Advances and prospects of using nanocrystalline ceria in cancer theranostics

Russian Journal of Inorganic Chemistry - Tập 59 Số 13 - Trang 1556-1575 - 2014
A. B. Shcherbakov1, Zholobak Nm1, N. Ya. Spivak1, V. K. Ivanov2
1Zabolotny Institute of Microbiology and Virology, National Academy of Sciences of Ukraine, Kyiv, Ukraine
2Kurnakov Institute of General and Inorganic Chemistry of Russian Academy of Sciences, Leninskii pr. 31, Moscow, 119991, Russia

Tóm tắt

Từ khóa


Tài liệu tham khảo

O. V. Salata, J. Nanobiotech. 2, 3 (2004).

M. Liong, J. Lu, M. Kovochich, et al., ACS Nano 2, 889 (2008).

S. A. Agnihotri, N. N. Mallikarjuna, and T. M. Aminabhavi, J. Control. Release 100, 5 (2004).

A. A. Semenova, N. A. Brazhe, E. Y. Parshina, et al., Plasmonics 9, 227 (2014).

A. A. Semenova, E. A Goodilin, N. A. Brazhe, et al., J. Mater. Chem. 22, 24530 (2012).

O. Veiseh, J. W. Gunn, and M. Zhang, Adv. Drug Deliv. Rev. 62, 284 (2010).

P. Ghosh, G. Han, M. De, et al., Adv. Drug Deliv. Rev. 60, 1307 (2008).

W. C. Chan, D. J. Maxwell, X. Gao, et al., Curr. Opin. Biotech. 13, 40 (2002).

F. Wang, W. B. Tan, Y. Zhang, et al., Nanotechnology 17, R1 (2006).

K. Saha, S. S. Agasti, and C. Kim, Chem. Rev. 112, 2739 (2012).

I. L. Medintz, H. T. Uyeda, E. R. Goldman, et al., Nat. Mater. 4, 435 (2005).

National Cancer Institute, Cancer Nanotechnology: Going Small for Big Advances (NIH Publication No. 04-5489, January 2004), p. 26.

National Cancer Institute/NIH: Cancer Nanotechnology Plan, Office of Cancer Nanotechnology, Research Center for Strategic Scientific Initiatives (CSSI) (NIH Publication No. 11-7794, November 2010), p. 76.

L. Brannon-Peppas and J. O. Blanchette, Adv. Drug Deliv. Rev. 64, 206 (2012).

X. Huang, P. K. Jain, I. H. El-Sayed, et al., Lasers Med. Sci. 23, 217 (2008).

O.V. Melnikov, O.Y. Gorbenko, M.N. Markelova, et al., J. Biomed. Mater. Res. Part A 91, 1048 (2009).

D. P. O’Neal, L. R. Hirsch, N. J. Halas, et al., Cancer Lett. 209, 171 (2004).

J. Lee, Y. Huh, Y. Jun, et al., Nat. Med. 13, 95 (2007).

J. Drbohlavova, J. Chomoucka, V. Adam, et al., Curr. Drug Metab. 14, 547 (2013).

P. S. Xu, E. A. Van Kirk, W. J. Murdoch, et al., Biomacromolecules 7, 829 (2006).

C. Lewin, Med. Klin. 20, 1319 (1924).

M. A. Jakupec, P. Unfried, B. K. Keppler, in Reviews of Physiology, Biochemistry and Pharmacology (Springer, Berlin Heidelberg, 2005), p. 101.

B. Xiao, Y. Ji, and M. Cui, Zhonghua yu fang yi xue za zhi [Chin. J. Prevent. Med.] 31, 228 (1997).

Y. J. Ji, B. Xiao, Z. H. Wang, et al., Biomed. Environ. Sci.: BES 13, 287 (2000).

Y. Dai, J. Li, J. Li, et al., In Vitro Cel. Dev.-An. 38, 373 (2002).

A. A. Palizban, H. Sadeghi-Aliabadi, and F. Abdollahpour, Res. Pharm. Sci. 5, 119 (2010).

C. Che, S. Wong, US Patent Application 20100069345 (2010).

G. Y. Zhang, H. J. Zhao, Z. J. Xin, et al., J. Xi’an Jiaotong Univ. (Med. Sci.) 6, 017 (2009).

H. J. Zhao, G. Y. Zhang, and Y. Liu, Chin. J. Pub. Health 5, 017 (2008).

M. S. Essington, Soil and Water Chemistry: An Integrative Approach (CRC press, 2003), p. 534.

F. A. Cotton, G. Wilkinson, C. A. Murillo, Advanced Inorganic Chemistry, 6th ed. (Wiley, New York, 1999), p. 1125.

P. Yu, S. A. Hayes, T. J. O’Keefe, et al., J. Electrochem. Soc. 153, C74 (2006).

V. K. Ivanov, A. B. Shcherbakov, A. E. Baranchikov, and V. V. Kozik, Synthesis, Structure, Physicochemical Properties and Biological Activity of Nanodispersed Cerium Dioxide (Izd. Tomsk. Univ., Tomsk, 2013), p. 284 [in Russian].

