Knowledge Article

What are PCL threads?

พญ.ปุนญนันท์ บุญชญา Drema Clinic
Dr.Punyanan Boonchaya
2 minutes

Key Takeaway

Thread selection should be individualized to skin quality; PCL may benefit thin, less-elastic skin through collagen stimulation, but treatment sequencing with heat-based procedures such as RF or HIFU requires careful consideration because of the material’s thermal limitations.

How to Choose the Right Thread Type for Your Skin: Why Poor Skin Quality Should Start with PCL, and Why Heat-Based Devices Should Always Come Before Thread LiftingAnchor

1. The Starting Point: Why Choosing the "Thread Material" Matters as Much as the "Vector"Anchor

Many patients assume that different thread lifting options simply differ by "model" or "brand." Clinically, however, threads used today fall into three main material categories: PDO (polydioxanone), PLLA (poly-L-lactic acid), and PCL (polycaprolactone) — each with distinct physical properties, degradation timelines, and collagen-stimulating capacity. Choosing the right thread material for each patient's skin condition is just as important as designing the thread vector itself.

2. The Scientific Evidence: Why PCL Stands Out for Collagen StimulationAnchor

A study by Cho and colleagues, published in the Journal of Cosmetic Dermatology in 2021, compared four thread types — a new PCL, pre-existing PCL, PDO, and PLLA — implanted subcutaneously in a mouse model, with tissue examined at 1, 4, and 8 weeks. Key findings included:

  • At 8 weeks, both PCL thread groups showed neocollagenesis increased by approximately 50% compared with the PDO or PLLA groups, a statistically significant difference (p < 0.001).
  • The new PCL group showed significant increases in collagen type III and TGF-β expression at 8 weeks — TGF-β being a key signaling molecule that activates fibroblast collagen production.
  • Regarding wrinkles, the new PCL group showed approximately a 20% reduction in wrinkle area at 8 weeks, although overall wrinkle area differences among all groups were not statistically significant.

These findings align with the known clinical mechanism that PCL is a highly elastic material that degrades more slowly than PDO and PLLA (approximately 1–1.5 years, compared with 6–8 months for PDO and 12 months for PLLA), allowing for a longer duration of continuous collagen stimulation.

3. Why Patients with Poor Skin Quality Should Often Start with PCLAnchor

For patients with poor skin quality — thin, inelastic skin with clear signs of collagen degradation — lifting the facial framework alone, without first improving the skin's underlying structure, may not produce a durable result. Skin lacking sufficient collagen support may not distribute the lifting force from threads evenly, and the outcome may appear less natural.

Given the evidence that PCL more clearly stimulates type III collagen production than other thread materials in the study above, Dr. Punyanun often recommends that these patients begin with a PCL thread lifting program to "recondition" the skin surface and strengthen the underlying collagen structure first, before considering subsequent steps that require a stronger lifting force. That said, individual results vary depending on skin condition and biological response.

4. An Important Limitation: PCL Is Soft and Heat-Sensitive, So Procedure Sequencing MattersAnchor

While PCL stands out for its collagen-stimulating properties, its material characteristics also make it more flexible and softer than PDO and PLLA — an advantage in terms of reduced pain and irritation during placement, but also meaning this polymer class begins to soften at relatively moderate temperatures.

This is clinically significant because heat-based skin-tightening devices, such as radiofrequency (RF) or high-intensity focused ultrasound (HIFU), typically operate in the range of approximately 40–60°C at the skin surface — a range that can potentially affect the stability of implanted PCL threads. If a heat-based device is used on an area after PCL threads have already been placed, the heat may affect the thread's structural integrity and reduce the intended lifting effectiveness.

For this reason, Dr. Punyanun always recommends the following sequencing: if a patient plans to undergo both a heat-based skin-tightening device and PCL thread lifting, the heat-based procedure should be completed first, followed by thread placement afterward — not the reverse — to protect the stability of the implanted threads.

5. Practical Recommendations for PatientsAnchor

  • If your skin shows signs of poor quality — thin, sagging, or lacking elasticity — consult a physician about whether starting with a PCL thread lifting program to recondition the skin surface is appropriate for you.
  • If you're planning both a heat-based tightening device (RF/HIFU) and PCL thread lifting, inform your physician in advance so the procedures can be sequenced correctly — generally, the heat-based device first, followed by thread placement afterward.
  • Don't choose a thread material based on trends alone. A physician should assess skin condition, facial structure, and treatment goals before recommending the appropriate thread type.
  • Outcomes depend on multiple factors, including baseline skin condition, aftercare, and individual biological response, so closely following your physician's guidance is important.
  • The referenced study was conducted in a murine (mouse) model; results in humans may differ and require further clinical follow-up.

6. Summary and Key TakeawayAnchor

Choosing the right thread material for each patient's skin condition is a step just as important as thread vector design. Research evidence shows PCL stands out for stimulating new collagen production compared with PDO and PLLA, making it a reasonable choice for patients who need to recondition and strengthen their skin structure before proceeding to lifting-focused steps. However, PCL's softness and heat sensitivity mean procedure sequencing with heat-based devices must be carefully planned — heat-based procedures should always be completed before thread placement, to preserve thread effectiveness and patient safety.

Dr. Punyanun would like to leave you with this: good treatment planning requires understanding anatomy, material properties, and the correct sequencing of combined procedures, in order to achieve the safest and most durable results for each patient.

FAQ

Why are patients with poor skin quality often advised to start with PCL threads?

Because research evidence shows PCL more clearly stimulates type III collagen production than other thread materials. Starting with PCL to recondition the skin surface helps build a stronger foundation to support subsequent lifting steps. Outcomes still depend on individual physician assessment.

Why should heat-based tightening devices be done before PCL thread lifting, not after?

Because PCL is a softer, more heat-sensitive material than other thread types. Heat-based devices like RF or HIFU operate in a temperature range that can potentially affect the stability of implanted threads. Completing heat-based procedures first, then placing threads afterward, protects the thread's integrity.

How does PCL differ from PDO and PLLA?

All three are biodegradable materials, but they differ in degradation timeline and collagen-stimulating capacity. The referenced study found PCL degrades more slowly and stimulated more collagen production during the 8-week study period.

What happens if a heat-based device is used after PCL threads have already been placed?

The heat may affect the structural stability of the implanted PCL threads, potentially reducing the intended lifting effectiveness. Procedure sequencing should always be planned with your physician in advance.

Can these study findings be applied directly to all patients?

This research was conducted in a murine (mouse) model. Human outcomes may vary based on skin condition, genetics, and other individual factors, so these findings should be used as supporting information alongside a physician's clinical assessment.

Sources & References

Cho SW, Shin BH, Heo CY, Shim JH. Efficacy study of the new polycaprolactone thread compared with other commercialized threads in a murine model. J Cosmet Dermatol. 2021;20:2743–2749. https://doi.org/10.1111/jocd.13883 Note: This article is for educational purposes only and references findings from an animal (murine) study. Human treatment outcomes depend on individual physical condition and physician assessment. Always consult a qualified physician before undergoing any treatment.

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