دورية أكاديمية

Potential Biosafety of Mxenes: Stability, Biodegradability, Toxicity and Biocompatibility.

التفاصيل البيبلوغرافية
العنوان: Potential Biosafety of Mxenes: Stability, Biodegradability, Toxicity and Biocompatibility.
المؤلفون: Dmytriv TR; Department of Biochemistry and Biotechnology, Vasyl Stefanyk Precarpathian National University, 57 Shevchenko Str., Ivano-Frankivsk, 76018, Ukraine., Lushchak VI; Department of Biochemistry and Biotechnology, Vasyl Stefanyk Precarpathian National University, 57 Shevchenko Str., Ivano-Frankivsk, 76018, Ukraine.; Research and Development University, Shota Rustaveli Str., 76018, Ivano-Frankivsk, Ukraine.
المصدر: Chemical record (New York, N.Y.) [Chem Rec] 2024 Apr; Vol. 24 (4), pp. e202300338. Date of Electronic Publication: 2024 Feb 22.
نوع المنشور: Journal Article; Review
اللغة: English
بيانات الدورية: Publisher: Wiley Country of Publication: United States NLM ID: 101085550 Publication Model: Print-Electronic Cited Medium: Internet ISSN: 1528-0691 (Electronic) Linking ISSN: 15280691 NLM ISO Abbreviation: Chem Rec Subsets: MEDLINE
أسماء مطبوعة: Original Publication: New York : Wiley, c2000-
مواضيع طبية MeSH: Containment of Biohazards* , Nanostructures*/toxicity, Anti-Bacterial Agents/pharmacology ; Biodegradation, Environmental
مستخلص: MXenes are two-dimensional nanomaterials with unique properties that are widely used in various fields of research, mostly in the field of energy. Fewer publications are devoted to MXene application in biomedicine and the question is: are MXenes safe for use in biological systems? The sharp edges of MXenes provide the structure of "nanoknives" which cause damage in direct physical contact with cells. This is effectively used for antibacterial research. However, on the other hand, most studies in cultured cells and rodents report that they do not cause obvious signs of cytotoxicity and are fully biocompatible. The aim of our review was to consider whether MXenes can really be considered non-toxic and biocompatible. Often the last two concepts are confused. We first reviewed aspects such as the stability and biodegradation of MXenes, and then analyzed the mechanisms of toxicity and their consequences for bacteria, cultured cells, and rodents, with subsequent conclusions regarding their biocompatibility.
(© 2024 The Chemical Society of Japan & Wiley‐VCH GmbH.)
References: F. Seidi, A. Arabi Shamsabadi, M. Dadashi Firouzjaei, M. Elliott, M. R. Saeb, Y. Huang, C. Li, H. Xiao, B. Anasori, Small. 2023, 19, e2206716.
M. Soleymaniha, M. A. Shahbazi, A. R. Rafieerad, A. Maleki, A. Amiri, Adv. Healthcare Mater. 2019, 8, e1801137.
R. Deng, M. Chang, Y. Chen, Y. Zhou, Nat. Photonics 2022, 11, 4995–5017.
M. Naguib, O. Mashtalir, J. Carle, V. Presser, J. Lu, L. Hultman, Y. Gogotsi, M. W. Barsoum, ACS Nano. 2012, 6, 1322–1331.
M. Pogorielov, K. Smyrnova, S. Kyrylenko, O. Gogotsi, V. Zahorodna, A. Pogrebnjak, Nanomaterials. 2021, 11, 3412.
S. M. George, B. Kandasubramanian, Ceram. Int. 2020, 46, 8522–8535.
X. Lin, Z. Li, J. Qiu, Q. Wang, J. Wang, H. Zhang, T. Chen, Biomater. Sci. 2021, 9, 5397–5431.
D. Parajuli, N. Murali, K. C. Devendra, B. Karki, K. Samatha, A. A. Kim, M. Park, B. Pant, Polymer 2022, 14, 3433.
S. Iravani, R. S. Varma, Mater Adv 2021, 2, 2906–2917.
H. Lin, Y. Chen, J. Shi, Adv. Sci. 2018, 5, 1800518.
A. Zamhuri, G. P. Lim, N. L. Ma, K. S. Tee, C. F. Soon, Biomed. Eng. 2021, 20, 33.
Y. Georgantas, F. P. Moissinac, M. Bissett, MXenes-mining: a decade of discovery. Graphene and 2D mater, 2023. https://doi.org/10.1007/s41127-023-00069-z.
