Ускорит заживление переломов: новое покрытие для имплантатов разработали в ИХ ДВО РАН

Vitamin K2 is used in the composition of coatings

The Institute of Chemistry of the Far Eastern Branch of the Russian Academy of Sciences (IC FEB RAS) has developed innovative bioactive coatings for 3D implants made of titanium and magnesium materials. These implants are designed for implantation in patients with complex fractures.

To speed up the healing process, a magnesium implant is implanted in the patient, the pores of the coating of which are used as containers for delivering bioactive substances. On top, they are covered with a dopamine film, which not only serves as a binder, but also contributes to the formation of centers of crystallization of hydroxyapatite - the future bone tissue. 
Konstantin Nadaraia, Senior Researcher at the Laboratory of Composite Coatings for Biomedical Purposes of the Institute of Chemistry of the Far Eastern Branch of the Russian Academy of Sciences

The use of 3D technologies allows you to personalize implants taking into account the anatomical features of each patient. In the manufacturing process, not only titanium alloys are used, but also magnesium alloys (they have properties similar to bone tissue and can dissolve in the body).

During the research, we found out that vitamin K2 is a more suitable candidate as an osteoinductor. Moreover, its use in coatings, especially together with zoledronic acid, has not yet been considered. We added vancomycin and got a more effective and cheaper option compared to foreign analogues of coatings for implants.
Konstantin Nadaraia, Senior Researcher at the Laboratory of Composite Coatings for Biomedical Purposes of the Institute of Chemistry of the Far Eastern Branch of the Russian Academy of Sciences

The development is undergoing preclinical trials, and the absence of toxicity of the implants has already been proven. This year, scientists plan to begin research on fracture healing using new materials.

Earlier www1.ru reported that a new hydrogel material for wound treatment was created in St. Petersburg.

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Sources
TASS

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