PFM Restorations and Dental Metal Alloys

What porcelain-fused-to-metal (metal-ceramic) crowns and bridges are, the metal alloys under the porcelain, how they are made and fitted, their limits, metal sensitivity and the options without metal.

Written by: Dt. Dilek AKSU GÜLER

What PFM restorations are

A PFM (porcelain-fused-to-metal) restoration has a thin metal framework with porcelain fused onto it in layers. It is also called metal-ceramic, or porcelain bonded to metal. It is used for crowns, which cover a whole tooth, and for bridges, which replace missing teeth.

In Turkish, "kaplama" is used for crowns as well as for veneers (lamina, or yaprak kaplama). A PFM restoration, however, is a full crown or a bridge; it is not a veneer, which covers only the front of a tooth.

The metal framework gives strength, and the porcelain gives a tooth-coloured surface. Metal-ceramic crowns have been in use for decades, and their results have been followed for up to 25 years1. The framework is made of an alloy, a mixture of metals. Alloys are grouped by how much noble metal, such as gold, they contain.

On this page, "we" means our clinic in Antalya. Your dentist will tell you which alloy and which laboratory will be used for your teeth; you can ask for this in writing.

  • A PFM (metal-ceramic) restoration is porcelain fused to a metal framework; it is a full crown or a bridge, not a veneer.
  • The metal is an alloy: high-noble (gold-based), noble (for example palladium-silver) or predominantly base metal (cobalt-chromium or nickel-chromium).
  • For single crowns, five-year survival in studies is close to that of zirconia. The porcelain can chip, and a dark line can show at the gum if it recedes.
  • Allergic reactions to the alloys in metal-ceramic crowns and bridges are reported but poorly documented. Tell your dentist about any metal allergy; options without metal can be considered.
  • Your dentist will tell you which alloy and porcelain are proposed and where the work is made. Ask for this in writing, and keep the record for any dentist who treats you later.

Common uses

  • Single crowns on natural teeth that have lost much of their structure or are at risk of breaking, often back teeth. When a tooth needs a crown at all is covered on our dental crowns page. The same page explains how a crown is made and how metal-ceramic compares with the other crown materials.
  • Bridges that replace one or more missing teeth. Metal-ceramic has been used for decades for long bridges and under heavy loads. Bridge designs and their trade-offs are covered on our dental bridges page.
  • Crowns and bridges on implants. A 2014 review notes that cobalt-chromium, one of the base-metal alloys, has come into use for porcelain-fused-to-metal restorations and implant frameworks2.

The same kinds of alloy are also used without porcelain. A full-metal (gold alloy) crown is not tooth-coloured. It is still an option for back teeth that do not show and for bites with very little space.

Metal alloy categories

The metal under the porcelain is an alloy, a mixture of several metals. The American Dental Association (ADA) classification, published in 2003, groups dental alloys by how much noble metal they contain3. Titanium alloys form a separate group. In dentistry, the noble metals are gold and the platinum-group metals3, such as platinum and palladium. Silver is not counted as a noble metal.

  • High-noble alloys. At least 60 per cent of the alloy by weight is noble metal, and at least 40 per cent is gold.
  • Noble alloys. At least 25 per cent is noble metal. Noble alloys without gold consist mostly of silver, palladium or platinum4.
  • Predominantly base-metal alloys. Less than 25 per cent is noble metal. Nickel-chromium and cobalt-chromium are the most common3; in practice, neither contains noble metals2.

Base-metal alloys came into wider use around 1980, as the price of gold rose3. A 2014 review adds that, in many countries, cobalt-chromium was increasingly used in place of nickel-chromium2. The main reason it gives is concern about the toxic effects of nickel on the body2 when alloys containing it are in the mouth.

Two points when you compare alloys

  • Most long-term evidence comes from gold-based alloys. The authors of a 2020 study note that the traditional alloys were gold-based, and most long-term survival studies of metal-ceramic crowns are based on them4. The survival figures on this page are for metal-ceramic crowns as a group, or, for the 25-year series, for one high-gold alloy. They do not compare one alloy with another.
  • The group alone does not tell you the composition. Each group covers many products with different compositions, so the product name and manufacturer tell your dentist more than the group does.