L. Hui, F. Rangrang, Z. Bingwen, Y. Jiazhen, Q. Shi, G. Gang, J. Nanobiotechnol. 2023, 21, 73.
A. Arabi Shamsabadi, M. Sharifian, B. Anasori, M. Soroush, ACS Sustainable Chem. Eng. 2018, 6, 16586–16596.
C. Yang, Y. Luo, H. Lin, M. Ge, J. Shi, X. Zhang, ACS Nano. 2021, 15, 1086–1099.
X. Xu, S. Wang, H. Wu, Y. Liu, F. Xu, J. Zhao, Colloids Surf. B 2021, 207, 111979.
M. A. K. Purbayanto, M. Jakubczak, D. Bury, V. G. Nair, M. Birowska, D. Moszczyńska, A. Jastrzébska, ACS Appl. Nano Mater. 2022, 5, 5373–5386.
T. Ozulumba, G. Ingavle, Y. Gogotsi, S. Sandeman, Biomater. Sci. 2021, 9, 1805–1815.
W. Xiong, Y. Wu, K. Y. Sun, X. S. Wu, Y. H. Zhou, H. L. Cai, X. Zou, Mater. Des. 2022, 213, 110351.
X. Zhao, L. Y. Wang, J. M. Li, L. M. Peng, C. Y. Tang, X. J. Zha, K. Ke, M. B. Yang, B. H. Su, W. Yang, Adv. Sci. 2021, 8, 2101498.
L. Hou, F. Gong, B. Liu, X. Yang, L. Chen, G. Li, Y. Gong, C. Liang, N. Yang, X. Shen, Z. Liu, L. Cheng, Theranostics. 2022, 12, 3834–3846.
X. Wu, T. Chen, Y. Chen, G. Yang, J. Mater. Chem. B. 2020, 8, 2650–2659.
Y. Li, Z. Kang, L. Kong, H. Shi, Y. Zhang, M. Cui, D. P. Yang, Mater. Sci. Eng. C. 2019, 104, 110000.
Z. Hao, Y. Li, X. Liu, T. Jiang, Y. He, X. Zhang, C. Cong, D. Wang, Z. Liu, D. Gao, J. Chem. Eng. 2021, 425, 130639.
W. Feng, X. Han, H. Hu, M. Chang, L. Ding, H. Xiang, Y. Chen, Y. Li, Nat. Commun. 2021, 12, 2203.
L. Zong, H. Wu, H. Lin, Y. Chen, Nano Res. 2018, 11, 4149–4168.
C. Dai, H. Lin, G. Xu, Z. Liu, R. Wu, Y. Chen, Chem. Mater. 2017, 29, 8637–8652.
G. Li, X. Zhong, X. Wang, F. Gong, H. Lei, Y. Zhou, C. Li, Z. Xiao, G. Ren, L. Zhang, Z. Dong, Z. Liu, L. Cheng, Bioact. Mater. 2022, 8, 409–419.
H. Yin, X. Guan, H. Lin, Y. Pu, Y. Fang, W. Yue, B. Zhou, Q. Wang, Y. Chen, H. Xu, Adv. Sci. 2020, 7, 1901954.
C. Xing, S. Chen, X. Liang, Q. Liu, M. Qu, Q. Zou, J. Li, H. Tan, L. Liu, D. Fan, H. Zhang, ACS Appl. Mater. Interfaces. 2018, 10, 27631–27643.
W. J. Zhang, S. Li, Y. Z. Yan, S. S. Park, A. Mohan, I. Chung, S. K. Ahn, J. R. Kim, C. S. Ha, Int. J. Mol. Sci. 2022, 23, 14925.
W. J. Zhang, S. Li, V. Vijayan, J. S. Lee, S. S. Park, X. Cui, I. Chung, J. Lee, S. K. Ahn, J. R. Kim, I. K. Park, C. S. Ha, Nanomaterials. 2022, 12, 4392.
