Research Article

Preparation of PLGA-PEG/Hydroxyapatite Composites via Simple Methodology of Film Formation and Assessment of Their Structural, Thermal, and Biological Features

Volume: 10 Number: 4 November 11, 2023
EN

Preparation of PLGA-PEG/Hydroxyapatite Composites via Simple Methodology of Film Formation and Assessment of Their Structural, Thermal, and Biological Features

Abstract

This study aimed to develop polymeric composite films suitable for applications in the field of bone tissue engineering. The preparation of PLGA-PEG/HAP composite films was achieved using a simple methodology, including mixing, sonication, and casting-drying stages. Characterization analyses, including FTIR, SEM, TGA-DSC, and XRD, were conducted to assess the properties of the composite films. The results showed that the PEG polymer decreased the glass transition temperature of the composite, while the HAP did not change. Further, weight remaining (%) values of HAP, PLGA-PEG, and PLGA-PEG/HAP were found as 94.04, 88.28, and 90.57, respectively. Thus, it can be concluded that HAP improves the thermal stability of PLGA-PEG. The outcomes of the analysis, encompassing the evaluation of physical, morphological, and thermal properties, demonstrate that the composite structure comprising PLGA and PEG polymers along with HAP ceramic material may attain the intended quality. Moreover, fluorescence microscopy was employed to visualize the interaction between cells and the composite films following DAPI staining to evaluate cell adhesion and proliferation on the PLGA-PEG/HAP composite films. PLGA-PEG/HAP composite films have no adverse effects on cells, such as toxicity, and they have also exhibited a favorable influence on cell proliferation, supporting an augmentation in cellular growth and adhesion. Overall, the results indicate that the synthesized PLGA-PEG/HAP composite films may hold the potential to serve as a promising candidate for applications in the field of bone tissue engineering.

Keywords

References

  1. 1. Ozder MN, Ciftci F, Rencuzogullari O, Arisan ED, Ustündag CB. In situ synthesis and cell line studies of nano-hydroxyapatite/graphene oxide composite materials for bone support applications. Ceram Int [Internet]. 2023 May 1;49(9):14791–803. Available from: .
  2. 2. Yuan B, Chen H, Zhao R, Deng X, Chen G, Yang X, et al. Construction of a magnesium hydroxide/graphene oxide/hydroxyapatite composite coating on Mg–Ca–Zn–Ag alloy to inhibit bacterial infection and promote bone regeneration. Bioact Mater [Internet]. 2022 Dec 1;18:354–67. Available from: .
  3. 3. Taylor EC, Fitzpatrick CE, Thompson SE, Justice SB. Acute Traumatic Spinal Cord Injury. Adv Emerg Nurs J [Internet]. 2022 Oct 1;44(4):272–80. Available from: .
  4. 4. Serafin A, Rubio MC, Carsi M, Ortiz-Serna P, Sanchis MJ, Garg AK, et al. Electroconductive PEDOT nanoparticle integrated scaffolds for spinal cord tissue repair. Biomater Res [Internet]. 2022 Nov 22;26(1):63. Available from: .
  5. 5. Ma Y, Chen Q, Li W, Su H, Li S, Zhu Y, et al. Spinal cord conduits for spinal cord injury regeneration. Eng Regen [Internet]. 2023 Mar 1;4(1):68–80. Available from: .
  6. 6. Pourkhodadad S, Hosseinkazemi H, Bonakdar S, Nekounam H. Biomimetic engineered approaches for neural tissue engineering: Spinal cord injury. J Biomed Mater Res Part B Appl Biomater [Internet]. 2023 Mar 10;111(3):701–16. Available from: .
  7. 7. Wang M, Xu P, Lei B. Engineering multifunctional bioactive citrate-based biomaterials for tissue engineering. Bioact Mater [Internet]. 2023 Jan;19:511–37. Available from: .
  8. 8. Sun F, Sun X, Wang H, Li C, Zhao Y, Tian J, et al. Application of 3D-Printed, PLGA-Based Scaffolds in Bone Tissue Engineering. Int J Mol Sci [Internet]. 2022 May 23;23(10):5831. Available from: .

Details

Primary Language

English

Subjects

Polymer Science and Technologies

Journal Section

Research Article

Publication Date

November 11, 2023

Submission Date

June 12, 2023

Acceptance Date

September 30, 2023

Published in Issue

Year 2023 Volume: 10 Number: 4

APA
Çiftçi, F., & Özarslan, A. C. (2023). Preparation of PLGA-PEG/Hydroxyapatite Composites via Simple Methodology of Film Formation and Assessment of Their Structural, Thermal, and Biological Features. Journal of the Turkish Chemical Society Section A: Chemistry, 10(4), 1123-1132. https://doi.org/10.18596/jotcsa.1313562
AMA
1.Çiftçi F, Özarslan AC. Preparation of PLGA-PEG/Hydroxyapatite Composites via Simple Methodology of Film Formation and Assessment of Their Structural, Thermal, and Biological Features. JOTCSA. 2023;10(4):1123-1132. doi:10.18596/jotcsa.1313562
Chicago
Çiftçi, Fatih, and Ali Can Özarslan. 2023. “Preparation of PLGA-PEG Hydroxyapatite Composites via Simple Methodology of Film Formation and Assessment of Their Structural, Thermal, and Biological Features”. Journal of the Turkish Chemical Society Section A: Chemistry 10 (4): 1123-32. https://doi.org/10.18596/jotcsa.1313562.
EndNote
Çiftçi F, Özarslan AC (November 1, 2023) Preparation of PLGA-PEG/Hydroxyapatite Composites via Simple Methodology of Film Formation and Assessment of Their Structural, Thermal, and Biological Features. Journal of the Turkish Chemical Society Section A: Chemistry 10 4 1123–1132.
IEEE
[1]F. Çiftçi and A. C. Özarslan, “Preparation of PLGA-PEG/Hydroxyapatite Composites via Simple Methodology of Film Formation and Assessment of Their Structural, Thermal, and Biological Features”, JOTCSA, vol. 10, no. 4, pp. 1123–1132, Nov. 2023, doi: 10.18596/jotcsa.1313562.
ISNAD
Çiftçi, Fatih - Özarslan, Ali Can. “Preparation of PLGA-PEG Hydroxyapatite Composites via Simple Methodology of Film Formation and Assessment of Their Structural, Thermal, and Biological Features”. Journal of the Turkish Chemical Society Section A: Chemistry 10/4 (November 1, 2023): 1123-1132. https://doi.org/10.18596/jotcsa.1313562.
JAMA
1.Çiftçi F, Özarslan AC. Preparation of PLGA-PEG/Hydroxyapatite Composites via Simple Methodology of Film Formation and Assessment of Their Structural, Thermal, and Biological Features. JOTCSA. 2023;10:1123–1132.
MLA
Çiftçi, Fatih, and Ali Can Özarslan. “Preparation of PLGA-PEG Hydroxyapatite Composites via Simple Methodology of Film Formation and Assessment of Their Structural, Thermal, and Biological Features”. Journal of the Turkish Chemical Society Section A: Chemistry, vol. 10, no. 4, Nov. 2023, pp. 1123-32, doi:10.18596/jotcsa.1313562.
Vancouver
1.Fatih Çiftçi, Ali Can Özarslan. Preparation of PLGA-PEG/Hydroxyapatite Composites via Simple Methodology of Film Formation and Assessment of Their Structural, Thermal, and Biological Features. JOTCSA. 2023 Nov. 1;10(4):1123-32. doi:10.18596/jotcsa.1313562

Cited By