Fabrication and Characterization of Hyaluronic Acid/Tricalcium Phosphate/Quercetin-Doped Silver Membrane for Guided Bone Regeneration
Abstract:
Guided Bone
Regeneration (GBR) is a crucial technique in promoting bone growth in areas
where bone tissue is deficient. The use of GBR membranes is essential in
preventing the resorption of new bone tissue by the body. This study aims to
develop an electrospun GBR membrane utilizing Hyaluronic Acid (HA) with
Tricalcium Phosphate (TCP) and quercetin-doped silver to explore its potential
in promoting bone regeneration. The novel HA/TCP/quercetin-doped silver
membrane demonstrated favorable biocompatibility, mechanical properties, and
potential to enhance bone growth. This makes it a promising candidate for
clinical applications in GBR. The membrane exhibited superior mechanical
properties, biocompatibility, and ability to promote bone growth both in vitro
and in vivo, indicating its potential as an innovative material for GBR.
References:
[1]. Alqahtani, F., 2023, Periodontal tissue engineering
and regeneration: A review of the current literature. J Periodontol,
94(4), 567-579.
[2]. Buser, D., Dula, K., Belser, U. C., Hirt, H. P.,
Berthold, H., 1995, Localized ridge augmentation using guided bone
regeneration. Clin Oral Implants Res, 6(3), 162-168.
[3]. Dahlin, C., Sennerby, L., Lekholm, U., Linde, A.,
Nyman, S., 1989, Generation of new bone around titanium implants using a
membrane technique: An experimental study in rabbits. Int J Oral Maxillofac
Implants, 4(1), 19-25.
[4]. Dave, P. H., Vishnupriya, V., Gayathri, R., 2016,
Herbal remedies for anxiety and depression—A review. J Adv Pharm Technol
Res, 9, 1253.
[5]. Balaji, V., Priya, V. V., Gayathri, R., 2017,
Awareness of risk factors for obesity among college students in Tamil Nadu: A
questionnaire-based study. J Adv Pharm Technol Res, 10, 1367.
[6]. Gayathri, R., Anuradha, V., 2015, Phytochemical
screening and total phenolic content of aqueous and acetone extracts of seed,
butter, mace of nutmeg (Myristica fragrans Houtt). Int J Pharm Sci
Rev Res.
[7]. Elgali, I., Omar, O., Dahlin, C., Thomsen, P., 2017,
Guided bone regeneration: Materials and biological mechanisms revisited. Eur
J Oral Sci, 125(5), 315-337.
[8]. Hämmerle, C. H. F., Jung, R. E., Feloutzis, A., 2002,
A systematic review of the survival of implants in bone sites augmented with
barrier membranes (guided bone regeneration) in partially edentulous patients. J
Clin Periodontol, 29(Suppl. 3), 226-231.
[9]. Wang, H. L., Boyapati, L., 2006, "PASS"
principles for predictable bone regeneration. Implant Dent, 15(1),
8-17.
[10]. Jerusha, S. P., Gayathri, R., Vishnupriya, V., 2016,
Preliminary phytochemical analysis and cytotoxicity potential of Bacopa
monnieri on oral cancer cell lines. Int J Pharm Sci Rev Res, 39,
4-8.
[11]. Satyamoorthy, K., Gayathri, R., Bhat, K., Saadi, A.,
Bhat, S., 2011, Allele, genotype, and composite genotype effects of IL-1A +4845
and IL-1B +3954 polymorphisms for chronic periodontitis in an Indian
population. Indian J Dent Res, 22(4), 612.
[12]. Wikesjö, U. M., Polimeni, G., Qahash, M., Susin, C.,
Shanaman, R. H., Rohrer, M. D., Wozney, J. M., 2009, Alveolar ridge
augmentation using implants coated with recombinant human bone morphogenetic
protein-2: Histologic observations. J Clin Periodontol, 36(9),
759-766.
[13]. Wang, H. L., Carroll, M. J., 2001, Guided bone
regeneration using bone grafts and collagen membranes. Quintessence Int,
32(7), 504-515.
[14]. Nevins, M., Mellonig, J. T., 1992, Enhancement of the
damaged edentulous ridge to receive dental implants: A combination of allograft
and the Gore-Tex membrane. Int J Periodontics Restorative Dent, 12(2),
96-111.
