Dental Crowns and Bridges: Materials, Procedures, and Clinical Outcomes
Jul 20

Jul 20

Introduction

Dental crowns and bridges are among the most frequently performed fixed prosthodontic procedures worldwide. A crown (or cap) covers an individual tooth to restore its shape, size, strength, and appearance. A bridge replaces one or more missing teeth by anchoring artificial teeth (pontics) to adjacent natural teeth or implants. With advances in material science and digital dentistry, clinicians today have an unprecedented range of options for delivering durable, aesthetic restorations.

Dental Crowns: Indications and Material Selection

Clinical Indications

  • Extensive caries or fracture: When tooth structure loss exceeds 50%, direct restorations (fillings) become inadequate. A crown provides circumferential protection against further fracture.
  • Root canal treated teeth: Endodontically treated posterior teeth have increased fracture risk. Full-coverage crowns are recommended, particularly for molars and premolars.
  • Severe attrition or erosion: Crowns restore vertical dimension and protect against further wear.
  • Aesthetic improvement: Discolored, malformed, or severely misaligned teeth can be restored with all-ceramic crowns for optimal aesthetics.
  • Implant restoration: Crowns are the final prosthetic component for single-tooth implants.

Crown Material Options

Material Advantages Disadvantages Best For
Full Metal (Gold, Base Alloys) Exceptional durability, minimal tooth reduction, no ceramic fracture risk Poor aesthetics, metal allergy risk Posterior teeth, heavy bruxers
Porcelain-Fused-to-Metal (PFM) Good strength, acceptable aesthetics, proven long-term track record Metal margin display, gingival discoloration, ceramic chipping Posterior and anterior, budget-conscious
Lithium Disilicate (e.max) Excellent aesthetics, high flexural strength (360–400 MPa), adhesive bonding Higher cost, technique-sensitive cementation Anterior and posterior, aesthetic zone
Zirconia (Monolithic) Extreme strength (1000+ MPa), tooth-colored, minimal antagonist wear (polished) Opacity challenges for anterior, limited translucency in early generations Posterior bridges, bruxers, full-arch
Zirconia (Layered / High-Translucency) Improved aesthetics, strength 600–900 MPa Potential for veneering ceramic chipping Anterior and posterior, aesthetic bridges
Composite Resin Lowest cost, easy repair, minimal antagonist wear Lower strength, higher wear rate, staining Temporary crowns, budget-limited cases

Dental Bridges: Classification and Design Principles

Traditional Fixed Bridges

  • Conventional bridge: Pontic suspended between two or more abutment crowns. Requires preparation of adjacent healthy teeth. The most common design.
  • Cantilever bridge: Pontic supported by a single abutment crown on one side only. Suitable when only one adjacent tooth is available. Higher leverage forces limit its use to areas of low occlusal load.
  • Maryland bridge (resin-bonded): Pontic with metal or ceramic wings bonded to the lingual surfaces of adjacent teeth. Minimally invasive, preserves enamel. Single-wing designs show better survival than two-wing. 5-year survival approximately 87% in anterior applications.

Implant-Supported Bridges

When multiple teeth are missing, implant-supported bridges provide a fixed solution without involving natural teeth. Two or more implants support a connected prosthesis. This approach preserves adjacent tooth structure and provides superior long-term survival (10-year survival >95%). Compared to traditional bridges, implant-supported restorations show lower annual failure rates and better patient satisfaction.

Pontic Design Considerations

  • Sanitary (hygienic) pontic: Easy to clean but poor aesthetics. Used in non-aesthetic posterior regions.
  • Modified ridge-lap pontic: Slight tissue contact on the buccal aspect only, T-shaped cross-section. Good compromise between aesthetics and hygiene.
  • Ovate pontic: Concave tissue surface extending into a prepared socket. Best aesthetics for anterior regions. Requires excellent oral hygiene.

Clinical Procedure: From Preparation to Cementation

Step 1: Tooth Preparation

Tooth reduction follows material-specific guidelines. All-ceramic crowns require 1.5–2.0 mm occlusal reduction and 1.0–1.5 mm axial reduction. PFM requires 1.5–2.0 mm occlusal and facial reduction, 1.0–1.5 mm lingual. Full metal requires least reduction (0.5–1.0 mm). Chamfer or rounded shoulder finish lines are preferred. Sharp line angles and undercuts must be eliminated.

Step 2: Impression and Temporization

  • Conventional impression: Polyvinyl siloxane (PVS) or polyether materials for accuracy.
  • Digital impression: Intraoral scanners (IOS) capture preparation geometry with high accuracy. Benefits include patient comfort, faster workflow, and reduced remakes. Systems such as CEREC, 3Shape TRIOS, and iTero are widely used.
  • Temporary restoration: Provisional crowns fabricated from bis-acryl composite or PMMA, cemented with temporary (eugenol-free) cement to prevent sensitivity and maintain occlusion.

Step 3: Laboratory or CAD/CAM Fabrication

Conventional fabrication involves wax pattern, investing, casting, and porcelain layering. Digital workflows use CAD software to design the restoration, followed by CAM milling from pre-sintered blocks (lithium disilicate, zirconia) or 3D printing of patterns for casting.

Step 4: Try-In and Cementation

  • Try-in: Assess marginal fit (<50 μm ideal), proximal contacts, occlusion, and aesthetics.
  • Cement selection: Resin-modified glass ionomer (RMGI) for conventional cementation. Adhesive resin cement for all-ceramic restorations (especially lithium disilicate). Zirconia can be conventionally cemented with RMGI when retention form is adequate, or adhesively bonded with MDP-containing primers.
  • Occlusal adjustment: Verify centric and excursive contacts. Polished zirconia causes minimal antagonist wear; unpolished or adjusted surfaces should be repolished.

