heparinoid
Sign in to saveAlso known as Hirudoid, heparinoids
Heparinoids are glycosaminoglycans which are chemically and pharmacologically related to heparin. They include oligosaccharides and sulfated polysaccharides of plant, animal, or synthetic origin. Multiple scientific studies have been conducted on heparinoids.
Research
1,575 papers- Heparinoid Complex-Based Heparin-Binding Cytokines and Cell Delivery Carriers.Molecules (Basel, Switzerland) · 2019
- Effects of heparinoid bridging in patients with mechanical heart valves.Journal of the American Association of Nurse Practitioners · 2020
- Pentosan Polysulfate, a Semisynthetic Heparinoid Disease-Modifying Osteoarthritic Drug with Roles in Intervertebral Disc Repair Biology Emulating the Stem Cell Instructive and Tissue Reparative Properties of Heparan Sulfate.Stem cells and development · 2022
- Efficacy of heparinoid PSS in treating cardiovascular diseases and beyond-A review of 31 years clinical experiences in China.Progress in molecular biology and translational science · 2019
- The Preventive and Therapeutic Effects of Acute and Severe Inflammatory Disorders with Heparin and Heparinoid.Biomolecules · 2024
via PubMed
~4 min read
Article
10 sectionsContents
- Sulfated polysaccharides
- From animal tissues
- From plant sources
- From microbial sources
- History
- Production
- Regulation
- See also
- References
- External links
Heparinoids are glycosaminoglycans which are chemically and pharmacologically related to heparin. They include oligosaccharides and sulfated polysaccharides of plant, animal, or synthetic origin. Multiple scientific studies have been conducted on heparinoids.
Heparinoids, like heparin, act by interacting with heparin binding proteins, generally through ionic interactions or hydrogen bonding. Some examples of heparin binding proteins include antithrombin III. It is thought that much protein interaction with heparin is not direct, and instead heparin binding protein actually interact with glycosaminoglycan (GAG) side chains or mucins bound to the heparin polymer, so it is possible that heparinoids interact with these proteins in a similar way, acquiring GAG side chains in vivo. One counterexample is the protein chymase, which directly binds to heparin.