
Bezwada Biomedical: US-based specialists in biomedical absorbable polymers.
Official pages and third-party coverage in one index.
bezwadabiomedical.com17 items across 16 mapped pages · Crawled Sep 25, 2026
Official pages and third-party coverage in one index
Bioplastics that are 100% biobased offer great promise for circular economies by using renewable resources, a lower carbon footprint, biodegradation, and enhanced material properties.
Funtionalized Amino Acid Polymers for Implantable Medical Devices and Biomaterials
Hydrolysable Amines from Bezwada Biomedical for Tissue Sealants and Adhesives and Drug Delivery Devices
Nitric oxide and drug releasing biodegradable polymers from Bezwada Biomedical
The flexibility of 3D printing your biodegradable medical device is appealing. Lower manufacturing costs, fast and efficient production, customized designs to fit individualized patient anatomy, and opportunity for point of care manufacturing.
How to switch the type of biodegradable polymer used in an implantable medical device.
Polyurethanes are increasingly becoming the biomaterial of choice for biomedical applications due to their superior mechanical strength, biocompatibility, abrasion resistance, and manufacturability. There are two main categories of medical grade polyurethanes: biostable and biodegradable. Biostable polyurethanes are used in medical devices such as catheters, infusion pumps, and cardiac pacemakers. Absorbable polyurethanes are an emerging biomaterial used for implantable medical devices in wound
BioAbsorb Blog for Biodegradable Polymers Used in Medical Devices and Bioprinting.
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Contact Bezwada Biomedical and share your biodegradable medical device application.
Bezwada Biomedical is a drug-device research company specializing in the creation of absorbable polymers and polyurethanes for various biomedical applications.
Bezwada Biomedical values your privacy and confidentiality.
Bezwada Biomedical is a drug-device research company specializing in the creation of absorbable polymers and polyurethanes for various biomedical applications.