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Общее количество найденных документов : 122
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1.
Clearance kinetics of fullerene C60 nanoparticles from rat lungs after intratracheal C60 instillation and inhalation C60 exposure // Toxicol. Sci., 2010. Vol. 118, N 2.-С.564-573

2.
Comparative toxicity of C[60] aggregates toward mammalian cells: Role of tetrahydrofuran (THF) decomposition // Environ. Sci. and Technol., 2009. Vol. 43, N 16.-С.6378-6384

3.
Comparative toxicity of C[60] aggregates toward mammalian cells: Role of tetrahydrofuran (THF) decomposition // Environ. Sci. and Technol., 2009. Vol. 43, N 16.-С.6378-6384

4.
Comparison of the cytotoxic responses of Escherichia coli (E. coli) AMC 198 to different fullerene suspensions (nC[60]) // Chemosphere, 2012. Vol. 87, N 4.-С.362-368

5.
Cytotoxicity and TNF-'альфа' secretion in RAW264.7 macrophages exposed to different fullerene derivatives // J. Nanosci. and Nanotechnol., 2012. Vol. 12, N 3.-С.2169-2178

6.
Cytotoxicity and TNF-'альфа' secretion in RAW264.7 macrophages exposed to different fullerene derivatives // J. Nanosci. and Nanotechnol., 2012. Vol. 12, N 3.-С.2169-2178

7.
Cytotoxicity and TNF-'альфа' secretion in RAW264.7 macrophages exposed to different fullerene derivatives // J. Nanosci. and Nanotechnol., 2012. Vol. 12, N 3.-С.2169-2178

8.
C[60] exposure augments cardiac ischemia/reperfusion injury and coronary artery contraction in Sprague Dawley rats // Toxicol. Sci., 2014. Vol. 138, N 2.-С.393-402

9.
C[60] fullerene prevents genotoxic effects of doxorubicin in human lymphocytes in vitro // Ukr. Biochem. J., 2015. Vol. 87, N 1.-С.91-98

10.
Dendro[C[60]]fullerene DF-1 provides radioprotection to radiosensitive mammalian cells // Radiat. and Environ. Biophys., 2010. Vol. 49, N 3.-С.437-445

11.
Distribution of fullerene nanomaterials between water and model biological membranes // Langmuir, 2011. Vol. 27, N 19.-С.11899-11905

12.
Effect of repeated application of C[60] combined with UVA radiation onto hairless mouse back skin // Fullerene Sci. and Technol., 1999. Vol. 7, N 2.-С.195-209

13.
Effect of repeated application of C[60] combined with UVA radiation onto hairless mouse back skin // Fullerene Sci. and Technol., 1999. Vol. 7, N 2.-С.195-209

14.
Effects of acute and short-term repeated application of Fullerene C[60] on agonist-induced responses in various tissues of guinea pig and rat // Gen. Pharmacol., 1995. Vol. 26, N 7.-С.1533-1538

15.
Effects of carbon nanomaterials fullerene C[60] and fullerol C[60](OH)[18-22] on gills of fish Cyprinus carpio (Cyprinidae) exposed to ultraviolet radiation // Aquat. Toxicol., 2012. Vol. 114-115.-С.80-87

16.
Effects of N-acetyl-l-cysteine on target sites of hydroxylated fullerene-induced cytotoxicity in isolated rat hepatocytes // Arch. Toxicol., 2014. Vol. 88, N 1.-С.115-126

17.
Effects of short-term and subchronical application of fullerene C[60] compound on guinea pig isolated myocyte electrical activity and rat chromaffin cell differentiation and proliferation // Fullerene Sci. and Technol., 1998. Vol. 6, N 5.-С.815-825

18.
Endocytic mechanisms and toxicity of a functionalized fullerene in human cells // Toxicol. Lett., 2009. Vol. 191, N 2-3.-С.149-157

19.
Evaluation of perfused porcine skin as a model system to quantitate tissue distribution of fullerene nanoparticles // Toxicol. Lett., 2010. Vol. 197, N 1.-С.1-6

20.
Facile preparation of a new gadofullerene-based magnetic resonance imaging contrast agent with high {1}H relaxivity // Bioconjugate Chem., 2009. Vol. 20, N 6.-С.1186-1193

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