V. K. Ivanov, A. V. Usatenko, and A. B. Shcherbakov, Russ. J. Inorg. Chem. 54, 1522 (2009).

Z. Wang, Z. Quan, and J. Lin, Inorg. Chem. 46, 5237 (2007).

A. B. Shcherbakov, V. K. Ivanov, N. M. Zholobak, et al., Biophysics 56, 987 (2011).

V.K. Ivanov, Habil. Thesis (Inst. of Gen. and Inorg. Chem., RAS, Moscow, 2011), p. 292 [in Russian].

V. K. Ivanov, O. S. Polezhaeva, A. B. Shcherbakov, et al., Russ. J. Inorg. Chem. 55, 1 (2010).

V. K. Ivanov, O. S. Polezhaeva, A. S. Shaporev, et al., Russ. J. Inorg. Chem. 55, 328 (2010).

A. B. Shcherbakov, N. M. Zholobak, V. K. Ivanov, et al., Russ. J. Inorg. Chem. 57, 1411 (2012).

O. S. Ivanova, T. O. Shekunova, V. K. Ivanov, et al., Dokl. Chem. 437, 103 (2011).

V. K. Ivanov, A. B. Shcherbakov, and A. V. Usatenko, Rus. Chem. Rev. 78, 855 (2009).

R. W. Tarnuzzer, J. Colon, S. Patil, et al., Nano Lett. 5, 2573 (2005).

T. Naganuma and E. Traversa, Biomaterials 35, 4441 (2014).

C. Xu and X. Qu, NPG Asia Mater. 6, e90 (2014).

E. C. Cho, J. Xie, P. A. Wurm, et al., Nano Lett. 9, 1080 (2009).

A. Swami, J. Shi, and S. Gadde, et al., in Multifunctional Nanoparticles for Drug Delivery Applications (Springer US, 2012), p. 9.

C. M. J. Hu, S. Aryal, and L. Zhang, Ther. Deliv. 1, 323 (2010).

J. S. Basuki, H. T. Duong, A. Macmillan, et al., ACS Nano 7, 10175 (2013).

A. Z. Wang, R. Langer, and O. C. Farokhzad, Annu. Rev. Med. 63, 185 (2012).

M. E. Davis, J. E. Zuckerman, C. H. J. Choi, et al., Nature 464(7291), 1067 (2010).

J. Y. Park, M. J. Baek, E. S. Choi, et al., ACS Nano 3, 3663 (2009).

M. O. Oyewumi, R. A. Yokel, M. Jay, et al., J. Control. Release 95, 613 (2004).

H. B. Na, I. C. Song, and T. Hyeon, Adv. Mater. 21, 2133 (2009).

J. F. Hainfeld, D. N. Slatkin, T. M. Focella, et al., Br. J. Radiol. 79, 248 (2006).

M. H. Oh, N. Lee, H. Kim, et al., J. Am. Chem. Soc. 133, 5508 (2011).

M. A. Hahn, A. K. Singh, P. Sharma, et al., Anal. Bioanal. Chem. 399, 3 (2011).

S. Santra, R. P. Bagwe, D. Dutta, et al., Adv. Mater. 17, 2165 (2005).

H. Xing, W. Bu, S. Zhang, et al., Biomaterials 33, 1079 (2012).

J. Sijl, B. Dollet, M. Overvelde, et al., J. Acoust. Soc. Am. 128, 3239 (2010).

R. Díaz-López, N. Tsapis, and E. Fattal, Pharm. Res. 27, 1 (2010).

N. Y. Rapoport, A. M. Kennedy, J. E. Shea, et al., J. Control. Release 138, 268 (2009).

K. Ferrara, R. Pollard, and M. Borden, Annu. Rev. Biomed. Eng. 9, 415 (2007).

X. Huang, P. K. Jain, I. H. El-Sayed, et al., Lasers Med. Sci. 23, 217 (2008).

B. Jang, J. Y. Park, C. H. Tung, et al., ACS Nano 5, 1086 (2011).

N. F. Gamaleia, E. D. Shishko, G. A. Dolinsky, et al., Exp. Oncol. 32, 44 (2010).

L. Maggiorella, G. Barouch, C. Devaux, et al., Future Oncol. 8, 1167 (2012).

M. W. Mortensen, P. G. Sørensen, O. Björkdahl, et al., Appl. Radiat. Is. 64, 315 (2006).

T. Watanabe, H. Ichikawa, and Y. Fukumori, Eur. J. Pharm. Biopharm. 54, 119 (2002).

G. T. Wondrak, Antioxid. Redox Signal. 11, 3013 (2009).

S. Osinsky and P. Vaupel, Tumor Microphysiology (Naukova Dumka, Kiev, 2009), p. 254.

C.W. Song, R. Griffin, and H.J. Park, in Cancer Drug Resistance, Ed. by B. A. Teicher, (Humana Press, New Jersey, 2006), p. 21.