T. Li, J. Ma, W. Wang, B. Lei, Adv. Healthcare Mater. 2022, 12, 2201862.
L. Zhou, H. Zheng, Z. Liu, S. Wang, Z. Liu, F. Chen, H. Zhang, J. Kong, F. Zhou, Q. Zhang, ACS Nano. 2021, 15, 2468–2480.
D. Cui, N. Kong, L. Ding, Y. Guo, W. Yang, F. Yan, Adv. Healthcare Mater. 2021, 10, 2101215.
X. Mi, Z. Su, Y. Fu, S. Li, A. Mo, Biomed. Mater. 2022, 17, 035002.
M. Bai, L. Sutrisno, J. Duan, H. Wan, G. Chen, X. Liu, R. Ma, Chem. Sci. 2023, 14, 10795–10799.
R. A. Soomro, P. Zhang, B. Fan, Y. Wei, B. Xu, Nano-Micro Lett. 2023, 15, 108.
N. Liu, Q. Li, H. Wan, L. Chang, H. Wang, J. Fang, T. Ding, Q. Wen, L. Zhou, X. Xiao, Nat. Commun. 2022, 13, 5551.
F. Xia, J. Lao, R. Yu, X. Sang, J. Luo, Y. Li, J. Wu, Nanoscale. 2019, 11, 23330–23337.
C. J. Zhang, S. Pinilla, N. McEvoy, C. P. Cullen, B. Anasori, E. Long, S. H. Park, A. Seral-Ascaso, A. Shmeliov, D. Krishnan, C. Morant, X. Liu, G. S. Duesberg, Y. Gogotsi, V. Nicolosi, Chem. Mater. 2017, 29, 4848–4856.
Q. Li, Q. Zhou, L. Shi, Q. Chen, J. Wang, J. Mater. Chem. 2019, 7, 4291–4312.
S. Athavale, S. Micci-Barreca, K. Arole, V. Kotasthane, J. Blivin, H. Cao, J. L. Lutkenhaus, M. Radovic, M. J. Green, Langmuir. 2023, 39, 918–928.
C. Zhang, S. Pinilla, N. McEvoy, C. Cullen, B. Anasori, E. Long, S. Park, A. Seral-Ascaso, A. Shmeliov, D. Krishnan, C. Morant, X. Liu, G. Duesberg, Y. Gogotsi, V. Nicolosi, Chem. Mater. 2017, 29, 4848–4856.
M. A. K. Purbayanto, M. Jakubczak, D. Bury, V. G. Nair, M. Birowska, D. Moszczyńska, A. Jastrzébska, ACS Appl. Nano Mater. 2022, 5, 5373–5386.
X. Zhao, A. Vashisth, E. Prehn, W. Sun, S. A. Shah, T. Habib, Y. Chen, Z. Tan, J. L. Lutkenhaus, M. Radovic, J. Green. Matter. 2019, 1, 513–526.
C. Korupalli, K. L. You, G. Getachew, A. S. Rasal, W. B. Dirersa, M. Z. Fahmi, J. Y. Chang, Pharmaceutica 2022, 14, 304.
X. Zhao, H. Cao, B. J. Coleman, Z. Tan, I. J. Echols, E. B. Pentzer, J. L. Lutkenhaus, M. Radovic, M. J. Green, Adv. Mater. Interfaces. 2022, 9, 2200480.
X. Zhao, A. Vashisth, J. W. Blivin, Z. Tan, D. E. Holta, V. Kotasthane, S. A. Shah, T. Habib, S. Liu, J. L. Lutkenhaus, M. Radovic, J. Green. Adv. Mater. Interfaces. 2022, 7, 2000845.
S. Thurakkal, X. Zhang, Mater. Chem. Front. 2022, 6, 561–569.
X. Ren, M. Huo, M. Wang, H. Lin, X. Zhang, J. Yin, Y. Chen, H. Chen, ACS Nano. 2019, 13, 6438–6454.
H. Geng, Y. Ren, G. Qin, T. Wen, Q. Liu, H. Xu, W. He, RSC Adv. 2022, 12, 11128–11138.
H. Yin, X. Guan, H. Lin, Y. Pu, Y. Fang, W. Yue, B. Zhou, Q. Wang, Y. Chen, H. Xu, Adv. Sci. 2020, 7, 1901954.
Y. Su, X. Zhang, Y. Wei, Y. Gu, H. Xu, Z. Liao, L. Zhao, J. Du, Y. Hu, X. Lian, W. Chen, Y. Deng, D. Huang, ACS Appl. Mater. Interfaces. 2023, 5, 6354–6370.
