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1.
Molecules ; 29(9)2024 Apr 29.
Article in English | MEDLINE | ID: mdl-38731540

ABSTRACT

Deferoxamine, an iron chelator used to treat diseases caused by excess iron, has had a Food and Drug Administration-approved status for many years. A large number of studies have confirmed that deferoxamine can reduce inflammatory response and promote angiogenesis. Blood vessels play a crucial role in sustaining vital life by facilitating the delivery of immune cells, oxygen, and nutrients, as well as eliminating waste products generated during cellular metabolism. Dysfunction in blood vessels may contribute significantly to the development of life-threatening diseases. Anti-angiogenesis therapy and pro-angiogenesis/angiogenesis strategies have been frequently recommended for various diseases. Herein, we describe the mechanism by which deferoxamine promotes angiogenesis and summarize its application in chronic wounds, bone repair, and diseases of the respiratory system. Furthermore, we discuss the drug delivery system of deferoxamine for treating various diseases, providing constructive ideas and inspiration for the development of new treatment strategies.


Subject(s)
Deferoxamine , Neovascularization, Physiologic , Deferoxamine/pharmacology , Deferoxamine/therapeutic use , Humans , Animals , Neovascularization, Physiologic/drug effects , Regeneration/drug effects , Wound Healing/drug effects , Neovascularization, Pathologic/drug therapy , Neovascularization, Pathologic/metabolism , Angiogenesis
2.
Adv Healthc Mater ; 13(8): e2303000, 2024 Mar.
Article in English | MEDLINE | ID: mdl-38063809

ABSTRACT

Inducing cell migration from the edges to the center of a wound, promoting angiogenesis, and controlling bacterial infection are very important for diabetic wound healing. Incorporating growth factors and antibiotics into hydrogels for wound dressing is considered a potential strategy to meet these requirements. However, some present drawbacks greatly slow down their development toward application, such as the short half-life and high price of growth factors, low antibiotic efficiency against drug-resistant bacteria, insufficient ability of hydrogels to promote cell migration, etc. Deferoxamine (DFO) can upregulate the expression of HIF-1α, thus stimulating the secretion of angiogenesis-related endogenous growth factors. Copper sulfide (CuS) nanoparticles possess excellent antibacterial performance combined with photothermal therapy (PTT). Herein, DFO and CuS nanoparticles are incorporated into a biomimetic hydrogel, which mimics the structure and function of the extracellular matrix (ECM), abbreviated as DFO/CuS-ECMgel. This biomimetic hydrogel is expected to be able to promote cell adhesion and migration, be degraded by cell-secreted matrix metalloproteinases (MMPs), and then release DFO and CuS nanoparticles at the wound site to exert their therapeutic effects. As a result, the three crucial requirements for diabetic wound healing, "beneficial for cell adhesion and migration, promoting angiogenesis, effectively killing drug-resistant bacteria," can be achieved simultaneously.


Subject(s)
Diabetes Mellitus , Nanoparticles , Humans , Hydrogels/chemistry , Deferoxamine/pharmacology , Deferoxamine/therapeutic use , Copper/chemistry , Photothermal Therapy , Biomimetics , Nanoparticles/chemistry , Diabetes Mellitus/drug therapy , Anti-Bacterial Agents/chemistry
3.
Huan Jing Ke Xue ; 26(4): 95-9, 2005 Jul.
Article in Chinese | MEDLINE | ID: mdl-16212175

ABSTRACT

According to measuring data of various relative pollution materials such as various nitrides, phosphides and chlorophyll along the Three-Gorges valley, and with introducing a special controlling function of new strong nonlinear coupling dynamics model, in which could used to describe complex behavior and process of green algal bloom to exist in slow flow, we studied algal growth mechanism and found some strong interactions and inherence rules when N and P concentration absorbated by algae body varied with the different N and P concentration in the valley. The ratio factor (wi/cx) of the nutritious absorption coefficient of algae wi to nutritious material concentration cx not only reveals the influence relation about nutrition content absorbated by the algae at different algal concentrations, but also characterizes the some correlations between algal growth and various effects of different nutritious materials absorbated by the algae.


Subject(s)
Eukaryota/growth & development , Eutrophication , Phosphorus/analysis , Water Pollutants/analysis , China , Chlorophyll/analysis , Environmental Monitoring , Linear Models
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