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Precisely engineered to overcome ITP without disrupting standard workflows.

TriNav PEDD

Encompassing the benefits of PEDD with SmartValve technology, the TriNav® Infusion System is compatible with common base catheters and is easy to track through the vasculature because of its single-body design.1,2

Trackable

Featuring a new, single-body design, TriNav is engineered for improved selectivity.1

Compatible

TriNav can be used with 0.035” and 0.038” standard base catheters.2

Simple

Standard preparation and operation that integrates easily into existing workflows.

About Pressure-Enabled Drug Delivery

Clinical Data

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“For Y-90, TriNav clearly provides significantly increased penetration into the liver malignancies that I treat. I have seen greatly increased MAA perfusion and subsequent Y-90 uptake into all tumors.”

—Jon Davidson, MD, FSIR, Chief of Interventional Radiology, University Hospitals of Cleveland

Overcome the limitations of traditional end-hole and balloon catheters.

Target the tumor. Improve response. Spare normal tissue.

Atraumatic, self-expanding/collapsing SmartValve technology1*,3†:

Allows forward blood flow:
Intermittently occlusive design reacts dynamically to varying pressure and flow conditions in sync with the cardiac cycle.1*,3†

Conforms to blood vessels:
Soft, flexible valve has an expanding, self-conforming tip for therapeutic delivery and reflux protection.1*

Protects normal tissue:
Porous mesh allows red blood cells and particles <10 μm to pass through but is strong enough to minimize embolic reflux.1*

Study Designs

*Simulated bench testing in 1.5 mm vessel at 14 mL/min.1
†Ultrasound was employed in a porcine model to image tip performance in relation to the cardiac cycle.3
‡Pressure wire introduced during planning angiogram to measure pressure of PEDD with
SmartValve tip collapsed, expanded and during high-pressure saline flush.4

Engineered for selectivity in complex vasculature.1*

DESIGNED TO MINIMIZE RISK OF VASOSPASM AND VESSEL DAMAGE. Soft, atraumatic tip and hydrophilic coating over the catheter and SmartValve™ maintain safety while tracking.1,8* CLEAR VISIBILITY. Proximal and distal gold marker bands provide visibility of the catheter tip throughout the procedure, as well as the end of the protection zone and area of increased pressure.1* VERY LOW-FRICTION DELIVERY. Inner PTFE layer enables low-friction delivery of embolics and tracking of guidewire.1† IMPROVED SELECTIVITY. Three different levels of soft, flexible polymer.1,8* KINK RESISTANCE. Catheter lumen remains open in tortuous vasculature.1† ENGINEERED FOR PUSHABILITY AND TRACKABILITY. Multilayer composite polymer catheter shaft reinforced with stainless steel braid.1*

Study Designs

*Porcine testing.1,5
†Validated bench testing.1

DESIGNED TO MINIMIZE RISK OF VASOSPASM AND VESSEL DAMAGE. Soft, atraumatic tip and hydrophilic coating over the catheter and SmartValve™ maintain safety while tracking.1,8* CLEAR VISIBILITY. Proximal and distal gold marker bands provide visibility of the catheter tip throughout the procedure, as well as the end of the protection zone and area of increased pressure.1* VERY LOW-FRICTION DELIVERY. Inner PTFE layer enables low-friction delivery of embolics and tracking of guidewire.1† IMPROVED SELECTIVITY. Three different levels of soft, flexible polymer.1,8* KINK RESISTANCE. Catheter lumen remains open in tortuous vasculature.1† ENGINEERED FOR PUSHABILITY AND TRACKABILITY. Multilayer composite polymer catheter shaft reinforced with stainless steel braid.1*

Compatible with all 0.035" and 0.038" standard base catheters.2

Compatible with all 0.035" and 0.038" standard base catheters.2

Let us tell you more.

Contact us to learn more about this improved technology for the proprietary PEDD approach.

References

1. Data on file (510K). TriSalus Life Sciences®, 2019. 2. TriSalus™ TriNav® Infusion System, Instructions for Use. 3. Data on file (animal study video). TriSalus Life Sciences®, 2019. 4. Data on file (CEA 001 trial). TriSalus Life Sciences®, 2019. 5. Data on file (REP-0324). TriSalus Life Sciences®, 2019.