O. O. Stoianov, V. K. Ivanov, A. B. Shcherbakov, et al., Russ. J. Inorg. Chem. 59, 15 (2014).

J.M. Perez, A. Asati, S. Nath, et al., Small. 4, 552 (2008).

N. M. Zholobak, A. B. Shcherbakov, A. S. Bogorad-Kobelska, et al., J. Photochem. Photobiol. B: Biol. 130, 102 (2014).

L. Zhang, H. Jiang, M. Selke, et al., J. Biomed. Nanotech. 10, 278 (2014).

A. B. Shcherbakov, V. K. Ivanov, N. M. Zholobak, et al., RF Patent Application 2012112921/15, (2012).

M. H. Kuchma, C. B. Komanski, J. Colon, et al., Nanomed.: Nanotech., Biol. Med. 6, 738 (2010).

J. M. Dowding, S. Das, A. Kumar, et al., ACS Nano 7, 4855 (2013).

T. Gao, F. Furnari, and A. C. Newton, Mol. Cell 18, 13 (2005).

M. J. Berridge, Cell Signalling Biology (2012) ( www.biochemj.org/csb/002/csb002.pdf ).

S. Seton-Rogers, Nat. Rev. Drug Discov. 13, 176 (2014).

R. E. Davis, K. D. Brown, U. Siebenlist, et al., J. Exp. Med. 194, 1861 (2001).

V. Baud and M. Karin, Nat. Rev. Drug Discov. 8, 33 (2009).

J. Niu, K. Wang, and P. E. Kolattukudy, J. Pharmacol. Exp. Ther. 338, 53 (2011).

L. A. Zilber, I. S. Irlin, and F. L. Kisilev, The Evolution of the Viral-Genetic Theory of Tumor Occurrence (Nauka, Moscow, 1975), p. 344.

J. Komano, M. Sugiura, and K. Takada, J. Virol. 72, 9150 (1998).

A. Mutirangura, W. Pornthanakasem, and A. Theamboonlers, Clin. Cancer Res. 4, 665 (1998).

A. H. Koyama and Y. Miwa, J. Virol. 71, 2567 (1997).

L. Aurelian, Front. Biosci. 3, 237 (1998).

J. Cinatl, Jr, J. Cinatl, J. U. Vogel, et al., Intervirology 39, 259 (1996).

V. E. Nava, E. H. Cheng, M. Veliuona, et al., J. Virol. 71, 4118 (1997).

J. Neyts, R. Sadler, E. De Clercq, et al., Cancer Res. 58, 384 (1998).

A. Martynov, B. S. Farber, and S. S. Farber, US Patent 20120195911 A1 (2012).

N. Zholobak, A. Shcherbakov, V. Ivanov, et al., Antiviral Res. 90, A67 (2011).

N. M. Zholobak, Z. M. Olevinskaia, N. Spivak, et al., Mikrobiol. Zh. 72(3), 42 (2009).

N. M. Zholobak, L. D. Krivohvatskaya, A. B. Shcherbakov, et al., Third Annual Conference “Nanotechnology in Oncology,” Moscow, October 30, 2010, p. 44 [in Russian].

W. Lin, Y.W. Huang, X.D. Zhou, et al., Int. J. Toxicol. 25, 451 (2006).

G. Cheng, W. Guo, L. Han, et al., Toxicol. in Vitro 27, 1082 (2013).

G. Renu, V. V. Rani Divya, S. V. Nair, et al., Adv. Sci. Lett. 6, 17 (2012).

L. Alili, M. Sack, C. von Montfort, et al., Antioxid. Redox Signal. 19, 765 (2013).

S. Giri, A. Karakoti, R. P. Graham, et al. PLoS One 8, e54578 (2013).

L. Alili, M. Sack, A. S. Karakoti, et al., Biomaterials 32, 2918 (2011).

G. T. Wondrak, Antioxid. Redox Signal. 11, 3015 (2009).

J. F. Mcginnis, L. L. Wong, and X. Zhou, US Patent Application 20090269410 (2009).

M.S. Wason, J. Zhao, Am. J. Transl. Res. 5, 126 (2013).