[15]. Urban, I. A., Monje, A., Wang, H. L., 2019, Horizontal
ridge augmentation with guided bone regeneration. Periodontol 2000,
80(1), 152-172.
[16]. Sculean, A., Gruber, R., Bosshardt, D. D., 2014, Soft
tissue wound healing around teeth and dental implants. J Clin Periodontol,
41(Suppl. 15).
[17]. Kumar, J. K., Surendranath, P., Eswaramoorthy, R.,
2023, Regeneration of immature incisor using platelet-rich fibrin: Report of a
novel clinical application. BMC Oral Health, 23, 69.
[18]. Kishen, A., Cecil, A., Chitra, S., 2023, Fabrication
of hydroxyapatite-reinforced polymeric hydrogel membrane for regeneration. Saudi
Dent J, 35, 678-683.
[19]. Ramamurthy, J., Bajpai, D., 2024, Role of
alginate-based scaffolds for periodontal regeneration of intrabony defects: A
systematic review. World J Dent, 15, 181-187.
[20]. Tirupathi, S., Afnan, L., 2024, Dental pulp-derived
stem cells for facial nerve regeneration and functional repair: A systematic
review of animal studies. Curr Oral Health Rep, 11, 198-214.
[21]. Keziah, V. S., Gayathri, R., Priya, V. V., 2018,
Biodegradable plastic production from corn starch. Drug Invention Today,
10(7), 1315-1317.
[22]. Hirshasri, A.G., Renu, K., Priya, V.V., Gayathri, R.
and Kavitha, S., The Effect of Aspalathin on SMAD2, SMAD3, TGF-β-A Major
Contributor of Inflammation–An In-silico Approach.
[23]. Priya, V., Keerthivasan, S. and Kaviyarasi, R.,
Determining the Dual Effect of Mirabegron on Anticancer Mechanism and Brown
Adipose Tissue Activation-An in-silico Approach.
[24]. Juvairiya Fathima,
A., Renu, K., Priya, V.V., Gayathri, R. and Kavitha, S., Determining the Role
of Caffeic Acid on Lipogenic Regulators: An In-Silico Approach.
[25]. Manoharan, S. A. D., Vishnupriya, V. A. D., Gayathri,
R., 2015, Phytochemical analysis and in vitro antioxidant activity of jojoba
oil. Int J Pharm Sci Rev Res, 8(6), 512-516.
[26]. Miron, R. J., Bosshardt, D. D., 2018, OsteoMacs: Key
players around bone biomaterials. Biomaterials, 195, 176-184.
[27]. Retzepi, M., Donos, N., 2010, Guided bone
regeneration: Biological principle and therapeutic applications. Clin Oral
Implants Res, 21(6), 567-576.
[28]. Echhpal, U., Shah, K.K.,
Maiti, S., Raju, L., Eswaramoorthy, R. and Nallaswamy, D., 2024. An In Vitro
Study to Evaluate the Cell Viability, Surface Characteristics, and
Osteoconductive Potential of Ovine Bone Graft Modified with L-Glutamine
Compared to Commercial Bone Graft. International Journal of
Prosthodontics and Restorative Dentistry, 14(3), pp.185-193.
[29]. Shankar, P.,
Arumugam, P. and Kannan, S., 2024. Development, Characterisation and
Biocompatibility Analysis of a Collagen-Gelatin-Hydroxyapatite Scaffold for
Guided Bone Regeneration. Odovtos-International Journal of Dental
Sciences, pp.235-248.
[30]. Franco, R.,
Cervino, G., Vazzana, G., Della Rocca, F., Ferrari, G., Cicciù, M. and
Minervini, G., 2024. Use of Concentrated Growth Factor (CGF) in
Prosthetic-Guided Reconstruction on Two-Wall Bone Defect after Cystectomy: An
Alternative to Traditional Regeneration. European Journal of Dentistry, 18(01),
pp.392-396.
[31]. Awate, S., Bhate,
K., Contractor, M.M., Londhe, U., Samuel, S. and Tirupathi, S., 2024.
Comparison of Activated PRF and Standard PRF in Terms of Evaluation of Quality
Bone Regeneration in Extraction Sockets of Impacted Third Molar: A Split-Mouth
Double-Blind Control Trial. Journal of Maxillofacial and Oral Surgery,
pp.1-9.