C12N15/65

COMPOSITIONS AND METHODS FOR TREATING NON-AGE-ASSOCIATED HEARING IMPAIRMENT IN A HUMAN SUBJECT

Provided herein are compositions that include at least two different nucleic acid vectors, where each of the at least two different vectors includes a coding sequence that encodes a different portion of an otoferlin protein, and the use of these compositions to treat hearing loss in a subject.

TOOLS AND METHODS FOR USING CELL DIVISION LOCI TO CONTROL PROLIFERATION OF CELLS
20220325289 · 2022-10-13 ·

The present disclosure provides molecular tools, methods and kits for using cell division loci (CDLs) to control cell proliferation in animal cells. CDLs, as provided herein, are loci whose transcription product(s) are expressed during cell division. CDLs may be genetically modified, as described herein, to comprise a negative selectable marker and/or an inducible activator-based gene expression system, which allows a user to permit, ablate, and/or inhibit proliferation of the genetically modified cell(s) by adding or removing an appropriate inducer.

TOOLS AND METHODS FOR USING CELL DIVISION LOCI TO CONTROL PROLIFERATION OF CELLS
20220325289 · 2022-10-13 ·

The present disclosure provides molecular tools, methods and kits for using cell division loci (CDLs) to control cell proliferation in animal cells. CDLs, as provided herein, are loci whose transcription product(s) are expressed during cell division. CDLs may be genetically modified, as described herein, to comprise a negative selectable marker and/or an inducible activator-based gene expression system, which allows a user to permit, ablate, and/or inhibit proliferation of the genetically modified cell(s) by adding or removing an appropriate inducer.

ACTIVITY-SPECIFIC CELL ENRICHMENT
20230062579 · 2023-03-02 ·

An activity-specific cell-enrichment method, capable of selection of high-performing host cells and/or expression vectors from a genetically diverse pool of host cells that can comprise expression vectors is provided.

ACTIVITY-SPECIFIC CELL ENRICHMENT
20230062579 · 2023-03-02 ·

An activity-specific cell-enrichment method, capable of selection of high-performing host cells and/or expression vectors from a genetically diverse pool of host cells that can comprise expression vectors is provided.

Temperature based plasmid regulation system
11466278 · 2022-10-11 · ·

The present invention relates to a recombinant E. coli cell harbouring a recombinant plasmid wherein said E. coli cell has a thermo sensitive regulation of an essential E. coli gene.

Temperature based plasmid regulation system
11466278 · 2022-10-11 · ·

The present invention relates to a recombinant E. coli cell harbouring a recombinant plasmid wherein said E. coli cell has a thermo sensitive regulation of an essential E. coli gene.

Gene knockout method

A donor construct and a gene knockout method, as well as a system and kit for the gene knockout are provided. The donor construct is a linear donor DNA or can be cleaved in a cell to produce the linear donor DNA. The gene knockout method uses a marker gene contained in the donor construct to enrich cells in which a gene is knocked out, thereby improving the efficiency of generating the gene knockout by a sequence-specific nuclease.

Gene knockout method

A donor construct and a gene knockout method, as well as a system and kit for the gene knockout are provided. The donor construct is a linear donor DNA or can be cleaved in a cell to produce the linear donor DNA. The gene knockout method uses a marker gene contained in the donor construct to enrich cells in which a gene is knocked out, thereby improving the efficiency of generating the gene knockout by a sequence-specific nuclease.

NEW METHOD FOR DETECTING AND QUANTIFYING RNA
20230133910 · 2023-05-04 ·

The present disclosure relates to an aptamer nucleic acid molecule, a complex containing the aptamer and fluorophore small molecules, a method for detecting intrecellular or extracellular RNA, DNA or other target molecules, as well as a kit containing the aptamer. The aptamer of the present disclosure can specifically bind to fluorophore small molecules, and can significantly improve their fluorescence intensity under light excitation at suitable wavelength.