biases in biomarker studies. EMBO Mol Med
11:e10427
59. Lin L, Zheng J, Yu Q, Chen W, Xing J,
Chen C, Tian R (2018) High throughput
and accurate serum proteome profiling by
integrated sample preparation technology
and single-run data independent mass spectrometry analysis. J Proteomics 174:9–16
60. Pietrowska M, Wlosowicz A, Gawin M,
Widlak P (2019) Advances in experimental
medicine and biology. Springer, New York,
pp 57–76
61. Ferna ´ndez C, Santos HM, Ruı ´z-Romero C,
Blanco FJ, Capelo-Martı ´nez JL (2011) A
comparison of depletion versus equalization
for reducing high-abundance proteins in
human
serum.
Electrophoresis
32:2966–2974
62. Kay R, Barton C, Ratcliffe L, MatharooBall B, Brown P, Roberts J, Teale P, Creaser
C (2008) Enrichment of low molecular
weight serum proteins using acetonitrile precipitation for mass spectrometry based proteomic analysis. Rapid Commun Mass
Spectrom 22:3255–3260
63. Warder SE, Tucker LA, Strelitzer TJ, McKeegan EM, Meuth JL, Jung PM, Saraf A,
Singh B, Lai-Zhang J, Gagne G, Rogers JC
(2009) Reducing agent-mediated precipitation of high-abundance plasma proteins.
Anal Biochem 387:184–193
64. He J, Huang M, Wang D, Zhang Z, Li G
(2014) Magnetic separation techniques in
sample preparation for biological analysis: a
review. J Pharm Biomed Anal 101:84–101
65. Kishikawa N, Kuroda N (2014) Analytical
techniques for the determination of biologically active quinones in biological and environmental samples. J Pharm Biomed Anal
87:261–270
66. Chen H, Deng C, Zhang X (2010) Synthesis
of Fe 3 O 4 @SiO 2 @PMMA core-shell-shell
magnetic microspheres for highly efficient
enrichment of peptides and proteins for
MALDI-ToF MS analysis. Angew Chem Int
Ed 49:607–611
67. Zhao M, Xie Y, Deng C, Zhang X (2014)
Recent advances in the application of coreshell structured magnetic materials for the
separation and enrichment of proteins and
peptides. J Chromatogr A 1357:182–193
68. Kailasa SK, Wu H-F (2010) Surface modified
silver selinide nanoparticles as extracting
probes to improve peptide/protein detection
via nanoparticles-based liquid phase microextraction coupled with MALDI mass spectrometry. Talanta 83:527–534
69. Shastri L, Kailasa SK, Wu HF (2010)
Nanoparticle-single drop microextraction as
multifunctional and sensitive nanoprobes:
binary matrix approach for gold nanoparticles
modified with (4-mercaptophenyliminomethyl)-2-methoxyphenol for peptide and
protein analysis in MALDI-TOF MS. Talanta
81:1176–1182
70. Farokhzad OC, Langer R (2009) Impact of
nanotechnology on drug delivery. ACS Nano
3:16–20
71. Hafner A, Lovric ´ J, Lak GP, Pepic ´ I (2014)
Nanotherapeutics in the EU: an overview on
current state and future directions. Int J
Nanomedicine 9:1005–1023
72. Akhavan O, Ghaderi E, Shahsavar M (2013)
Graphene nanogrids for selective and fast
osteogenic differentiation of human mesenchymal stem cells. Carbon 59:200–211
73. Monopoli MP, A ˚ berg C, Salvati A, Dawson
KA (2012) Biomolecular coronas provide the
biological identity of nanosized materials. Nat
Nanotechnol 7:779–786
74. Mahmoudi M, Lynch I, Ejtehadi MR, Monopoli MP, Bombelli FB, Laurent S (2011) ProteinÀnanoparticle interactions: opportunities
and challenges. Chem Rev 111:5610–5637
75. Caracciolo G (2015) Liposome-protein
corona in a physiological environment: challenges and opportunities for targeted delivery
of
nanomedicines.
Nanomedicine
11:543–557
76. Sakulkhu U, Maurizi L, Mahmoudi M,
Motazacker M, Vries M, Gramoun A, Ollivier
Beuzelin MG, Valle ´e JP, Rezaee F, Hofmann
H (2014) Ex situ evaluation of the composition of protein corona of intravenously
injected superparamagnetic nanoparticles in
rats. Nanoscale 6:11439–11450
77. Wan S, Kelly PM, Mahon E, Sto ¨ckmann H,
Rudd PM, Caruso F, Dawson KA, Yan Y,
Monopoli MP (2015) The “sweet” side of
the protein corona: effects of glycosylation
on nanoparticle-cell interactions. ACS Nano
9:2157–2166
78. Hellstrand E, Lynch I, Andersson A,
Drakenberg T, Dahlb€ ack B, Dawson KA,
Linse S, Cedervall T (2009) Complete highdensity lipoproteins in nanoparticle corona.
FEBS J 276:3372–3381
79. Cedervall T, Lynch I, Lindman S, Bergga ˚rd T,
Thulin E, Nilsson H, Dawson KA, Linse S
(2007) Understanding the nanoparticleprotein corona using methods to quntify
exchange rates and affinities of proteins for
nanoparticles. Proc Natl Acad Sci U S A
104:2050–2055
138
Maria del Pilar Chantada-Va ´ zquez et al.