Assessment and material selection

The material is chosen for each tooth after an examination, with X-rays where needed. The main questions are:

  • How much of the tooth remains, and whether a filling, an onlay or a veneer would be enough. A crown is not the first choice for a healthy tooth whose only problem is its colour or a small flaw in its shape.
  • Where the tooth is, and how much of it shows when you smile.
  • Whether it is a single crown, a bridge or a restoration on an implant, and how many teeth a bridge would span.
  • Your bite, and whether you clench or grind your teeth.
  • How much room there is. The tooth needs enough room for both the metal and the porcelain.
  • Your medical history, including any allergy to metals you know of.

Choosing the alloy is a further step. The authors of the 2020 study write that the dentist chooses the alloy together with the patient4, taking account of known allergies. A 2000 review advised dentists to choose alloys with the lowest release of elements (lowest corrosion)5. In its view, this can be achieved with high-noble or noble alloys that have a single-phase (uniform) structure, but there are exceptions. So it advised choosing each alloy case by case, using the manufacturer's data on corrosion and biological effects. Cost plays a part too: a 2014 review links the wider use of cobalt-chromium to its low cost2.

Ask which alloy is proposed, by group and product name. Ask too why metal-ceramic suits that tooth better than an option without metal.

Laboratory fabrication

Metal-ceramic work is usually made in a dental laboratory from an impression or a digital scan of the prepared teeth. The metal framework is made first. It has traditionally been cast. A 2014 review describes computer-aided milling (CAD/CAM) and laser sintering2 as newer alternatives to casting for cobalt-chromium frameworks. Porcelain is then built up on the framework in layers and fired in a furnace.

The porcelain has to bond well to the metal. The authors of a 2020 laboratory study note that insufficient bonding gives a higher risk of chipping and porcelain fracture4.

Knowing which alloy you received

That 2020 study, from Norway, analysed the metal in 62 metal-ceramic crowns from seven laboratories. Of these, 21 had been made by the laboratories' subcontractors in other countries. Eighteen crowns came with no information, or incomplete information, about the alloy. Of the 44 crowns whose alloy was stated, 13 differed from it by more than 5 per cent by weight or contained a foreign element4. Large differences were more common in the imported crowns, but crowns made in Norway also differed4. The authors call for better quality control between laboratory and dentist4.

The authors point out that a dentist cannot verify the actual alloy content4 of a crown, so the written record of what was used matters. Your dentist will tell you where your restoration will be made and which alloy and porcelain will be used. You can ask for this in writing.

Fitting and clinical checks

The steps below are for a crown on a natural tooth, which usually needs two or three appointments. Bridges and work on several teeth can take longer.

  1. Examination and planning

    You are asked about your medical history, including medicines and any allergy to metals. An examination, with X-rays where needed, decides whether the tooth needs a crown or a smaller restoration, and which material suits it. Any decay or gum problems are treated first.

  2. Preparing the tooth

    Under local anaesthetic, all surfaces of the tooth are reduced just enough for the metal and the porcelain to fit. An impression or a digital scan is taken, the shade is chosen and a temporary crown is fitted.

  3. Trying in the framework

    Often the fit of the metal framework is checked in the mouth before the porcelain is added.

  4. Try-in with the porcelain

    The fit at the gum, the contacts with the neighbouring teeth, the bite and the shade are checked. If the porcelain is adjusted, it should be polished smooth.

  5. Cementing

    Once you agree on the bite and the shade, the crown is cemented in place.

  6. Review

    The bite and the fit at the gum are checked again, and you are given advice on care.

Benefits and limitations

The figures below come from published studies, not from our own records. Being still in place does not mean that a restoration never had a problem or needed a repair.

Benefits

  • A long record. In one practice, 2,340 single crowns made on a high-gold alloy were followed for up to 25 years. Of these, 2,211 were judged to be in a favourable condition when they were cemented. Of every 100 of them, about 97 were estimated to be still in the mouth after 10 years, and 85 after 25 years1. This result belongs to one practice, to selected crowns and to one type of alloy. It cannot be applied to other alloys or to everyone.
  • Strength from the metal. The framework allows use on back teeth and in bridges.
  • Bridges. A 2026 review of 41 studies looked at metal-ceramic and all-ceramic bridges on natural teeth. It estimated that after five years about 91 in every 100 metal-ceramic bridges were in place, against about 83 of lithium disilicate glass-ceramic bridges6. This difference was statistically significant. The figure of about 83 is for lithium disilicate only; the review reported zirconia bridges separately. Decay at the edges and loosening were more common with all-ceramic bridges6.

