Engipore

Pre-Formed Bone Substitute

Engipore

Ideal biomimetic architecture

ENGIpore is an innovative porous hydroxyapatite biomaterial with a trabecular structure similar to that of natural bone. It is a ready available bone graft, manufactured to a highly controlled specification and free of disease transmission risk.

Different shapes have been designed to provide surgeons with a full range of products to meet their clinical needs.

Engipore

TECHNICAL SPECIFICATIONS

Interconnected porosity B
Interconnected porosity C
Interconnected porosity D

Micro, macro and interconnected porosity

This biomaterial has a unique, controlled micro and macro porosity along with an effective structure that supports rapid bone ingrowth and formation.

Its unique structure gives ENGIpore a porosity of almost 90%, and this guarantees an easy access of cells, biological fluids, and attracting the correct molecules throughout the bone substitute.

Rapid osteointegration B
Rapid osteointegration C
Rapid osteointegration D

Rapid osteointegration

Once applied in situ, ENGIpore rapidly absorbs all bio-active proteins, growth factors and bone precursor cells contained in the physiological fluids.

This encourages and begins the biological cascade leading to effective bone regeneration.

Engipore

INDICATIONS

Clinical applications

ENGlpore is designed for use in a broad range of procedures, such as:

Engipore orthopedic bone substitute in granules
bioceramic bone substitute
orthopedic bone substitute
bioceramic bone grafts blocks

ENGlpore may be combined with autologous bone, blood, bone marrow or growth factors.

ENGIpore is not intended to modify or replace standard procedures for the treatment of bone defects, but for filling bony voids or gaps of the skeletal system, that are not intrinsic to the stability of the bony structure. It must be used with appropriate stabilising hardware.

Engipore

SHAPES AND SIZES

ENGIpore Ortho is available with the following codes:

Engipore Chips
Engipore Chips
Code Description Quantity
PFS015005-40-00 1,0 - 2,5 mm - 5 cc 1
PFS015005-41-00 1,0 - 2,5 mm - 15 cc 1
PFS015005-50-00 2,5 - 4,0 mm - 5 cc 1
PFS015005-51-00 2,5 - 4,0 mm - 15 cc 1
PFS015005-52-00 2,5 - 4,0 mm - 30 cc 1
Engipore Wedge
Engipore Wedge
Code Description Quantity
PFS015005-30-00 40x30 mm, incl. 11° 1
PFS015005-31-00 40x30 mm, incl. 15° 1
PFS015005-32-00 40x30 mm, incl. 19° 1
PFS015006-19-00 30x15 mm, incl. 11° 2
PFS015006-20-00 30x15 mm, incl. 15° 2
PFS015006-25-00 30x15 mm, incl. 9° 2
Engipore Block
Engipore Block
Code Description Quantity
PFS015005-21-00 10 x 10 x 12 mm 1
PFS015005-22-00 20 x 10 x 12 mm 1
PFS015005-23-00 30 x 20 x 12 mm 1
PFS015005-24-00 40 x 20 x 12 mm 1
Engipore Hollow Cylinder
Engipore Hollow Cylinder
Code Description Quantity
PFS015008-01-00 Øe = 12 mm Øi = 3 mm h = 40 mm 1
PFS015008-02-00 Øe = 15 mm Øi = 3 mm h = 40 mm 1
PFS015008-03-00 Øe = 18 mm Øi = 3 mm h = 40 mm 1
Engipore SH
Engipore SH
Code Description Quantity
PFS015005-77-00 SH-Small (38 x 25 x 17 - 13 mm) 1
PFS015005-76-00 SH-Medium (41 x 28 x 18 - 14 mm) 1
PFS015005-75-00 SH-Large (45 x 30 x 20 - 15 mm) 1
Explore resources by product

CLINICAL STUDIES

Pre-clinical paper
11/2025 - Macro-scale, scaffold-assisted model of the human bone marrow endosteal niche using hiPSC-vascularized osteoblastic organoids » Learn more
Product: Engipore
Keyword: Performance Biomaterial characteristics
Clinical paper
04/2024 - L. Massari et al. Safety of porous hydroxyapatite bone substitute in Orthopedics and Traumatology: multicentric clinical study. » Learn more Download Download PDF
Product: Engipore
Keyword: Safety
Clinical paper
11/2022 - G. Barbanti Brodano et al. Critical evaluation of the scientific literature concerning bone graft alternatives in spinal surgery and focus on bioceramics. » Learn more
Product: Engipore
Keyword: Safety
Clinical paper
10/2022 - R. Carbonaro et al. Craniotomy Burr Hole Covers: A Comparative Study of Biomechanical, Radiological, and Aesthetic Outcomes Using 3 Different Plug Materials. » Learn more
Product: Engipore
Keyword: Performance Safety
Clinical paper
08/2020 - P.D. Parchi et al. Synthetic Bone Grafting in Aseptic Loosening of Acetabular Cup: Good Clinical and Radiological Outcomes in Contained Bone Defects at Medium-Term Follow up. » Learn more
Product: Engipore
Keyword: Performance Safety
Clinical paper
11/2015 - P. Giorgi et al. Porous HA scaffolds capabilities to induce posterolateral and interbody fusion (arthrodesis): clinical and radiographic analysis at 4 years follow-up. » Learn more
Product: Engipore
Keyword: Performance Safety
Clinical paper
10/2015 - G. Barbanti Brodano et al. A Post-Market Surveillance Analysis of the safety of hydroxyapatite-derived products as bone graft extenders or substitutes for spine fusion. » Learn more
Product: Engipore
Keyword: Safety Spine Fusion
Clinical paper
06/2009 - S. Paderni et al. Major bone defect treatment with an osteoconductive bone substitute. » Learn more
Product: Engipore
Keyword: Performance Safety
Clinical paper
05/2007 - M. Marcacci et al. Stem Cells Associated with Macroporous Bioceramics for Long Bone Repair: 6- to 7-Year Outcome of a Pilot Clinical Study. » Learn more
Product: Engipore
Keyword: Performance Safety