Keywords: تحویل انسولین; Ornithine; Redox-responsive; Controlled release; Free radical polymerization; Endocytosis; Endosomal escape; Insulin delivery;
مقالات ISI تحویل انسولین (ترجمه نشده)
مقالات زیر هنوز به فارسی ترجمه نشده اند.
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در صورتی که به ترجمه آماده هر یک از مقالات زیر نیاز داشته باشید، می توانید سفارش دهید تا مترجمان با تجربه این مجموعه در اسرع وقت آن را برای شما ترجمه نمایند.
Keywords: تحویل انسولین; Boronate ester bond; Glycopolymer hydrogel; Glucose-sensitivity; Insulin delivery; Diabetes mellitus;
Keywords: تحویل انسولین; Microneedle; Transdermal patch; Mechanical interlocking; Insulin delivery;
Keywords: تحویل انسولین; Injectable hydrogel; Microsphere; Glucose-responsive; Tissue-adhesive; Insulin delivery;
Keywords: تحویل انسولین; Diabetic therapy; Insulin delivery; Insulin nanoparticles; Layer-by-layer assembly; Long-acting release
Keywords: تحویل انسولین; muscle contraction; endothelial function; microvasculature; insulin delivery; microvascular blood volume; insulin resistance
Keywords: تحویل انسولین; Drug delivery; Layer-by-layer film; Microcapsule; Insulin delivery; Artificial pancreas;
Combination of coating and injectable hydrogel depot to improve the sustained delivery of insulin
Keywords: تحویل انسولین; Injectable; thermoresponsive hydrogel; insulin delivery; poloxamer;
Insulin delivery systems combined with microneedle technology
Keywords: تحویل انسولین; Diabetes; Insulin delivery; Non-invasive; Microneedle;
Design of genipin-crosslinked microgels from concanavalin A and glucosyloxyethyl acrylated chitosan for glucose-responsive insulin delivery
Keywords: تحویل انسولین; Glucose-responsive; Microgel; Chitosan derivative; Concanavalin A; Insulin delivery;
PEGylated starch acetate nanoparticles and its potential use for oral insulin delivery
Keywords: تحویل انسولین; Insulin delivery; Starch acetate; PEG conjugation; Self-aggregation;
Glucose-responsive insulin delivery microhydrogels from methacrylated dextran/concanavalin A: Preparation and in vitro release study
Keywords: تحویل انسولین; Con A; concanavalin A; EGAMA; ethylene glycol acrylate methacrylate; Con A-E; ethylene glycol acrylate methacrylate modified Con A; GMA; glycidyl methacrylate; Dex-G; glycidyl methacrylate modified dextran; PBS; phosphate buffer solution; PEGDMA; polyethy
Glucose and pH dual-responsive concanavalin A based microhydrogels for insulin delivery
Keywords: تحویل انسولین; Microhydrogel; Glucose responsive; pH responsive; Concanavalin A; Insulin delivery;
Biomedical applications of boronic acid polymers
Keywords: تحویل انسولین; Boronic acid; Glucose sensors; Insulin delivery; HIV inhibition; Lipase inhibition;
Development of a multi-parametric model predictive control algorithm for insulin delivery in type 1 diabetes mellitus using clinical parameters
Keywords: تحویل انسولین; Biomedical control; Insulin delivery; Multi-parametric model predictive control; Type 1 diabetes mellitus; BG; blood glucose; CGM; continuous glucose monitoring; CF; correction factor; CHO; carbohydrate; CSII; continuous subcutaneous insulin infusion; FDA
Effects of interpenetration of thermo-sensitive gels by crosslinking of chitosan on nasal delivery of insulin: In vitro characterization and in vivo study
Keywords: تحویل انسولین; Chitosan; Crosslinking; Sustained release; Poloxamer gel; Insulin delivery; Nasal drug delivery
Functionalized injectable hydrogels for controlled insulin delivery
Keywords: تحویل انسولین; pH/temperature-sensitive; Hydrogel; Insulin delivery; Controlled release
Nanoparticulate biopolymers deliver insulin orally eliciting pharmacological response
Keywords: تحویل انسولین; diabetes; insulin delivery; biomaterials; nanospheres; oral absorption;
Rheological characterisation of dextran–concanavalin A mixtures as a basis for a self-regulated drug delivery device
Keywords: تحویل انسولین; Insulin delivery; Formulation; Concanavalin A; Viscosity; Glucose; Diabetes; Self-regulating; Dextran
Future alternative therapies in a quest to halt aberrations in diabetes mellitus
Keywords: تحویل انسولین; Pancreatic islets; Microencapsulation; Pegylation; Insulin delivery; Type 1 and 2 diabetes mellitus; Stem cells;