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A New Zinc Reinforced Glass Ionomer Cement: A Boon in Dentistry.
Kumar, Amit; Raj, Anil; Singh, Dharmendra Kumar; Donthagani, Shashank; Kumar, Manoj; Ramesh, Kumar.
Afiliação
  • Kumar A; Consultant Endodontist, Patna, Bihar, India.
  • Raj A; Department of Public Health Dentistry, Sarjug Dental College and Hospital, Darbhanga, Bihar, India.
  • Singh DK; Dentist, Primary Health Centre, Dhanarua, Patna, Bihar, India.
  • Donthagani S; Consultant Endodontist, Suryapeth, Telangana, India.
  • Kumar M; Department of Prothodontics and Implantology, Rama Dental College and Hospital, Kanpur, Uttar Pradesh, India.
  • Ramesh K; Department of Dentistry, Anugrah Narayan Magadh Medical College and Hospital, Gaya, Bihar, India.
J Pharm Bioallied Sci ; 13(Suppl 1): S272-S275, 2021 Jun.
Article em En | MEDLINE | ID: mdl-34447091
ABSTRACT

BACKGROUND:

Conventional glass ionomer cement (CGIC) has many beneficial properties, but it has poor physical and mechanical properties. Therefore, new glass ionomer cement (GIC) is manufactured by adding zinc to improve the mechanical properties of GIC ChemFil Rock. This material possesses better flexural tensile strength and compressive strength in comparison to conventional to CGIC.

OBJECTIVES:

The aim of this study was to compare four properties of ZRGI like fracture toughness, surface micro-hardness, abrasive wear, and roughness to other GIC material, which are commercially available as resin-coated glass ionomer (EQUIA FIL). MATERIALS AND

METHODS:

The study was done in dual phase. In phase-1, micro-hardness surface roughness, abrasion of four GIC and a composite resin as control was analyzed and in phase-2, fracture toughness of four GIC was done at 24 h interval so that all cement achieve its peak strength.

RESULTS:

Micro-hardness value of ChemFil Rock was lowest among different GIC groups. All four GIC group exhibit similar abrasion capacities, while composite were more wear-resistant significantly. Roughness change was highest on ChemFil Rock compared to other GIC. EQUIA FIL has the highest fracture toughness, followed by ChemFil Rock.

CONCLUSION:

We can conclude that incorporating zinc in the matrix of chemfil rock increases fracture toughness and good abrasive wear, but it does not improve micro-hardness or surface roughness.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2021 Tipo de documento: Article