, T. Stigbrand, R. L. Vessella, E. Ruoslahti, W. H. Fishman, Cancer Res. 1982, 42, 3244-3247;
H. W. Liu, K. Li, X. X. Hu, L. Zhu, Q. Rong, Y. Liu, X. B. Zhang, J. Hasserodt, F. L. Qu, W. Tan, Angew. Chem. Int. Ed. 2017, 56, 11788-11792;
Angew. Chem. 2017, 129, 11950-11954.
H. Li, Q. Yao, F. Xu, Y. Li, D. Kim, J. Chung, G. Baek, X. Wu, P. F. Hillman, E. Y. Lee, H. Ge, J. Fan, J. Wang, S.-J. Nam, X. Peng, J. Yoon, Angew. Chem. Int. Ed. 2020, 59, 10186-10195;
Angew. Chem. 2020, 132, 10272-10281.
Y. Aozuka, K. Koizumi, Y. Saitoh, Y. Ueda, H. Sakurai, I. Saiki, Cancer Lett. 2004, 216, 35-42.
Y. Saitoh, K. Koizumi, T. Minami, K. Sekine, H. Sakurai, I. Saiki, Biol. Pharm. Bull. 2006, 29, 709-712.
H. Li, Y. Li, Q. Yao, J. Fan, W. Sun, S. Long, K. Shao, J. Du, J. Wang, X. Peng, Chem. Sci. 2019, 10, 1619-1625.
X. He, Y. Hu, W. Shi, X. Li, H. Ma, Chem. Commun. 2017, 53, 9438-9441.
M. Matsui, J. H. Fowler, L. L. Walling, Biol. Chem. 2006, 387, 1535-1544.
H. L. Min, J. S. Kim, J. L. Sessler, Chem. Soc. Rev. 2015, 44, 4185-4191.
X. He, L. Li, Y. Fang, W. Shi, X. Li, H. Ma, Chem. Sci. 2017, 8, 3479-3483.
S. Huang, Y. Wu, F. Zeng, J. Chen, S. Wu, Anal. Chim. Acta 2018, 1031, 169-177.
Y. Urano, M. Sakabe, N. Kosaka, M. Ogawa, M. Mitsunaga, D. Asanuma, M. Kamiya, M. R. Young, T. Nagano, P. L. Choyke, H. Kobayashi, Sci. Transl. Med. 2011, 3, 110-119.
L. Li, W. Shi, X. Wu, X. Li, H. Ma, Anal. Bioanal. Chem. 2018, 410, 6771-6777.
Z. Yang, J. Cao, Y. He, J. H. Yang, T. Kim, X. Peng, J. S. Kim, Chem. Soc. Rev. 2014, 43, 4563-4601.
J. Huang, Y. Wu, F. Zeng, S. Wu, Theranostics 2019, 9, 7313-7324.
Z. Zeng, J. Ouyang, L. Sun, C. Zeng, F. Zeng, S. Wu, Anal. Chem. 2020, 92, 9257-9264.
P. Reichl, W. Mikulits, Oncol. Rep. 2016, 36, 613-625;
P. Chen, W. Kuang, Z. Zhen, S. Yang, Y. Liu, L. Su, K. Zhao, G. Liang, Theranostics 2019, 9, 7359-7369.
X. Wu, R. Wang, S. Qi, N. Kwon, J. Han, H. Kim, H. Li, F. Yu, J. Yoon, Angew. Chem. Int. Ed. 2021, 60, 15418-15425.
T. Ueyama, Cells 2019, 8, 92-111.
J. Yin, W. Quan, X. Kong, C. Liu, B. Lu, W. Lin, ACS Appl. Bio Mater. 2021, 4, 3630-3638.
C. M. Weekley, H. H. Harris, Chem. Soc. Rev. 2013, 42, 8870-8894;
L. C. Clark, G. F. Combs, B. W. Turnbull, E. H. Slate, D. K. Chalker, J. Chow, L. S. Davis, R. A. Glover, G. F. Graham, E. G. Gross, J. Am. Med. Assoc. 1996, 276, 1957-1963.
R. S. Glass, W. P. Singh, W. Jung, Z. Veres, T. D. Scholz, T. C. Stadtman, Biochemistry 1993, 32, 12555-12559;
Y. Kobayashi, Y. Ogra, K. Ishiwata, H. Takayama, N. Aimi, K. T. Suzuki, Proc. Natl. Acad. Sci. USA 2002, 99, 15932-15936.
F. Kong, L. Ge, X. Pan, K. Xu, X. Liu, B. Tang, Chem. Sci. 2016, 7, 1051-1056.
Z. Hu, C. Fang, B. Li, Z. Zhang, C. Cao, M. Cai, S. Su, X. Sun, X. Shi, C. Li, T. Zhou, Y. Zhang, C. Chi, P. He, X. Xia, Y. Chen, S. S. Gambhir , Z. Cheng, J. Tian, Nat. Biomed. Eng. 2020, 4, 259-271.