Longevity and Complications

Systematic reviews report 5-year survival rates: all-ceramic crowns 93–96%, PFM 94–97%, full metal 97%, conventional bridges 88–94%. Common complications include secondary caries, ceramic fracture, loss of retention, endodontic complications, and periodontal issues around abutments. Factors reducing longevity: poor oral hygiene, bruxism, inadequate tooth preparation, and suboptimal cementation technique.

Cost Considerations and Treatment Planning

Crown costs vary by material: composite resin ($300–600), PFM ($600–1000), lithium disilicate ($800–1200), zirconia ($900–1500). Bridge costs multiply per unit. Implant-supported restorations have higher initial costs but lower long-term maintenance. Treatment planning should consider biological cost (tooth structure sacrificed), financial cost, aesthetic demands, and patient preferences.

Conclusion

Dental crowns and bridges remain essential tools in restorative dentistry, offering predictable solutions for tooth restoration and replacement. Material selection should be individualized based on clinical requirements, aesthetic demands, and functional considerations. Digital workflows continue to improve efficiency and precision, while evidence-based cementation protocols enhance longevity.

References

  1. Pjetursson BE, Sailer I, Zwahlen M, Hämmerle CH. A systematic review of the survival and complication rates of all-ceramic and metal-ceramic reconstructions. Dent Mater. 2007;28(1):86–95.
  2. Sailer I, Makarov NA, Thoma DS, et al. All-ceramic or metal-ceramic tooth-supported fixed dental prostheses? A systematic review. Dent Mater. 2015;31(6):624–639.
  3. Raigrodski AJ, Hillstead MB, Meng GK, Chung KH. Survival and complications of zirconia-based fixed dental prostheses: a systematic review. J Prosthet Dent. 2012;107(3):170–177.
  4. Pjetursson BE, Thoma D, Jung R, et al. A systematic review of the survival and complication rates of implant-supported fixed dental prostheses. Clin Oral Implants Res. 2012;23(Suppl 6):22–38.
  5. Edelhoff D, Sorensen JA. Tooth structure removal associated with various preparation designs for anterior teeth. J Prosthet Dent. 2002;87(5):503–509.

Bài viết mới

Surgically Assisted Rapid Palatal Expansion: Indications and Technique

Surgically Assisted Rapid Palatal Expansion: Indications and Technique

Maxillary transverse deficiency is a common problem in adolescent and adult patients, and while rapid palatal expansion works well in the growing child, the mature midpalatal and circummaxillary sutures resist conventional expansion. Surgically assisted rapid palatal expansion, commonly abbreviat...

Screw Access Angle and Esthetics in Implant Crowns

Screw Access Angle and Esthetics in Implant Crowns

The position of the screw access channel is the hidden geometry that decides whether a screw-retained implant crown looks natural or fails esthetically. In the anterior zone the access hole must be brought to the lingual or palatal surface; in the posterior zone it can rest on the occlusal table....

Graftless Implant Placement: When Is It Predictable?

Graftless Implant Placement: When Is It Predictable?

The grafting of a deficient ridge was long seen as a mandatory step before implant placement, and classic teaching recommends a bone graft whenever the residual volume is small. In the same period, a simpler philosophy has matured: in a large share of cases, a favorable site can host an implant w...

Distal Shoe Space Maintainer: Fabrication and Limitations

Distal Shoe Space Maintainer: Fabrication and Limitations

The premature loss of a primary tooth is a common event in the growing child, and the premature loss of the primary first molar before its successor is ready is a particular problem. The loss of the primary first molar often passes without obvious symptoms, but the consequences for the permanent ...

Converting Thin to Thick Gingival Biotype: Surgical Options

Converting Thin to Thick Gingival Biotype: Surgical Options

The gingival biotype describes the thickness and the contour of the gingiva around a tooth or an implant, and it strongly influences the prognosis of every restorative and periodontal procedure. A thin, scalloped biotype is fragile: recession follows minimal trauma, the soft tissue shows through ...

Primary Dentition Eruption: Sequence and Variations

Primary Dentition Eruption: Sequence and Variations

The eruption of the primary teeth is one of the earliest milestones of craniofacial development, and it matters to the pediatric dentist for more than its visual charm. The pattern in which the deciduous teeth appear establishes the arch form, guides the chewing development, and lays the groundwo...

Lingual Nerve Injury in Third Molar Surgery: Prevention

Lingual Nerve Injury in Third Molar Surgery: Prevention

The removal of mandibular third molars is among the most common operations in oral and maxillofacial surgery, and it carries a small but serious risk of damage to the lingual nerve. Injury to this nerve is disabling out of proportion to its frequency, because it produces numbness, altered taste, ...

Impacted Lower Second Molar: Management Options

Impacted Lower Second Molar: Management Options

The mandibular second molar is considered less often than the third molar in discussions of impaction, yet when it fails to erupt the consequences can be substantial. A retained second molar undermines mastication, invites caries and periodontal disease in the adjacent teeth, and can trigger root...

Screw-Retained vs Cement-Retained Implant Crowns

Screw-Retained vs Cement-Retained Implant Crowns

The final crown on a dental implant can be attached to the abutment in two fundamentally different ways: by a screw that passes through the crown into the implant, or by dental cement that bonds the crown onto an abutment. The choice between screw-retention and cement-retention is one of the earl...

Apical Periodontitis: Microbial Pathogenesis

Apical Periodontitis: Microbial Pathogenesis

Apical periodontitis is not primarily a disease of the periapical bone but an inflammatory response to an infection that originates inside the root canal. The periapical lesion is a host reaction to bacteria delivered through the apical foramen, so treatment must eliminate the microbial source. T...