Literature DB >> 23538604

Imaging mRNA expression levels in living cells with PNA·DNA binary FRET probes delivered by cationic shell-crosslinked nanoparticles.

Zhenghui Wang1, Ke Zhang, Yuefei Shen, Jillian Smith, Sharon Bloch, Samuel Achilefu, Karen L Wooley, John-Stephen Taylor.   

Abstract

Optical imaging of gene expression through the use of fluorescent antisense probes targeted to the mRNA has been an area of great interest. The main obstacles to developing highly sensitive antisense fluorescent imaging agents have been the inefficient intracellular delivery of the probes and high backgrounpan>d signpan>al from unpan>bounpan>d probes. Binary antisense probes have shown great promise as mRNA imaging agents because a signal can only occur if both probes are bound simultaneously to the mRNA target site. Selecting an accessible binding site is made difficult by RNA folding and protein binding in vivo and the need to bind two probes. Even more problematic, has been a lack of methods for efficient cytoplasmic delivery of the probes that would be suitable for eventual applications in vivo in animals. Herein we report the imaging of iNOS mRNA expression in live mouse macrophage cells with PNA·DNA binary FRET probes delivered by a cationic shell crosslinked knedel-like nanoparticle (cSCK). We first demonstrate that FRET can be observed on in vitro transcribed mRNA with both the PNA probes and the PNA·DNA hybrid probes. We then demonstrate that the FRET signal can be observed in live cells when the hybrid probes are transfected with the cSCK, and that the strength of the FRET signal is sequence specific and depends on the mRNA expression level.

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Year:  2013        PMID: 23538604      PMCID: PMC3687806          DOI: 10.1039/c3ob26923j

Source DB:  PubMed          Journal:  Org Biomol Chem        ISSN: 1477-0520            Impact factor:   3.876


  57 in total

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2.  Nucleic acid triggered catalytic drug and probe release: a new concept for the design of chemotherapeutic and diagnostic agents.

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4.  Nucleic acid-triggered catalytic drug release.

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9.  Antisense peptide nucleic acid-functionalized cationic nanocomplex for in vivo mRNA detection.

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10.  Cationic shell-crosslinked knedel-like nanoparticles for highly efficient gene and oligonucleotide transfection of mammalian cells.

Authors:  Ke Zhang; Huafeng Fang; Zhenghui Wang; John-Stephen A Taylor; Karen L Wooley
Journal:  Biomaterials       Date:  2008-11-26       Impact factor: 12.479

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Review 4.  Revealing Nucleic Acid Mutations Using Förster Resonance Energy Transfer-Based Probes.

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6.  Application and Evaluation of [99mTc]-Labeled Peptide Nucleic Acid Targeting MicroRNA-155 in Breast Cancer Imaging.

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Review 7.  Progress of CRISPR-Cas13 Mediated Live-Cell RNA Imaging and Detection of RNA-Protein Interactions.

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  7 in total

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