How long single crowns last

A 2026 review estimated how many of every 100 single crowns on natural teeth would still be in place after five years. For metal-ceramic, single-piece (monolithic) zirconia and zirconia layered with porcelain alike, it was about 977. For single-piece lithium disilicate it was 98 to 99. These estimates cannot be applied directly to bridges or implant crowns.

Limitations

  • It cannot be undone. Tissue is removed from every surface of the tooth for a crown; from then on, the tooth needs a restoration to protect it. For a conventional bridge, the teeth on either side of the gap are reduced in the same way, even when they are sound.
  • Chipping of the porcelain. Fractures can occur in the porcelain layer on top. The same 2026 review found fractures and chipping significantly less common on single-piece lithium disilicate and zirconia crowns7 than on crowns with a porcelain layer. Small chips can sometimes be smoothed or repaired; more extensive damage may mean the crown has to be replaced.
  • Effect on the tooth's nerve. The pooled results of 37 studies cover teeth that were alive at the start. These teeth then received a crown or a partial restoration, or supported a bridge. In about 5 in every 100 of these teeth, the nerve died8. In studies with more than ten years of follow-up, the figure was about 7 in 100. These figures are for all of these restorations together, not for metal-ceramic restorations alone. The certainty of this evidence is low. If the nerve dies, root canal treatment is needed to keep the tooth.
  • New decay. A crown does not protect the tooth beneath it from decay. New decay can develop at its edge or underneath it.
  • Appearance. The metal can affect how the crown looks; see the next section.
  • On implants. A crown on an implant is either cemented or screwed on. A screwed crown has an access hole for the screw, which is closed once the crown is in place. A laboratory test used 40 metal-ceramic molar crowns on implants. Those with an access hole broke under significantly lower loads9 than cemented crowns without one. It was a laboratory test, so it gives no rate of fracture in the mouth. A screwed crown has an advantage too. The authors of a review of 59 studies note that screw-retained restorations are more easily retrievable, so complications can be treated more easily10. Their conclusion was that "none of the fixation methods was clearly advantageous". Cemented restorations had more serious biological complications, such as loss of the implant or of more than 2 mm of bone10. Screw-retained ones had more technical problems10. Because screw-retained restorations are easier to retrieve and appeared to cause fewer serious biological problems, the authors wrote that they "seem to be preferable"10.

Aesthetic and wear considerations

Appearance

The metal framework does not let light through. A metal-ceramic crown can look more opaque than an all-ceramic one, and a dark line may show at its edge if the gum recedes. On a front tooth, lithium disilicate or layered zirconia may match the neighbouring teeth more closely.

The shade is chosen before the restoration is made, usually with a shade guide. A review found that choosing shade by eye alone has lower accuracy and repeatability11, so photographs or a measuring instrument may be used as well. If you plan to whiten your natural teeth, say so before the shade is chosen: whitening does not lighten crowns or veneers12.

Wear of the opposing teeth

A porcelain surface, especially a rough one, can add to wear of the natural tooth it bites against. A 2024 review pooled seven small clinical studies of crowns on back teeth, followed for up to two years. Metal-ceramic and single-piece zirconia crowns caused significantly more wear than natural teeth13. Opposite lithium disilicate crowns, enamel loss showed no clear difference from the wear natural teeth cause on each other, but the estimate was imprecise13. The authors call for larger trials.

After the bite is adjusted, the porcelain should be polished smooth. If you clench or grind your teeth, tell your dentist; a night guard may be recommended.

