Synergistic strategy of riboflavin and lipoids to bioengineer resin dentin hybrid layer.

Syed Sarosh Mahdi, Umer Daood, Zeeshan Sheikh, Salvatore Sauro, Wong Er-Vin, Yip Chun Marn, Wong Siew Shuai, Jasmin Kaur A/P Kuljit Singh, Kiran Rehman, Preena Sidhu, Loo Chee Thou, Angelia Aurell Tang, Ng Hui Ying, Fabian Davamani

Journal: Scientific reports 2025;15(1):20877

PMID: 40595781

Abstract

The study aimed to synthesize and evaluate the effects of an experimental adhesive system containing different concentrations of riboflavin in combination with Lipoid/phosphatidylcholine solutions on the dentin-bonding interface. Lipoid solutions were prepared in riboflavin (RF) experimental self-etching adhesive, (Ct, RF, RFLi, RFLi). Resin-dentin slabs were prepared for hybrid layer evaluation and microtensile strength was tested. Interfacial leakage was also determined using silver tracer nanoleakage. The mechanical properties of collagen fibrils were evaluated. The adhesive was assessed for contact angle and degree of conversion. A biofilm based on Streptococcus mutans, Actinomyces naeslundii, and Streptococcus sanguis was used to evaluate fluorescence in-situ hybridization for antimicrobial analysis. Collagen was examined using a transmission electron microscope with in-situ hybridization. Human macrophages were stained for immunofluorescence. Resin tags were detectable in all adhesive specimens. RFLi preserved adhesive bond strength after long-term aging. Sizes and dispersion of fibrils in RF, RFLi, RFLi were substantially larger (p < 0.05). Contact angle values exhibited significant differences (p < 0.05). Both Ei and Hi were impacted by different adhesives. RFLi group exhibited an increase in the degree of conversion. RFLi displayed well-preserved collagen fibrils. Confocal images showed the presence of dead bacteria amongst RFLi/RFLi groups. CD80 + markers on macrophages were detected in the RFLi/RFLi groups. RFLi modified adhesives show enhanced bonding to dentin and can be expected to prolong the long-term integrity of the resin-dentin interface.

© 2025. The Author(s).

Address: Restorative Dentistry Division, School of Dentistry, IMU, 126, Jalan Jalil Perkasa 19, Bukit Jalil, 57000, Wilayah Persekutuan Kuala Lumpur, Malaysia.; Faculty of Biomedical Science, School of Health Sciences, IMU, Kuala Lumpur, Malaysia.; Athena Center for Advanced Research in Healthcare, Camerino, Italy.; Clinical Oral Health Sciences Division, School of Dentistry, IMU, Kuala Lumpur, Malaysia.; Dental Biomaterials and Minimally Invasive Dentistry, Departmento de Odontologia, Facultad de Ciencias de La Salud Universidad, CEU-Cardenal Herrera, Valencia, Spain.; Department of Therapeutic Dentistry, I. M. Sechenov First Moscow State Medical University, Moscow, Russia.; Department of Biomaterials & Applied Oral Sciences & Dental Clinical Sciences, Faculty of Dentistry, Dalhousie University, 5981 University Ave, Halifax, NS, B3H 1 W2, Canada. [email protected].; School of Biomedical Engineering (SBME), Faculty of Medicine, Dalhousie University, 5981 University Ave, Halifax, NS, B3H 1W2, Canada. [email protected].; Faculty of Dental Medicine and Oral Health Sciences-McGill University, 2001 Av. McGill College, Montreal, QC, H3 A 1G1, Canada. [email protected].; Faculty of Dentistry, University of Toronto, 101 Elm St, Toronto, ON, M5G 2L3, Canada. [email protected].; Restorative Dentistry Division, School of Dentistry, IMU, 126, Jalan Jalil Perkasa 19, Bukit Jalil, 57000, Wilayah Persekutuan Kuala Lumpur, Malaysia. [email protected].; Dental Materials Science, Applied Oral Sciences & Community Dental Care, Faculty of Dentistry, The University of Hong Kong, 34 Hospital Road, Sai Ying Pun, HK, Hongkong. [email protected].
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