H. Lin, Y. Wang, S. Gao, Y. Chen, J. Shi, Adv. Mater. 2018, 30, 1703284.
A. Iqbal, J. Hong, T. Y. Ko, C. M. Koo, Nano Convergence 2021, 8, 9.
S. Huang, V. N. Mochalin, Inorg. Chem. 2018, 58, 1958–1966.
S. Kumar, H. M. Park, T. Singh, M. Kumar, Y. Seo, IJER. 2023, 2023, 1–12.
H. Li, R. Fan, B. Zou, J. Yan, Q. Shi, J. Nanobiotechnol. 2023, 21, 73.
J. Zhang, S. Tang, N. Ding, P. Ma, Z. Zhang, Nanoscale Adv. 2023, 5, 2921–2932.
Y. Luo, Y. Hong, L. Shen, F. Wu, X. Lin, AAPS PharmSciTech. 2021, 22, 34.
L. Guo, K. Hu, H. Wang, Polymer 2023, 15, 2352.
Y. Deng, Z. Zhou, C. Zhang, H. Li, J. Lan, J. Wua, S. Wang, RSC Adv. 2023, 13, 28951–28963.
S. A. M. Ali, P. J. Doherty, D. F. Williams, J. Appl. Polym. 1994, 51, 1389–1398.
B. Wang, X. He, Z. Zhang, Y. Zhao, W. Feng, Acc. Chem. Res. 2013, 46, 761–769.
L. J. Dixon, M. Barnes, H. Tang, M. T. Pritchard, L. E. Nagy, Compr. Physiol. 2013, 3, 785–797.
H. Lin, S. Gao, C. Dai, Y. Chen, J. Shi, J. Am. Chem. Soc. 2017, 139, 16235–16247..
A. A. Khan, M. A. Alsahli, A. H. Rahmani, Med. Sci. (Basel). 2018, 6, 33.
K. E. Brown, E. M. Brunt, J. W. Heinecke, Am. J. Pathol. 2001, 159, 2081–2088.
S. Kaur, S. M. Allan, Z. S. Al-Ahmady, JCR. 2022, 350, 60–79.
M. Cataldi, C. Vigliotti, T. Mosca, M. R. Cammarota, D. Capone, Int. J. Mol. Sci. 2017, 18, 1249.
R. Gaspar, R. Duncan, Adv. Drug Delivery Rev. 2009, 61, 1220–1231.
D. F. Williams, J. Biomed. Eng. 1989, 11, 185–91.
R. P. Pandey, P. A. Rasheed, T. Gomez, K. Rasool, J. Ponraj, K. Prenger, M. Naguib, K. A. Mahmoud, ACS Appl. Nano Mater. 2020, 3, 11372–11382.
K. Rasool, M. Helal, A. Ali, C. E. Ren, Y. Gogotsi, K. A. Mahmoud, ACS Nano. 2016, 10, 3674–3684.
V. I. Lushchak, Ukr. Biochem. J. 2015, 87, 11–18.
V. I. Lushchak, O. V. Lushchak, Chem.-Biol. Interact. 2021, 349, 109680.
V. I. Lushchak, K. B. Storey, EXCLI J. 2021, 20, 956–967.
M. S. Salmi, U. Ahmed, N. Aslfattahi, S. Rahman, J. G. Hardy, A. Anwar, RSC Adv. 2022, 12, 33142–33155.
Y. Nosaka, A. Nosaka, ACS Energy Lett. 2016, 1, 356–359.
Z. Pouramini, S. M. Mousavi, A. Babapoor, S. A. Hashemi, N. Pynadathu Rumjit, S. Garg, S. Ahmed, W. H. Chiang, Water (Switzerland). 2023, 15, 1267.
L. Wang, H. Jiang, H. Wang, P. L. Show, A. Ivanets, D. Luo, C. Wang, J. Environ. Chem. Eng. 2022, 10, 108954.
A. Zamhuri, G. P. Lim, N. L. Ma, K. S. Tee, Soon. Biomed. Eng. Online. 2021, 20, 33.
S. Y. Pang, Y. T. Wong, S. Yuan, Y. Liu, M. K. Tsang, Z. Yang, H. Huang, W. T. Wong, J. Hao, J. Am. Chem. Soc. 2019, 141, 9610–9616.