Metal sensitivity and tissue compatibility

According to a 2026 review, the metal alloys used in dentistry may rarely cause adverse reactions in people who are susceptible14. What the evidence says:

  • Corrosion is the key property. A 2000 review called corrosion the property of a casting alloy that matters most for its effects on the body5. Allergy and other effects come from elements released from the alloy into the mouth. The review found little evidence that casting alloys cause harm elsewhere in the body5.
  • Allergy is reported, but poorly documented. A 2012 systematic review of metal-ceramic crowns and bridges found reactions reported to palladium, gold, nickel and cobalt15. Few studies record them, so how often they happen is not known.
  • Nickel and cobalt. The 2000 review noted that nickel and cobalt have a relatively high potential to cause allergy, but that the true risk remains undefined5. It advised avoiding alloys that contain them where possible. The ADA describes nickel as a common skin allergen, but notes that its effects in the mouth are rarer and less severe3.
  • How often it happens is unclear. A 2026 review looked at people with metal restorations who had symptoms and were tested with skin patch tests. The studies differed widely and often lacked clinically relevant detail, so the review found it difficult to estimate how common dental metal allergy is14.
  • Cobalt-chromium. A 2022 systematic review found that cobalt-chromium alloys could rarely cause sensitisation, irritation or allergic reactions16, mainly in people already allergic to cobalt or chromium. Sensitisation is the process by which the body becomes allergic to a substance. The effects reported most often were soreness, a burning feeling in the lining of the mouth, a dry mouth and redness. Few of its studies in people concerned crowns; others looked at partial dentures, braces or dental technicians. The authors call the data inconsistent.
  • Beryllium and cadmium. The 2000 review advised avoiding alloys that contain beryllium or cadmium, which are known carcinogens in some chemical forms5. It added that such effects from dental casting alloys have not been demonstrated. Today, a metal dental material that meets the international standard ISO 22674 may contain no more than 0.02 per cent beryllium3, according to the ADA.

If you have, or suspect, a metal allergy

  • Before treatment, tell your dentist about any metal allergy you know of, or any reaction to metal you have had.
  • Ask for the full composition of any alloy proposed. An alloy without the metal you react to can then be chosen, or a material without metal. ISO and ADA standards set a rule for alloys labelled as containing no nickel. The packaging must also state that the alloy contains less than 0.1 per cent nickel3. So the label does not mean that there is no nickel at all.
  • If soreness, burning or redness appears around a metal restoration, see your dentist. Symptoms like these are not specific to allergy. Because the treatment is to remove the metal, the 2026 review stresses establishing that the metal is the cause before treatment14.

Reactions to titanium, the metal used for most implants, are covered on our titanium page.

Options without metal

For single crowns on natural teeth, five-year survival is close across metal-ceramic, zirconia and lithium disilicate (see "Benefits and limitations" above). The choice depends on where the tooth is, how much of it remains, your bite and what you expect of its appearance.

  • Zirconia has no metal alloy or metal framework. Depending on the type, it is used on front and back teeth, in bridges and on implants. Patients often call it "zirconium"; its types and limits are explained on our zirconia crowns page.
  • Lithium disilicate glass ceramic has no metal framework and lets more light through. It is used for single crowns, veneers and partial restorations. As a bridge material it did less well in studies than metal-ceramic (see above). Its properties are explained on our lithium disilicate glass ceramic page.
  • The whole ceramic family, from feldspathic porcelain to zirconia, is explained on our porcelain and dental ceramics page.
  • Options other than a crown. A filling or a partial restoration (inlay, onlay) keeps more of the healthy tooth than a full crown.

An abutment is the part that joins a crown to an implant. On an implant, a crown or abutment without metal is still fixed to an implant that is usually made of titanium.

Metal-ceramic (PFM)ZirconiaLithium disilicate (e.max)
Metal alloy or framework?YesNoNo
AppearanceThe metal core blocks light; metal may show at the gum lineVaries with the type; layered zirconia may match neighbouring teeth more closelyLets more light through, much like a natural tooth
Where it is often usedBack teeth and long bridgesBack teeth, bridges, implant crownsSingle crowns, veneers, partial restorations
Known weak pointThe porcelain can chip; metal at the edge; can wear the opposing tooth, more so if the surface is roughIf layered, the porcelain can chip; can wear the opposing tooth, more so if the surface is roughFracture where there is little room and chewing forces are heavy
If you have a metal allergyContains metal: ask for the alloy's full compositionNo metal alloyNo metal

Care and maintenance

Daily cleaning matters most where the crown meets the gum, because new decay can start at its edge.

