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1.
Nanoscale ; 5(21): 10360-8, 2013 Nov 07.
Artigo em Inglês | MEDLINE | ID: mdl-24056731

RESUMO

We have developed a robust, nanobiotechnology-based electrochemical cytosensing approach with high sensitivity, selectivity, and reproducibility toward the simultaneous multiplex detection and classification of both acute myeloid leukemia and acute lymphocytic leukemia cells. The construction of the electrochemical cytosensor involves the hierarchical assembly of dual aptamer-functionalized, multilayered graphene-Au nanoparticle electrode interface and the utilization of hybrid electrochemical nanoprobes co-functionalized with redox tags, horseradish peroxidase, and cell-targeting nucleic acid aptamers. The hybrid nanoprobes are multifunctional, capable of specifically targeting the cells of interest, amplifying the electrochemical signals, and generating distinguishable signals for multiplex cytosensing. The as-assembled electrode interface not only greatly facilitates the interfacial electron transfer process due to its high conductivity and surface area but also exhibits excellent biocompatibility and specificity for cell recognition and adhesion. A superstructured sandwich-type sensor geometry is adopted for electrochemical cytosensing, with the cells of interest sandwiched between the nanoprobes and the electrode interface. Such an electrochemical sensing strategy allows for ultrasensitive, multiplex acute leukemia cytosensing with a detection limit as low as ~350 cells per mL and a wide linear response range from 5 × 10(2) to 1 × 10(7) cells per mL for HL-60 and CEM cells, with minimal cross-reactivity and interference from non-targeting cells. This electrochemical cytosensing approach holds great promise as a new point-of-care diagnostic tool for early detection and classification of human acute leukemia and may be readily expanded to multiplex cytosensing of other cancer cells.


Assuntos
Técnicas Eletroquímicas , Ouro/química , Grafite/química , Nanopartículas Metálicas/química , Doença Aguda , Aptâmeros de Nucleotídeos/química , Técnicas Biossensoriais , Linhagem Celular Tumoral , Eletrodos , Células HL-60 , Células HeLa , Peroxidase do Rábano Silvestre/química , Peroxidase do Rábano Silvestre/metabolismo , Humanos , Células K562 , Leucemia/diagnóstico , Leucemia/patologia , Oxirredução , Dióxido de Silício/química
2.
Analyst ; 138(21): 6323-30, 2013 Nov 07.
Artigo em Inglês | MEDLINE | ID: mdl-23978949

RESUMO

A robust, nanobiotechnology-based electrochemical cytosensing platform for the detection of acute leukemia cells was developed with high sensitivity, selectivity, acceptable rapidity and excellent extensibility. It utilized the competitive binding of cell-specific aptamers to acute leukemia cells and subsequent voltammetric quantification of the metal signature. Greatly enhanced sensitivity was achieved with dual signal amplification by using Fe3O4 magnetic nanoparticles (MNPs) as carriers to load a large amount of gold nanoparticles (AuNPs) and AuNP-catalyzed silver deposition. The proposed competitive cytosensor showed high sensitivity with a detection limit down to 10 cells. This simple and low-cost electrochemical cytosensing approach offers great promise to extend its application to early detection of human leukemia and possibly to other cancer cells.


Assuntos
Aptâmeros de Nucleotídeos/química , Técnicas Biossensoriais/métodos , Técnicas Eletroquímicas/métodos , Leucemia , Nanopartículas Metálicas/química , Aptâmeros de Nucleotídeos/metabolismo , Células HL-60 , Células HeLa , Humanos , Células K562 , Leucemia/metabolismo , Ligação Proteica/fisiologia
3.
Anal Chem ; 85(11): 5609-16, 2013 Jun 04.
Artigo em Inglês | MEDLINE | ID: mdl-23621478

RESUMO

The variable susceptibility to the tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) treatment observed in various types of leukemia cells is related to the difference in the expression levels of death receptors, DR4 and DR5, on the cell surfaces. Quantifying the DR4/DR5 expression status on leukemia cell surfaces is of vital importance to the development of diagnostic tools to guide death receptor-based leukemia treatment. Taking the full advantages of novel nanobiotechnology, we have developed a robust electrochemical cytosensing approach toward ultrasensitive detection of leukemia cells with detection limit as low as ~40 cells and quantitative evaluation of DR4/DR5 expression on leukemia cell surfaces. The optimization of electron transfer and cell capture processes at specifically tailored nanobiointerfaces and the incorporation of multiple functions into rationally designed nanoprobes provide unique opportunities of integrating high specificity and signal amplification on one electrochemical cytosensor. The high sensitivity and selectivity of this electrochemical cytosensing approach also allows us to evaluate the dynamic alteration of DR4/DR5 expression on the surfaces of living cells in response to drug treatments. Using the TRAIL-resistant HL-60 cells and TRAIL-sensitive Jurkat cells as model cells, we have further verified that the TRAIL susceptibility of various types of leukemia cells is directly correlated to the surface expression levels of DR4/DR5. This versatile electrochemical cytosensing platform is believed to be of great clinical value for the early diagnosis of human leukemia and the evaluation of therapeutic effects on leukemia patients after radiation therapy or drug treatment.


Assuntos
Técnicas Biossensoriais/métodos , Técnicas Eletroquímicas/métodos , Ouro/química , Leucemia/diagnóstico , Nanopartículas Metálicas/química , Receptores de Morte Celular/metabolismo , Antioxidantes/farmacologia , Carbono/química , Eletrodos , Compostos Férricos/metabolismo , Citometria de Fluxo , Células HL-60 , Peroxidase do Rábano Silvestre/metabolismo , Humanos , Imunoensaio , Leucemia/tratamento farmacológico , Leucemia/metabolismo , Melatonina/farmacologia , Nitrogênio/química , Receptores de Superfície Celular/imunologia , Receptores de Superfície Celular/metabolismo , Receptores de Morte Celular/imunologia , Ligante Indutor de Apoptose Relacionado a TNF/metabolismo
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