Endodontic Radiopacifying Application of Barium Titanate Prepared through a Combination of Mechanical Milling and Heat Treatment

Author:

Lin Hsiu-Na123,Chen Wei-Wen4,Hsu Chun-Chun567ORCID,Chen May-Show138,Chang Pei-Jung19,Chang Wei-Min110ORCID,Zhang Fang-Hao11,Chen Chin-Yi112ORCID,Lee Pee-Yew111ORCID,Lin Chung-Kwei113ORCID

Affiliation:

1. Research Center of Digital Oral Science and Technology, College of Oral Medicine, Taipei Medical IUniversity, Taipei 110, Taiwan

2. Department of Dentistry, Chang Gung Memorial Hospital, Taipei 105, Taiwan

3. School of Dentistry, College of Oral Medicine, Taipei Medical University, Taipei 110, Taiwan

4. Center of Dental Technology, Chang Gung Memorial Hospital, Linkou, Taoyuan 333, Taiwan

5. School of Respiratory Therapy, College of Medicine, Taipei Medical University, Taipei 110, Taiwan

6. Graduate Institute of Medical Sciences, College of Medicine, Taipei Medical University, Taipei 110, Taiwan

7. Division of Pulmonary Medicine, Department of Internal Medicine, Taipei Medical University Hospital, Taipei 110, Taiwan

8. Division of Prosthodontics, Department of Dentistry, Taipei Medical University Hospital, Taipei 110, Taiwan

9. Graduate Institute of Manufacturing Technology, National Taipei University of Technology, Taipei 106, Taiwan

10. School of Oral Hygiene, College of Oral Medicine, Taipei Medical University, Taipei 110, Taiwan

11. Department of Optoelectronics and Materials Technology, National Taiwan Ocean University, Keelung 202, Taiwan

12. Department of Materials Science and Engineering, Feng Chia University, Taichung 407, Taiwan

13. School of Dental Technology, College of Oral Medicine, Taipei Medical University, Taipei 110, Taiwan

Abstract

Mineral trioxide aggregates (MTA) are commonly used as endodontic filling materials but suffer from a long setting time and tooth discoloration. In the present study, the feasibility of using barium titanate (BTO) for discoloration and a calcium chloride (CaCl2) solution to shorten the setting time was investigated. BTO powder was prepared using high-energy ball milling for 3 h, followed by sintering at 700–1300 °C for 2 h. X-ray diffraction was used to examine the crystallinity and crystalline size of the as-milled and heat-treated powders. MTA-like cements were then prepared using 20–40 wt.% BTO as a radiopacifier and solidified using a 0–30% CaCl2 solution. The corresponding radiopacity, diametral tensile strength (DTS), initial and final setting times, and discoloration performance were examined. The experimental results showed that for the BTO powder prepared using a combination of mechanical milling and heat treatment, the crystallinity and crystalline size increased with the increasing sintering temperature. The BTO sintered at 1300 °C (i.e., BTO-13) exhibited the best radiopacity and DTS. The MTA-like cement supplemented with 30% BTO-13 and solidified with a 10% CaCl2 solution exhibited a radiopacity of 3.68 ± 0.24 mmAl and a DTS of 2.54 ± 0.28 MPa, respectively. In the accelerated discoloration examination using UV irradiation, the color difference was less than 1.6 and significantly lower than the clinically perceptible level (3.7). This novel MTA exhibiting a superior color stability, shortened setting time, and excellent biocompatibility has potential for use in endodontic applications.

Funder

Chang Gung Memorial Hospital

National Science and Technology Council

Publisher

MDPI AG

Subject

General Materials Science

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