摘要:
The present disclosure relates to an in vitro method for enhancing engraftment of neurosensory precursor cell comprising the step of contacting an isolated neurosensory precursor cell prior to a transplantation in a subject in need thereof, with a gem-difluorinated C-glycopeptide compound of general formula I, or a pharmaceutically acceptable base, addition salt with an acid, hydrate or solvate thereof:
摘要:
The invention relates to novel glycolipid compounds and pharmaceutical compositions comprising said glycolipids and to processes for preparing said glycolipids. The invention also relates to said glycolipids for use in treating tumours and methods of treating tumours using said glycolipids.
摘要:
A glycopeptide composition including a plurality of glycopeptides and a therapeutic agent or diagnostic compound is provided. Each of the glycopeptide includes a polysaccharide moiety connected to a peptide moiety, and the polysaccharide moiety is covalently bounded to the peptide moiety via a fixed connection point, wherein the fixed connection point is the same in each of the glycopeptide, and the therapeutic agent or diagnostic is conjugated to each of the glycopeptide.
摘要:
The present invention relates to a method for making a sugar-dipeptide conjugate. In particular the invention concerns a method for making a sugar-dipeptide conjugate comprising forming a liquid eutectic mixture of at least two compounds solid at 25° C. and water, and heating the liquid eutectic mixture; wherein the liquid eutectic mixture comprises a dipeptide and a reducing sugar. A further aspect of the invention is a method for preparing a food product.
摘要:
The present invention provides oligopeptides, in particular, Ang-(1-7) derivatives, and methods for using and producing the same. In one particular embodiment, oligopeptides of the invention have higher blood-brain barrier penetration and/or in vivo half-life compared to the native Ang-(1-7), thereby allowing oligopeptides of the invention to be used in a wide variety of clinical applications including in treatment of cognitive dysfunction and/or impairment, pain, and traumatic brain injury.
摘要:
The present invention provides oligopeptides, in particular, Ang-(1-7) derivatives, and methods for using and producing the same. In one particular embodiment, oligopeptides of the invention have higher blood-brain barrier penetration and/or in vivo half-life compared to the native Ang-(1-7), thereby allowing oligopeptides of the invention to be used in a wide variety of clinical applications including in treatment of cognitive dysfunction and/of impairment.
摘要:
The invention relates to amino sphingoglycolipid analogues and peptide derivatives thereof, compositions comprising these compounds and methods of treating or preventing diseases or conditions using such compounds, especially diseases or conditions relating to cancer, infection, atopic disorders, autoimmune disease or diabetes.
摘要:
The present invention relates to a compound of the following formula (I): in which at least one and only one group chosen among R5, R6 and R7 is a group of the following formula: The present invention relates also to uses thereof for preservation and/or protection and/or regeneration of biological materials and or microorganisms and for cosmetic or dermato logical applications such as anti-aging, skin protection and skin regeneration; to culture, storage and/or preservation media comprising such a compound; to cosmetic or dermato logical compositions comprising such a compound; to processes for preparing such a compound; and to synthesis intermediates.
摘要:
Compositions for inducing or enhancing antigenicity of a target cell by modulating the nonsense mediated decay pathway in the target cell. The compositions comprise one or more cell binding ligands providing specificity and delivery of an oligonucleotide or other molecule to the target. These compositions have broad applicability in the treatment of many diseases.
摘要:
The present disclosure provides modified bacteria and modified peptidoglycan comprising modified D-amino acids; compositions comprising the modified bacteria or peptidoglycan; and methods of using the modified bacteria or peptidoglycan. The modified D-amino acids include a bioorthogonal functional group such as an azide, an alkyne or a norbornene group. Also provided are modified peptidoglycans conjugated to a molecule of interest via a linker.