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1.
Biosens Bioelectron ; 261: 116496, 2024 Oct 01.
Article in English | MEDLINE | ID: mdl-38875865

ABSTRACT

Accurate intracellular visualization of human telomerase RNA (hTR) is imperative for early diagnosis and treatment monitoring of hepatocellular carcinoma (HCC). While isothermal amplification-based DNA cascade strategies are promising, challenges persist in achieving great intake efficiency of detection probes within tumor cells and enhancing intracellular reaction efficiency. This study introduces a SA@Comb-HCR nanosystem, a highly effective approach for in situ hTR detection in HCC cells. Sodium alginate-coated liposomes ensures efficient nanoprobe delivery, which are then combined with proximity effect-inspired signal amplification. The coating of sodium alginate facilitates receptor-mediated endocytosis, prevents serum protein adhesion, and mitigates cationic liposome cytotoxicity. The designed Comb-like consolidated hairpin probe enhances the concentration of the local reactant, resulting in cascade amplification upon hTR activation. This technique achieves precision detection of intracellularly overexpressed hTR in HCC cells with a remarkable detection limit of 0.7 pM. This approach holds great promise for advancing targeted and sensitive early clinical diagnosis of HCC.


Subject(s)
Biosensing Techniques , Carcinoma, Hepatocellular , Liver Neoplasms , RNA , Telomerase , Humans , Telomerase/genetics , Carcinoma, Hepatocellular/diagnosis , Liver Neoplasms/diagnosis , Liver Neoplasms/genetics , Biosensing Techniques/methods , RNA/chemistry , RNA/genetics , Cell Line, Tumor , Nucleic Acid Amplification Techniques/methods , Limit of Detection , Liposomes/chemistry
2.
Analyst ; 148(8): 1682-1693, 2023 Apr 11.
Article in English | MEDLINE | ID: mdl-36912705

ABSTRACT

The spatiotemporal visualization of intracellular microRNA (miRNA) plays a critical role in the diagnosis and treatment of malignant disease. Although DNAzyme-based biosensing has been regarded as the most promising candidate, inefficient analytical resolution is frequently encountered. Here, we propose a bioorthogonal approach toward high-fidelity imaging of intracellular miRNA by designing a multifunctional nanoprobe that integrates MnO2 nanosheet-mediated intracellular delivery and activation by a fat mass and obesity-associated protein (FTO)-switched positive feedback. MnO2 nanosheets facilitate nanoprobe delivery and intracellular DNAzyme cofactors are released upon glutathione-triggered reduction. Meanwhile, an m6A-caged DNAzyme probe could be bioorthogonally activated by intracellular FTO to eliminate potential off-target activation. Therefore, the activated DNAzyme probe and substrate probe could recognize miRNA to perform cascade signal amplification in the initiation of the release of Mn2+ from MnO2 nanosheets. This strategy realized high-fidelity imaging of intracellular aberrant miRNA within tumor cells with a satisfactory detection limit of 9.7 pM, paving the way to facilitate clinical tumor diagnosis and prognosis monitoring.


Subject(s)
DNA, Catalytic , MicroRNAs , Neoplasms , Humans , Alpha-Ketoglutarate-Dependent Dioxygenase FTO , Diagnostic Imaging , DNA, Catalytic/genetics , Manganese Compounds , MicroRNAs/genetics , Neoplasms/pathology , Oxides , Intracellular Space/genetics
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