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Development of a zinc chloride-based chemo-mechanical system for potential minimally invasive dental caries removal system.
Wu, Yu-Tzu; Lu, Po-Wen; Lin, Chih-An; Chang, Liang-Yu; Jaihao, Chonlachat; Peng, Tzu-Yu; Lee, Wei-Fang; Teng, Nai-Chia; Lee, Sheng-Yang; Dwivedi, Ram Prakash; Negi, Poonam; Yang, Jen-Chang.
Affiliation
  • Wu YT; Graduate Institute of Nanomedicine and Medical Engineering, Taipei Medical University, Taipei, Taiwan.
  • Lu PW; Graduate Institute of Biomedical Materials and Tissue Engineering, Taipei Medical University, Taipei, Taiwan.
  • Lin CA; Division of Gastroenterology and Hepatology, Department of Internal Medicine, Shuang Ho Hospital, New Taipei, Taiwan.
  • Chang LY; Graduate Institute of Nanomedicine and Medical Engineering, Taipei Medical University, Taipei, Taiwan.
  • Jaihao C; Graduate Institute of Nanomedicine and Medical Engineering, Taipei Medical University, Taipei, Taiwan.
  • Peng TY; Graduate Institute of Biomedical Materials and Tissue Engineering, Taipei Medical University, Taipei, Taiwan.
  • Lee WF; School of Dentistry, Taipei Medical University, Taipei, Taiwan.
  • Teng NC; School of Dental Technology, Taipei Medical University, Taipei, Taiwan.
  • Lee SY; School of Dentistry, Taipei Medical University, Taipei, Taiwan.
  • Dwivedi RP; School of Dentistry, Taipei Medical University, Taipei, Taiwan.
  • Negi P; School of Electrical and Computer Science Engineering, Shoolini University, Himachal Pradesh, India.
  • Yang JC; School of Pharmaceutical Sciences, Biotechnology and Management Sciences, Shoolini University, Himachal Pradesh, India.
J Dent Sci ; 19(2): 919-928, 2024 Apr.
Article in En | MEDLINE | ID: mdl-38618085
ABSTRACT
Background/

purpose:

The chemo-mechanical caries-removal technique is known to offer advantages of selective dentin caries treatment while leaving healthy dental tissues intact. However, current sodium hypochlorite based reagents usually excessively damage dentin collagen. Therefore, the purpose of this study was to develop a novel chemo-mechanical caries-removal system to preserve the collagen network for subsequent prosthetic restorations. Materials and

methods:

The calfskin-derived collagen was chosen as a model system to investigate the dissolution behavior of collagen under different operating conditions of chemical-ultrasonic treatment systems. The molecular weight, triple-helix structure, the morphology, and functional group of collagen after treatment were investigated.

Results:

Various concentrations of sodium hypochlorite or zinc chloride together with ultrasonic machinery were chosen to investigate. The outcomes of circular dichroism (CD) spectra demonstrated stability of the triple-helix structure after treatment of a zinc chloride solution. In addition, two apparent bands at molecular weights (MWs) of 130 and 121 kDa evidenced the stability of collagen network. The positive 222 nm and 195 nm negative CD absorption band indicated the existence of a triple-helix structure for type I collagen. The preservation of the morphology and functional group of the collagen network on the etched dentin surface were investigated by in vitro dentin decalcification model.

Conclusion:

Unlike NaOCl, the 5 wt% zinc chloride solution combined with ultra-sonication showed dissolution rather than denature as well as degradation of the dentin collagen network. Additional in vivo evaluations are needed to verify its usefulness in clinical applications.
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: J Dent Sci Year: 2024 Document type: Article Affiliation country:

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: J Dent Sci Year: 2024 Document type: Article Affiliation country: