Patent classifications
C12N15/87
Lipid and Lipid Nanoparticle Formulation for Drug Delivery
The present invention relates to lipids and compositions thereof. In various aspects of the invention, the compositions are lipid nanoparticle compositions used to deliver various nucleic acid molecules and/or therapeutic agents to selected targets, such as cells for gene delivery, and/or to prevent or treat diseases or disorders in a subject in need thereof.
Lipid and Lipid Nanoparticle Formulation for Drug Delivery
The present invention relates to lipids and compositions thereof. In various aspects of the invention, the compositions are lipid nanoparticle compositions used to deliver various nucleic acid molecules and/or therapeutic agents to selected targets, such as cells for gene delivery, and/or to prevent or treat diseases or disorders in a subject in need thereof.
A PEPTIDE FOR THE DELIVERY OF ANIONIC MATERIALS
The present invention is directed to a peptide for the delivery of anionic materials, such as anionic therapeutic agents, across a biological barrier, and methods of use thereof. The invention relates to a peptide comprising, or consisting of: X-(Xaa1)a-(Xaa2)b-Y-(Xaa3)c-(Xaa4)d-Z, in which each of X and Z is independently selected from Asn, Cys, Gln, Gly, Ser, Thr and Tyr; in which one of Xaa1 and Xaa2 is His and the other of Xaa1 and Xaa2 is Arg; in which one of Xaa3 and Xaa4 is His and the other of Xaa3 and Xaa4 is Arg; in which the amino functional group of X is, optionally, acylated; in which the carboxylate functional group of Z is, optionally, amidated; in which Y is selected from Ala and Trp; in which each of a and d is independently 2 to 4; and each of b and c is independently 2 to 4, or a salt or amide thereof. The invention also relates to a peptide for use in inducing an immune response in a subject in need thereof or a method for inducing an immune response in a subject comprising the administration of the peptide to a subject in need thereof. The invention also relates to a peptide for use in the treatment and/or prophylaxis of an infection, cancer, wounds in a subject in need thereof or a method for the treatment and/or prophylaxis of an infection, cancer, wounds comprising the administration of the peptide of the first aspect of the invention to a subject in need thereof.
A PEPTIDE FOR THE DELIVERY OF ANIONIC MATERIALS
The present invention is directed to a peptide for the delivery of anionic materials, such as anionic therapeutic agents, across a biological barrier, and methods of use thereof. The invention relates to a peptide comprising, or consisting of: X-(Xaa1)a-(Xaa2)b-Y-(Xaa3)c-(Xaa4)d-Z, in which each of X and Z is independently selected from Asn, Cys, Gln, Gly, Ser, Thr and Tyr; in which one of Xaa1 and Xaa2 is His and the other of Xaa1 and Xaa2 is Arg; in which one of Xaa3 and Xaa4 is His and the other of Xaa3 and Xaa4 is Arg; in which the amino functional group of X is, optionally, acylated; in which the carboxylate functional group of Z is, optionally, amidated; in which Y is selected from Ala and Trp; in which each of a and d is independently 2 to 4; and each of b and c is independently 2 to 4, or a salt or amide thereof. The invention also relates to a peptide for use in inducing an immune response in a subject in need thereof or a method for inducing an immune response in a subject comprising the administration of the peptide to a subject in need thereof. The invention also relates to a peptide for use in the treatment and/or prophylaxis of an infection, cancer, wounds in a subject in need thereof or a method for the treatment and/or prophylaxis of an infection, cancer, wounds comprising the administration of the peptide of the first aspect of the invention to a subject in need thereof.
LOW VOLUME TRANSFECTION
The invention relates to an improved method for the transfection of fungal cells.
LOW VOLUME TRANSFECTION
The invention relates to an improved method for the transfection of fungal cells.
USE OF PERFLUORO-N-OCTANE FOR PIEZO-MEDIATED INTRACYTOPLASMIC SPERM INJECTION
The present invention relates to an operating liquid for Piezo-mediated microinjection. In particular, the present invention relates to use of purified perfluoron-octane or a composition comprising purified perfluoro-n-octane as operating liquid for Piezo-mediated intracytoplasmic sperm injection (Piezo-ICSI). The present invention further relates to methods of fertilising an oocyte in vitro by Piezo-ICSI using purified perfluoro-n-octane or a composition comprising purified perfluoro-noctane as operating liquid and methods of assisted reproduction using methods of the invention.
USE OF PERFLUORO-N-OCTANE FOR PIEZO-MEDIATED INTRACYTOPLASMIC SPERM INJECTION
The present invention relates to an operating liquid for Piezo-mediated microinjection. In particular, the present invention relates to use of purified perfluoron-octane or a composition comprising purified perfluoro-n-octane as operating liquid for Piezo-mediated intracytoplasmic sperm injection (Piezo-ICSI). The present invention further relates to methods of fertilising an oocyte in vitro by Piezo-ICSI using purified perfluoro-n-octane or a composition comprising purified perfluoro-noctane as operating liquid and methods of assisted reproduction using methods of the invention.
NANOSTRAW WELL INSERT DEVICES FOR IMPROVED CELL TRANSFECTION AND VIABILITY
Described herein are nano straw well insert apparatuses (e.g., devices and systems) that include nanotubes extending through and out of a membrane so that a material can pass through the membrane from a fluid reservoir depot and into a cell grown onto the nanotubes when electrical energy (e.g., electroporation energy) is applied. In particular, the device, systems and methods described herein may be adapted for cell growth viability and transfection efficiency (e.g., >70%). These apparatuses may be readily integratable into cell culturing processes for improved transfection efficiency, intracellular transport, and cell viability.
NANOSTRAW WELL INSERT DEVICES FOR IMPROVED CELL TRANSFECTION AND VIABILITY
Described herein are nano straw well insert apparatuses (e.g., devices and systems) that include nanotubes extending through and out of a membrane so that a material can pass through the membrane from a fluid reservoir depot and into a cell grown onto the nanotubes when electrical energy (e.g., electroporation energy) is applied. In particular, the device, systems and methods described herein may be adapted for cell growth viability and transfection efficiency (e.g., >70%). These apparatuses may be readily integratable into cell culturing processes for improved transfection efficiency, intracellular transport, and cell viability.