M. S. Wason, J. Colon, S. Das, et al., Nanomed.: Nanotech., Biol. Med. 9, 558 (2013).

C.H. Baker, in Nanomedicine in Health and Disease, ed. by R. J. Hunter and V. R. Preedy (Science Publishers, New York, 2011), p. 444.

J. Colon, L. Herrera, J. Smith, et al., Nanomedicine 5, 225 (2009).

J. Colon, L. Herrera, S. Patil, et al., Int. J. Rad. Oncol. Biol. Phys. 72, S700 (2008).

J. Colon, N. Hsieh, A. Ferguson, et al., Nanomedicine 6, 698 (2010).

R. A. Madero-Visbal, B. E. Alvarado, J. F. Colon, et al., Nanomed.: Nanotech. Biol. Med. 8, 1223 (2012).

R. W. Tarnuzzer, J. Colon, S. Patil, et al., Nano Lett. 5, 2573 (2005).

A. Briggs, S. Corde, S. Oktaria, et al., Nanomed.: Nanotech. Biol. Med. 9, 1098 (2013).

P. V. Ermak, I. A. Shton’, A. V. Usatenko, et al., Proceedings of XXXVII International Scientific Practical Conference “Application of Lasers in Medicine and Biology,” Kharkov, 2012, p. 97 [in Russian].

P. V. Ermak, Proceedings of XI Conference of Young Oncologists of Ukraine with Participation of International Experts “Recent Developments in Experimental and Clinical Oncology,” Kyiv, 2012), p. 107 [in Russian].

K. A. Conklin, Integr. Cancer Ther. 3, 294 (2004).

Y. Chen, P. Jungsuwadee, M. Vore, et al., Mol. Interv. 7, 147 (2007).

A. Nel, T. Xia, L. Mädler, et al., Science 311(5761), 622 (2006).

S. Patil, A. Sandberg, E. Heckert, et al., Biomaterials 28, 4600 (2007).

R. M. Sawant, J. P. Hurley, S. Salmaso, et al., Bioconjug. Chem. 17, 943 (2006).

V. P. Torchilin, Nat. Rev. Drug Discov. 4, 145 (2005).

R. Langer, A. T. David, Nature 428(6982), 487 (2004).

C. Xu, Y. Lin, J. Wang, et al., Adv. Healthcare Mater. 2, 1591 (2013).

A. Asati, S. Santra, C. Kaittanis, et al., ACS Nano 4, 5321 (2010).

H. Ishii, S. Ito, D. Nagao, et al., Colloids Surf. A 441, 638 (2014).

M. Sack, L. Alili, E. Karaman, et al., Mol. Cancer Ther. 13, 1740 (2014).

T. Sahu, S. Singh Bisht, K. Ranjan Das, et al., Curr. Nanosci. 9, 588 (2013).

A. Asati, C. Kaittanis, S. Santra, et al., Angew. Chem. Int. Ed. Engl. 48, 2308 (2010).

A. Asati, C. Kaittanis, S. Santra, et al., Anal. Chem. 83, 2547 (2011).

D. Maysinger, M. Behrendt, M. Lalancette-Hébert, et al., Nano Lett. 7, 2513 (2007).

A. S. Karakoti, S. V. Kuchibhatla, K. S. Babu, et al., J. Phys. Chem. C 111, 17232 (2007).

A. Kumar, S. Babu, A. S. Karakoti, et al., Langmuir 25, 10998 (2009).

K. Woan, Y. Y. Tsai, W. Sigmund, Nanomedicine 5, 233 (2009).

S. Babu, J.-H. Cho, J. M. Dowding, et al., Chem. Commun. 46, 6915 (2010).

O. S. Ivanova, G. A. Gasymova, A. B. Shcherbakov, et al., Dokl. Chem. 443, 82 (2012).

G. A. Gasymova, O. S. Ivanova, A. E. Baranchikov, et al., Nanosyst.: Phys., Chem., Math. 2(3), 113 (2011).

E. A. Dolgopolova, O. S. Ivanova, V. K. Ivanov, et al., Russ. J. Inorg. Chem. 57, 1303 (2012).

V. K. Ivanov, O. S. Ivanova, A. B. Shcherbakov, et al., RF Patent Application 2012120059/05 (2012).

E. A. Dolgopolova, O. S. Ivanova, A. B. Shcherbakov, et al., Russ. J. Inorg. Chem. 58, 1287 (2013).

K.M. Bakht, M. Sadeghi, and C. J. Tenreiro, Radioanal. Nucl. Chem. 292, 53 (2012).

L. Yang, G. Sundaresan, M. Sun, et al., J. Mater. Chem. B 1, 1421 (2013).