Oral delivery of insulin with intelligent glucose-responsive switch for blood glucose regulation. 2020

Xia Zhou, and Hongwei Wu, and Ruimin Long, and Shibin Wang, and Haiwang Huang, and Yanhua Xia, and Pei Wang, and Yifeng Lei, and Yuanyuan Cai, and Duanhua Cai, and Yuangang Liu
College of Chemical Engineering, Huaqiao University, Xiamen, 361021, China.

BACKGROUND The traditional treatment for diabetes usually requires frequent insulin injections to maintain normoglycemia, which is painful and difficult to achieve blood glucose control. RESULTS To solve these problems, a non-invasive and painless oral delivery nanoparticle system with bioadhesive ability was developed by amphipathic 2-nitroimidazole-L-cysteine-alginate (NI-CYS-ALG) conjugates. Moreover, in order to enhance blood glucose regulation, an intelligent glucose-responsive switch in this nanoparticle system was achieved by loading with insulin and glucose oxidase (GOx) which could supply a stimulus-sensitive turnover strategy. In vitro tests illustrated that the insulin release behavior was switched "ON" in response to hyperglycemic state by GOx catalysis and "OFF" by normal glucose levels. Moreover, in vivo tests on type I diabetic rats, this system displayed a significant hypoglycemic effect, avoiding hyperglycemia and maintaining a normal range for up to 14 h after oral administration. CONCLUSIONS The stimulus-sensitive turnover strategy with bioadhesive oral delivery mode indicates a potential for the development of synthetic GR-NPs for diabetes therapy, which may provide a rational design of proteins, low molecular drugs, as well as nucleic acids, for intelligent releasing via the oral route.

UI MeSH Term Description Entries
D007004 Hypoglycemic Agents Substances which lower blood glucose levels. Antidiabetic,Antidiabetic Agent,Antidiabetic Drug,Antidiabetics,Antihyperglycemic,Antihyperglycemic Agent,Hypoglycemic,Hypoglycemic Agent,Hypoglycemic Drug,Antidiabetic Agents,Antidiabetic Drugs,Antihyperglycemic Agents,Antihyperglycemics,Hypoglycemic Drugs,Hypoglycemic Effect,Hypoglycemic Effects,Hypoglycemics,Agent, Antidiabetic,Agent, Antihyperglycemic,Agent, Hypoglycemic,Agents, Antidiabetic,Agents, Antihyperglycemic,Agents, Hypoglycemic,Drug, Antidiabetic,Drug, Hypoglycemic,Drugs, Antidiabetic,Drugs, Hypoglycemic,Effect, Hypoglycemic,Effects, Hypoglycemic
D007328 Insulin A 51-amino acid pancreatic hormone that plays a major role in the regulation of glucose metabolism, directly by suppressing endogenous glucose production (GLYCOGENOLYSIS; GLUCONEOGENESIS) and indirectly by suppressing GLUCAGON secretion and LIPOLYSIS. Native insulin is a globular protein comprised of a zinc-coordinated hexamer. Each insulin monomer containing two chains, A (21 residues) and B (30 residues), linked by two disulfide bonds. Insulin is used as a drug to control insulin-dependent diabetes mellitus (DIABETES MELLITUS, TYPE 1). Iletin,Insulin A Chain,Insulin B Chain,Insulin, Regular,Novolin,Sodium Insulin,Soluble Insulin,Chain, Insulin B,Insulin, Sodium,Insulin, Soluble,Regular Insulin
D008297 Male Males
D001786 Blood Glucose Glucose in blood. Blood Sugar,Glucose, Blood,Sugar, Blood
D004337 Drug Carriers Forms to which substances are incorporated to improve the delivery and the effectiveness of drugs. Drug carriers are used in drug-delivery systems such as the controlled-release technology to prolong in vivo drug actions, decrease drug metabolism, and reduce drug toxicity. Carriers are also used in designs to increase the effectiveness of drug delivery to the target sites of pharmacological actions. Liposomes, albumin microspheres, soluble synthetic polymers, DNA complexes, protein-drug conjugates, and carrier erythrocytes among others have been employed as biodegradable drug carriers. Drug Carrier
D005947 Glucose A primary source of energy for living organisms. It is naturally occurring and is found in fruits and other parts of plants in its free state. It is used therapeutically in fluid and nutrient replacement. Dextrose,Anhydrous Dextrose,D-Glucose,Glucose Monohydrate,Glucose, (DL)-Isomer,Glucose, (alpha-D)-Isomer,Glucose, (beta-D)-Isomer,D Glucose,Dextrose, Anhydrous,Monohydrate, Glucose
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000284 Administration, Oral The giving of drugs, chemicals, or other substances by mouth. Drug Administration, Oral,Administration, Oral Drug,Oral Administration,Oral Drug Administration,Administrations, Oral,Administrations, Oral Drug,Drug Administrations, Oral,Oral Administrations,Oral Drug Administrations
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D017207 Rats, Sprague-Dawley A strain of albino rat used widely for experimental purposes because of its calmness and ease of handling. It was developed by the Sprague-Dawley Animal Company. Holtzman Rat,Rats, Holtzman,Sprague-Dawley Rat,Rats, Sprague Dawley,Holtzman Rats,Rat, Holtzman,Rat, Sprague-Dawley,Sprague Dawley Rat,Sprague Dawley Rats,Sprague-Dawley Rats

