From Molecular Visualization to Spatial Landscapes: Engineering the Next Generation of In Situ Hybridization. [PDF]
Li Z, Luo M, Zhu M, Bai Y.
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This review summarizes the pathogenic role of mitochondria in diseases and highlights mitochondrial transfer and transplantation as emerging therapeutic strategies. It systematically discusses how nanomaterials are engineered to facilitate these processes, and critically examines the current challenges and future perspectives for their clinical ...
Yuanyuan Su +9 more
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Cytogenetic Analysis of Altitude-Associated Chromosome Variations in <i>Campeiostachys nutans</i> From Western Sichuan Plateau Using Multicolor GISH and ND-FISH Approaches. [PDF]
Yang C +7 more
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Fish mapping of rdna and novel tandem repeats in <i>Citrus</i> species. [PDF]
Smotrova YN +3 more
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Unraveling HBV Life Cycle by Fluorescent Microscopy Imaging. [PDF]
Vega VS +5 more
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Ultrasensitive non-enzymatic protein detection using proximity immunoassay with photonic resonator absorption microscopy. [PDF]
Shepherd S +5 more
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Hybridization-based gold nanoprobe assay for the detection of candidemia in ICU patients - A novel method. [PDF]
Subramanian A +3 more
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A Simple Method to Evaluate the Length of Poly(A) Tails in mRNA. [PDF]
Mumenthaler J +10 more
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In situ hybridization with oligonucleotide probes
2002Publisher Summary In situ hybridization (ISH) is an important method for tracing the regional and cellular sites of gene expression (mRNA distribution) within a tissue. This method comes into its own when applied to the intermingled cell types of the brain.
W, Wisden, B J, Morris
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Using Synthetic Oligonucleotides as Probes
Current Protocols in Molecular Biology, 1988AbstractThe protocols in this unit describe procedures for using mixtures of 32P‐labeled oligonucleotides to screen recombinant DNA clones bound to nitrocellulose filters. A partial amino acid sequence of a protein is used to predict the nucleotide sequence of the gene that would encode it.
A, Duby, K A, Jacobs, A, Celeste
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