STUDY OF THE CYTOTOXICITY OF BIODEGRADABLE POLYURETHANE MEMBRANES FOR GUIDED BONE REGENERATION IN THE MAXILLOFACIAL REGION

Rozhnov A. S., Astapenko O. O., Narazhaiko L. F., Denysenko V. D.

STUDY OF THE CYTOTOXICITY OF BIODEGRADABLE POLYURETHANE MEMBRANES FOR GUIDED BONE REGENERATION IN THE MAXILLOFACIAL REGION


Show/Download

About the author:

Rozhnov A. S., Astapenko O. O., Narazhaiko L. F., Denysenko V. D.

Heading:

MODERN ACHIEVEMENTS OF DENTISTRY

Type of article:

Scientific article

Annotation:

The aim of this study was to evaluate the cytotoxicity of experimental samples of polyurethane membranes intended for use in guided bone regeneration in the maxillofacial region. The biocompatibility of the materials was assessed using a fibroblast cell culture method involving direct contact between the polymer surface and cellular elements under standard in vitro conditions. The tested membranes did not cause any changes in fibroblast growth dynamics, morphology, or migration compared to the control group. The results indicate high biocompatibility of the experimental polyurethane membranes and support their potential as promising materials for application in maxillofacial surgery.

Tags:

biocompatibility, cytotoxicity, fibroblast culture, guided bone regeneration, polyurethane membrane

Bibliography:

  1. Astapenko OO, Rozhnov AS. Principles of Guided Bone Regeneration in Dentistry and Maxillofacial Surgery: Evolution of the Concept and Biological Mechanisms (Review). Actual Dentistry. 2025;4:112-124. DOI: 10.33295/1992-576X-2025-4-112.
  2. Halatenko NA, Malanchuk VO, Rozhnova RA, Astapenko OO, Rudenchik TV. Biolohichno aktyvni poliuretanovi kompozytsii dlia endoprotezuvannia kistkovoi tkanyny. Kyiv: Naukova Dumka; 2020. 230 s. [in Ukrainian].
  3. Malanchuk VO, Shvydcchenko VS, Halatenko NA, Kuliiesh DV. Usunennia periradykuliarnykh defectiv kistky bioactivnymy kompozytamy prolonhovanoi dii. Visnyk stomatolohii. 2018;3:55-62. [in Ukrainian].
  4. Feleshtynskyi YaP, Balan IH, Halatenko NA, Kulesh DV, Vladychuk YaV. Khirurhichne likuvannia pilonidalnykh kist kryzhovo-kuprykovoi dilianky z vykorystanniam kleiu na osnovi sitchastoho poliuretanu. Shpytalna khirurhiia. Zhurnal imeni L. Ya. Kovalchuka. 2021;4:44-48. DOI: 10.11603/2414-4533.2021.4.12715. [in Ukrainian].
  5. Feleshtynsky YP, Derkach KD. Surgical treatment optimization of recurrent abdominal wall hernias associated with ligature fistula. Wiad Lek. 2023;76(3):515-519. DOI: 10.36740/WLek202303108.
  6. Jin M, Hou Y, Kang F. Polydopamine-Coated Copper-Doped Mesoporous Silica/Gelatin–Waterborne Polyurethane Composite: A Multifunctional GBR Membrane Bone Defect Repair. J Funct Biomater. 2025;16(4):122. DOI: 10.3390/jfb16040122.
  7. Karahaliloğlu Z, Hazer B. Thermoplastic Polyurethane-Oleic Acid (TPU-OLE) Membranes for Guided Bone Regeneration. Biopolymers. 2025;116(3):e70010. DOI: 10.1002/bip.70010.
  8. Denysenko VD, Rozhnov AS. Bioresorbable membranes for guided bone regeneration based on polyurethane ureas. Bulletin of Problems Biology and Medicine. 2025;2:343-355. DOI: 10.29254/2077-4214-2025-2-177-343-355.
  9. Lebediev YeV, Konstantinov YuB, Halatenko NA, Yatsenko VP, Rozhnova RA, Maksymenko VB. Toksikoloho-hihiienichni ta doklinichni doslidzhennia polimernykh materialiv i vyrobiv na yikh osnovi medychnoho pryznachennia. Kyiv: Naukova dumka; 2009. 98 s. [in Ukrainian].
  10. Kuliiesh DV, Rozhnova RA, Denisenko VD, Hrytsenko VP, Narazhaiko LF, Halatenko NA. Vyvchennia tsytotoksychnosti ta biosumisnosti izotsianuratvmisnykh pinopolyuretansechovyn, napovnenykh dakarbazinom dlia zastosuvannia v medytsyni. Morphologia. 2024;18(2):44- 54. [in Ukrainian].

Publication of the article:

«Bulletin of problems biology and medicine», 2025 Issue 4, 179, addition, 152-155 pages, index UDC 678.664

DOI:

10.29254/2523-4110-2025-4-179/addition-152-155

Was this article helpful?

Leave a Reply

Your email address will not be published. Required fields are marked *


The reCAPTCHA verification period has expired. Please reload the page.