Related Publications

Xia Zhou, and Hongwei Wu, and Ruimin Long, and Shibin Wang, and Haiwang Huang, and Yanhua Xia, and Pei Wang, and Yifeng Lei, and Yuanyuan Cai, and Duanhua Cai, and Yuangang Liu
December 2004, Sheng wu yi xue gong cheng xue za zhi = Journal of biomedical engineering = Shengwu yixue gongchengxue zazhi,
Xia Zhou, and Hongwei Wu, and Ruimin Long, and Shibin Wang, and Haiwang Huang, and Yanhua Xia, and Pei Wang, and Yifeng Lei, and Yuanyuan Cai, and Duanhua Cai, and Yuangang Liu
September 2021, Biomacromolecules,
Xia Zhou, and Hongwei Wu, and Ruimin Long, and Shibin Wang, and Haiwang Huang, and Yanhua Xia, and Pei Wang, and Yifeng Lei, and Yuanyuan Cai, and Duanhua Cai, and Yuangang Liu
May 2017, Advanced materials (Deerfield Beach, Fla.),
Xia Zhou, and Hongwei Wu, and Ruimin Long, and Shibin Wang, and Haiwang Huang, and Yanhua Xia, and Pei Wang, and Yifeng Lei, and Yuanyuan Cai, and Duanhua Cai, and Yuangang Liu
April 2022, Biomacromolecules,
Xia Zhou, and Hongwei Wu, and Ruimin Long, and Shibin Wang, and Haiwang Huang, and Yanhua Xia, and Pei Wang, and Yifeng Lei, and Yuanyuan Cai, and Duanhua Cai, and Yuangang Liu
April 2016, Endocrinologia y nutricion : organo de la Sociedad Espanola de Endocrinologia y Nutricion,
Xia Zhou, and Hongwei Wu, and Ruimin Long, and Shibin Wang, and Haiwang Huang, and Yanhua Xia, and Pei Wang, and Yifeng Lei, and Yuanyuan Cai, and Duanhua Cai, and Yuangang Liu
December 2021, Pharmaceutics,
Xia Zhou, and Hongwei Wu, and Ruimin Long, and Shibin Wang, and Haiwang Huang, and Yanhua Xia, and Pei Wang, and Yifeng Lei, and Yuanyuan Cai, and Duanhua Cai, and Yuangang Liu
January 2024, ACS applied materials & interfaces,
Xia Zhou, and Hongwei Wu, and Ruimin Long, and Shibin Wang, and Haiwang Huang, and Yanhua Xia, and Pei Wang, and Yifeng Lei, and Yuanyuan Cai, and Duanhua Cai, and Yuangang Liu
December 2016, Materials science & engineering. C, Materials for biological applications,
Xia Zhou, and Hongwei Wu, and Ruimin Long, and Shibin Wang, and Haiwang Huang, and Yanhua Xia, and Pei Wang, and Yifeng Lei, and Yuanyuan Cai, and Duanhua Cai, and Yuangang Liu
May 2020, Nature biomedical engineering,
Xia Zhou, and Hongwei Wu, and Ruimin Long, and Shibin Wang, and Haiwang Huang, and Yanhua Xia, and Pei Wang, and Yifeng Lei, and Yuanyuan Cai, and Duanhua Cai, and Yuangang Liu
May 2018, Chemical communications (Cambridge, England),
Copied contents to your clipboard!