A. M. Jastrzębska, E. Karwowska, T. Wojciechowski, W. Ziemkowska, A. Rozmysłowska, L. Chlubny, A. Olszyna, JMEP. 2019, 28, 1272–1277.
Y. Hu, Z. Xu, J. Pu, L. Hu, Y. Zi, M. Wang, X. Feng, W. Huang, Front. Chem. 2022, 10, 1090905.
X. Wang, M. Yao, L. Ma, P. Yu, T. Lu, L. Zhang, X. Yuan, Y. Zhang, J. Ye, Adv. Healthcare Mater. 2021, 10, 2100392.
S. D. Brugger, C. Baumberger, M. Jost, W. Jenni, U. Brugger, K. Mühlemann, PLoS One. 2012, 7, e33695.
Y. J. Hsu, A. Nain, Y. F. Lin, Y. T. Tseng, Y. J. Li, A. Sangili, P. Srivastava, H. Yu, Y. Huang, C. Huang, H. Chang, J. Nanobiotechnol. 2022, 20, 235.
X. Zhu, Y. Zhu, K. Jia, B. S. Li, Y. Abraha, W. Peng, F. Zhang, X. Fan, L. Zhang, Nanoscale. 2020, 12, 19129–19141.
T. J. Silhavy, D. Kahne, S. Walker, Cold Spring. Harb. 2010, 2, a000414.
A. Bharadwaj, A. Rastogi, S. Pandey, S. Gupta, J. S. Sohal, BioMed Res. Int. 2022, 2022, 5419874.
M. A. Unal, F. Bayrakdar, L. Fusco, O. Besbinar, C. E. Shuck, S. Yalcin, M. T. Erken, A. Ozkul, C. Gurcan, O. Panatli, G. Y. Summak, C. Gokce, M. Orecchioni, A. Gazzi, F. Vitale, J. Somers, E. Demir, S. S. Yildiz, H. Nazir, J. C. Grivel, D. Bedognetti, A. Crisanti, K. C. Akcali, Y. Gogotsi, L. G. Delogu, A. Yilmazer, Nano Today. 2021, 38, 101136.
Z. Zhang, S. Gao, Y. N. Hu, X. Chen, C. Cheng, X. L. Fu, S. S. Zhang, X. L. Wang, Y. W. Che, C. Zhang, R. J. Chai, Adv. Sci. 2022, 9, 2203557.
N. Fenwick, G. Griffin, C. Gauthier, Anim. Welf. 2009, 50, 523–530.
P. Hunter, EMBO Rep. 2015, 16, 1605–1608.
R. R. Mendel, F. Bittner, Biochim. Biophys. Acta Mol. Cell Res. 2006, 1763, 621–635.
J. Bilčíková, V. Fialková, E. Kováčiková, M. Miškeje, B. Tombarkiewicz, Z. Kňažická, Contemp. Agric. 2018, 67, 187–195.
K. Y. Sun, Y. Wu, J. Xu, W. Xiong, W. Xu, J. Li, Z. Sun, Z. Lv, X. S. Wu, Q. Jiang, H. L. Cai, D. Shi, Bioact. Mater. 2022, 8, 435–448.
Q. Yang, H. Yin, T. Xu, D. Zhu, J. Yin, Y. Chen, X. Yu, J. Gao, C. Zhang, Y. Chen, Y. Gao, Small. 2020, 16, 1906814.
J. Liu, W. Lu, X. Lu, L. Zhang, H. Dong, Y. Li, Nano Res. 2022, 15, 2558–2566.
S. Huang, Y. Fu, A. Mo, Front. Chem. 2022, 10. 991481.
فهرسة مساهمة: Keywords: biocompatibility; biodegradation; influencing factors; stability; toxicity
المشرفين على المادة: 0 (Anti-Bacterial Agents)
تواريخ الأحداث: Date Created: 20240223 Date Completed: 20240416 Latest Revision: 20240416
رمز التحديث: 20240416
DOI: 10.1002/tcr.202300338
PMID: 38389182
قاعدة البيانات: MEDLINE