



Advanced Automatic Microneedling + Electroporation Technology
The EPN Electroporation Needle System is a new-generation professional treatment system combining automatic needling (Auto Microneedle Therapy System / Auto MTS) with electroporation to effectively deliver treatment substances into different tissue depths within the face or scalp.
EPN combines controlled automatic microneedling with electroporation technology. Microneedling creates physical micro-pores within the skin while electroporation creates electrostimulated micro-pores that support enhanced delivery into the tissue.
By needling the underlying skin tissue while simultaneously applying electroporation, EPN is designed to provide effective delivery through electrostimulated micro-pores with shorter treatment time and less discomfort to the patient.
EPN combines two complementary technologies within one compact pen-style handpiece:
Automatic Needling (Auto MTS) + Microneedle Electroporation
Automatic microneedling stimulates the underlying tissue while creating controlled micro-pores that allow treatment substances to permeate into the tissue.
EPN electroporation can be activated through microneedles that penetrate into the dermal layer.
Electroporation instantly creates micro-pores within dermal fibroblast membranes and supports penetration of high-molecular-weight substances into fibroblasts.
EPN uses a specialized disposable 33-gauge, 9-pin electrode needle cartridge.
The nine electrodes are positioned in a specialized configuration:
This positive and negative electrode arrangement is designed to provide a constant electric field throughout the tissue positioned between the electrodes.
EPN provides adjustable control of multiple needle penetration depths up to 2.0 mm.
The penetration depth can be adjusted directly through the depth-control mechanism positioned near the disposable needle cartridge.
The manufacturer's EPN documentation lists professional applications including:
EPN is designed to effectively deliver treatment substances into different tissue depths within both the face and scalp.
The manufacturer's clinical documentation demonstrates EPN treatments performed on scalp areas as well as facial treatment examples involving acne scars and the nasolabial line.
EPN features an operator-friendly pen-style design with a non-slip grip for improved handling during professional procedures.
The ergonomic configuration provides direct access for mounting and dismounting the disposable needle cartridge as well as convenient access to the needle-depth control.
Weight: 4 Oz
EPN allows the professional operator to control needle penetration depth, needling speed, electroporation level, and treatment time.
Cleanse and prepare the selected facial or scalp treatment area according to the treatment protocol.
Open a new separately packaged sterile EPN needle cartridge.
The EPN cartridge consists of a 33-gauge, 9-pin electrode needle system.
Mount the disposable electrode needle cartridge securely onto the front of the EPN handpiece.
Use the needle-depth control mechanism near the cartridge to select the desired penetration depth.
EPN provides adjustable control of multiple needle penetration depths up to 2.0 mm.
Use the control panel to select the desired automatic needling speed.
The selected needling speed is displayed on the LCD screen.
Use the mode-select button to access the electroporation setting.
Use the level decrease/increase controls to select the desired electroporation level.
The selected electroporation level is displayed on the LCD screen.
Apply the selected treatment solution to the treatment area according to the professional treatment protocol.
Press the Start / Stop control to begin treatment.
Move the EPN handpiece systematically across the selected treatment area.
During treatment, automatic needling creates controlled micro-pores while electroporation is delivered through the electrode needles.
The EPN LCD displays:
Press the Start / Stop control when the treatment protocol is complete.
Remove the disposable needle cartridge from the EPN handpiece after completing the procedure.
Treatment Solution โ Automatic Needling โ Micro-Pores โ Electroporation โ Enhanced Delivery
The EPN control panel provides three primary controls:
The LCD provides real-time display of:
| Product Name | EPN |
| System Name | Electroporation Needle System |
| Technology | Automatic Needling (Auto MTS) + Electroporation |
| Treatment Areas | Face and Scalp |
| Needle Type | Disposable Sterilized Electrode Needle |
| Needle Gauge | 33 Gauge |
| Needle Configuration | 9 Pin |
| Electrode Configuration | 8 Circular Electrodes + 1 Central Electrode |
| Electrode Placement | Positive (+) / Negative (-) Cross-Placement |
| Needle Penetration | Adjustable Multiple Depths |
| Maximum Needle Penetration | Up to 2.0 mm |
| Needle Depth Adjustment | Control Knob |
| Needling Speed | Adjustable |
| Electroporation Level | Adjustable |
| Display | LCD |
| LCD Needling Display | Needling Speed |
| LCD Electroporation Display | Electroporation Level |
| LCD Timer Display | Treatment Time |
| Control Button 1 | Mode Select |
| Control Button 2 | Level Decrease / Increase |
| Control Button 3 | Start / Stop |
| Handpiece Design | Ergonomic Pen Type |
| Grip | Non-Slip Grip |
| Needle Connection | Direct Mount / Dismount |
| Needle Packaging | Separately Packaged |
| Needle Quantity | 24 Pieces per Box |
Automatic Needling: Induces effective drug delivery by stimulating tissue through micro-needling and allows treatment substances to permeate into the tissue.
Automatic needling also supports high-molecular-weight substances permeating into the dermal layer and stimulates regeneration through micro-pores.
Microneedle Electroporation: Activated through microneedles penetrating the dermal layer and instantly creates micro-pores within dermal fibroblast membranes.
The technology supports penetration of high-molecular-weight substances into fibroblasts.
The EPN electrode system consists of:
The electrode configuration is designed to provide a constant electric field throughout the tissue located between the electrodes.