  • Brush twice a day with a fluoride toothpaste.
  • Clean every day where the crown meets the gum, and under bridges; use interdental brushes or bridge floss.
  • If you clench or grind your teeth, wear the night guard your dentist recommends.
  • Keep up regular check-ups.

When to see a dentist

See a dentist if you notice any of the following.

  • The crown or bridge feels loose or comes off (keep it, and do not glue it back yourself)
  • The porcelain cracks, chips or feels rough
  • Sensitivity that does not settle, or keeps getting worse
  • Pain when you bite, or the crown feels high when you bite
  • Swelling, bleeding or discharge from the gum around the crown

If pain keeps increasing, or you have facial swelling or a high temperature, see a dentist without waiting for the clinic's reply. A dental abscess does not go away on its own and needs urgent treatment by a dentist17.

Emergencies. With a suspected dental abscess, the following need urgent medical help17. Do not wait for a dental appointment: go to a hospital emergency department or call 112.

  • It is hard to breathe, speak, swallow or open your mouth
  • A swollen or painful eye, or sudden problems with your eyesight
  • A lot of swelling inside your mouth

Questions about metal-ceramic work or dental alloys?

Send your question, with photographs of your teeth and an X-ray if you have one, and tell us about any metal allergy you know of. One of our dentists will reply in writing. A reply is not a diagnosis and promises nothing: which material suits a tooth, and whether a restoration is needed at all, is decided at an examination.

Frequently Asked Questions

Are PFM and metal-ceramic the same thing?

Yes. PFM (porcelain fused to metal), metal-ceramic and the Turkish "metal destekli porselen" all mean porcelain fused onto a metal framework. It is a full crown or a bridge, not a veneer, which covers only the front of a tooth.

Which metal is under a PFM crown?

An alloy, a mixture of metals. It may be high-noble (gold-based), noble (for example palladium-silver) or base metal (cobalt-chromium or nickel-chromium). Ask for the alloy's name and manufacturer in writing.

Is a gold alloy better than cobalt-chromium?

There is no single answer. Most long-term studies of metal-ceramic crowns used gold-based alloys, and the figures on this page do not compare alloys. Base-metal alloys cost less, and alloys differ in how much metal they release. Ask why an alloy is proposed for you.

I am allergic to nickel. Can I have a PFM crown?

Tell your dentist before treatment. Some alloys contain nickel, so ask for the full composition of any alloy proposed and whether it contains nickel. A crown without metal, such as zirconia or lithium disilicate, is another option.

Why is there a dark line at the gum around my crown?

On a metal-ceramic crown, the metal edge can show as a dark line if the gum recedes. A crown without metal has no metal edge, though the tooth underneath can still make the edge look darker. Your dentist can check the gum and the fit.

Can a chipped PFM crown be repaired?

Small chips can sometimes be smoothed or repaired. More extensive damage may mean the crown has to be replaced. See a dentist if the porcelain cracks, chips or feels rough.

Will a PFM crown wear down my other teeth?

A porcelain surface, especially a rough one, can wear the natural tooth it bites against. Short studies of back-tooth crowns found more wear opposite metal-ceramic crowns than between natural teeth. The porcelain should be polished smooth after any adjustment.

Dt. Dilek AKSU GÜLER

Dt. Dilek AKSU GÜLER

Dentist · Founder

She has completed advanced training in implantology and works in aesthetic restorations and smile design.

Sources

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  5. Biocompatibility of dental casting alloys: a review. Journal of Prosthetic Dentistry 2000;83(2):223-34 (Wataha JC). 2000.↩
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  7. Survival of monolithic lithium disilicate, monolithic zirconia and metal-ceramic single crowns: systematic review. International Journal of Prosthodontics 2026;39(3):308-324. 2026.↩
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  8. Incidence of pulp necrosis and periapical pathosis after indirect restorations: systematic review and meta-analysis (37 studies, 11,615 teeth). BMC Oral Health 2023. 2023.↩
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  9. Porcelain fracture resistance of screw-retained, cement-retained, and screw-cement-retained implant-supported metal ceramic posterior crowns (in vitro). Journal of Prosthodontics 2010;19(4):263-73. 2010.↩
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  10. Cemented and screw-retained implant reconstructions: a systematic review of the survival and complication rates (59 studies). Clinical Oral Implants Research 2012;23 Suppl 6:163-201. 2012.↩
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