11:e10427
59. Lin L, Zheng J, Yu Q, Chen W, Xing J,
Chen C, Tian R (2018) High throughput
and accurate serum proteome profiling by
integrated sample preparation technology
and single-run data independent mass spectrometry analysis. J Proteomics 174:9–16
60. Pietrowska M, Wlosowicz A, Gawin M,
Widlak P (2019) Advances in experimental
medicine and biology. Springer, New York,
pp 57–76
61. Ferna ´ndez C, Santos HM, Ruı ´z-Romero C,
Blanco FJ, Capelo-Martı ´nez JL (2011) A
comparison of depletion versus equalization
for reducing high-abundance proteins in
human
serum.
Electrophoresis
32:2966–2974
62. Kay R, Barton C, Ratcliffe L, MatharooBall B, Brown P, Roberts J, Teale P, Creaser
C (2008) Enrichment of low molecular
weight serum proteins using acetonitrile precipitation for mass spectrometry based proteomic analysis. Rapid Commun Mass
Spectrom 22:3255–3260
63. Warder SE, Tucker LA, Strelitzer TJ, McKeegan EM, Meuth JL, Jung PM, Saraf A,
Singh B, Lai-Zhang J, Gagne G, Rogers JC
(2009) Reducing agent-mediated precipitation of high-abundance plasma proteins.
Anal Biochem 387:184–193
64. He J, Huang M, Wang D, Zhang Z, Li G
(2014) Magnetic separation techniques in
sample preparation for biological analysis: a
review. J Pharm Biomed Anal 101:84–101
65. Kishikawa N, Kuroda N (2014) Analytical
techniques for the determination of biologically active quinones in biological and environmental samples. J Pharm Biomed Anal
87:261–270
66. Chen H, Deng C, Zhang X (2010) Synthesis
of Fe 3 O 4 @SiO 2 @PMMA core-shell-shell
magnetic microspheres for highly efficient
enrichment of peptides and proteins for
MALDI-ToF MS analysis. Angew Chem Int
Ed 49:607–611
67. Zhao M, Xie Y, Deng C, Zhang X (2014)
Recent advances in the application of coreshell structured magnetic materials for the
separation and enrichment of proteins and
peptides. J Chromatogr A 1357:182–193
68. Kailasa SK, Wu H-F (2010) Surface modified
silver selinide nanoparticles as extracting
probes to improve peptide/protein detection
via nanoparticles-based liquid phase microextraction coupled with MALDI mass spectrometry. Talanta 83:527–534
69. Shastri L, Kailasa SK, Wu HF (2010)
Nanoparticle-single drop microextraction as
multifunctional and sensitive nanoprobes:
binary matrix approach for gold nanoparticles
modified with (4-mercaptophenyliminomethyl)-2-methoxyphenol for peptide and
protein analysis in MALDI-TOF MS. Talanta
81:1176–1182
70. Farokhzad OC, Langer R (2009) Impact of
nanotechnology on drug delivery. ACS Nano
3:16–20
71. Hafner A, Lovric ´ J, Lak GP, Pepic ´ I (2014)
Nanotherapeutics in the EU: an overview on
current state and future directions. Int J
Nanomedicine 9:1005–1023
72. Akhavan O, Ghaderi E, Shahsavar M (2013)
Graphene nanogrids for selective and fast
osteogenic differentiation of human mesenchymal stem cells. Carbon 59:200–211
73. Monopoli MP, A ˚ berg C, Salvati A, Dawson
KA (2012) Biomolecular coronas provide the
biological identity of nanosized materials. Nat
Nanotechnol 7:779–786
74. Mahmoudi M, Lynch I, Ejtehadi MR, Monopoli MP, Bombelli FB, Laurent S (2011) ProteinÀnanoparticle interactions: opportunities
and challenges. Chem Rev 111:5610–5637
75. Caracciolo G (2015) Liposome-protein
corona in a physiological environment: challenges and opportunities for targeted delivery
of
nanomedicines.
Nanomedicine
11:543–557
76. Sakulkhu U, Maurizi L, Mahmoudi M,
Motazacker M, Vries M, Gramoun A, Ollivier
Beuzelin MG, Valle ´e JP, Rezaee F, Hofmann
H (2014) Ex situ evaluation of the composition of protein corona of intravenously
injected superparamagnetic nanoparticles in
rats. Nanoscale 6:11439–11450
77. Wan S, Kelly PM, Mahon E, Sto ¨ckmann H,
Rudd PM, Caruso F, Dawson KA, Yan Y,
Monopoli MP (2015) The “sweet” side of
the protein corona: effects of glycosylation
on nanoparticle-cell interactions. ACS Nano
9:2157–2166
78. Hellstrand E, Lynch I, Andersson A,
Drakenberg T, Dahlb€ ack B, Dawson KA,
Linse S, Cedervall T (2009) Complete highdensity lipoproteins in nanoparticle corona.
FEBS J 276:3372–3381
79. Cedervall T, Lynch I, Lindman S, Bergga ˚rd T,
Thulin E, Nilsson H, Dawson KA, Linse S
(2007) Understanding the nanoparticleprotein corona using methods to quntify
exchange rates and affinities of proteins for
nanoparticles. Proc Natl Acad Sci U S A
104:2050–2055
138
Maria del Pilar Chantada-Va ´ zquez et al.
