Clinical Guide · Biological Meshes

Bovine Pericardium
in Breast Reconstruction

A comprehensive, evidence-based guide to acellular bovine pericardium matrices — their biology, clinical applications in prepectoral and direct-to-implant reconstruction, and how to select the right device for each surgical scenario.

8 min read · ~1,600 words 📅 Last reviewed: 2026-07-21 Advanced Biomedical Concept Medical Team

What Is Bovine Pericardium?

The bovine pericardium is the fibrous sac that encloses the heart of cattle (Bos taurus). Rich in Type I and Type III collagen, elastin fibres, and structural glycoproteins, it forms one of the most mechanically robust and biochemically stable biological tissues available for medical use. Once harvested, cleaned, and processed through standardised decellularisation protocols, it becomes an acellular bovine pericardium matrix (ABPM) — a scaffold that is free of cellular antigens yet retains its three-dimensional collagen architecture.

In reconstructive surgery, this matrix functions as a temporary biological scaffold: host fibroblasts, vascular endothelial cells, and immune-regulatory cells gradually infiltrate and remodel it, replacing the exogenous collagen with native tissue over a period of weeks to months. The result is a biological integration process that, when successful, produces a strong, vascularised neo-tissue layer indistinguishable from the patient's own fascial structures.[6]

100%
Biological origin — no synthetic components
Type I
Collagen-dominant structure, as in human fascia
<24m
Cattle age at harvest for ExaShape — optimal tissue quality

History of Bovine Pericardium in Breast Reconstruction

Biological matrices entered breast reconstruction in the early 2000s, initially dominated by acellular dermal matrices (ADMs) derived from cadaveric human skin or porcine dermis. These products demonstrated that a biological scaffold could support the lower pole of a breast implant, enable prepectoral placement, and reduce rates of capsular contracture — transforming the standard of care in implant-based reconstruction.

Bovine pericardium emerged as an alternative xenograft in the mid-2000s, first reported in cardiovascular and neurosurgical indications before being adapted for breast reconstruction. Its appeal was clear: unlike cadaveric ADMs, it is available in consistent supply without ethical constraints; unlike porcine products, it carries a distinct tissue architecture that many surgeons found advantageous for mechanical handling and suturing.

The first documented use of acellular bovine pericardium in implant-based breast reconstruction dates to the late 2000s, with published case series appearing in the European plastic surgery literature through the 2010s.[5] By 2020, multiple prospective studies had confirmed its viability,[3] and CE-marked devices specifically designed for breast reconstruction — including the ExaShape line by Advanced Biomedical Concept — had entered clinical practice with dedicated anatomical configurations.

How Bovine Pericardium Works: The Biological Mechanism

Unlike synthetic meshes — which remain permanently in the body as foreign material — an acellular bovine pericardium matrix undergoes biological remodelling. The timeline and mechanism proceed in three overlapping phases:

  1. Inflammatory phase (Days 1–14): Host macrophages and neutrophils infiltrate the matrix. Macrophage polarisation towards an M2 (pro-regenerative) phenotype is critical. High-quality decellularisation, which removes MHC antigens and residual DNA, minimises the M1 inflammatory response that would otherwise trigger excessive fibrosis.
  2. Proliferative phase (Weeks 2–8): Fibroblasts migrate into the collagen scaffold via micro-channels left by the decellularisation process. Neovascularisation begins — new capillaries penetrate the matrix, bringing oxygen and nutrients. Host collagen synthesis progressively replaces the bovine collagen.
  3. Remodelling phase (Months 2–12): Matrix metalloproteinases (MMPs) degrade residual bovine collagen while host fibroblasts deposit organised, mechanically functional neo-tissue. The scaffold gradually integrates, and the distinction between implant and native tissue effectively disappears.

"The key advantage of a bovine pericardium matrix over synthetic alternatives lies not in immediate mechanical performance — both achieve adequate support — but in the quality of the tissue that replaces it. Biological remodelling produces a vascularised, living structure; synthetic integration does not."

— Adapted from published consensus on biological matrices in breast reconstruction

Clinical Applications in Breast Reconstruction

Prepectoral Breast Reconstruction

The most significant shift in implant-based breast reconstruction over the past decade has been the move from subpectoral (under the pectoralis major muscle) to prepectoral (above the muscle) implant placement. Prepectoral reconstruction eliminates animation deformity, reduces pain, and preserves muscle function — but it requires a robust biological scaffold to support the implant in the subcutaneous plane and provide the soft-tissue coverage that the muscle previously supplied.

Acellular bovine pericardium is ideally suited to this role. Applied as a wrap, pocket, or sling around the implant, it provides immediate mechanical support while its biological remodelling creates a durable, vascularised envelope over the following months.

Direct-to-Implant (DTI) Reconstruction

In direct-to-implant (DTI) reconstruction — a single-stage procedure performed immediately at the time of mastectomy — the biological matrix must fulfil the dual function of supporting the implant and integrating rapidly with the mastectomy skin flap above. The vascularity of bovine pericardium matrices, combined with their collagen architecture, makes them particularly well-adapted to DTI scenarios where the quality of skin perfusion and biological support are critical determinants of outcome.

Staged (Two-Stage) Reconstruction

In two-stage reconstruction, bovine pericardium can be used to wrap a tissue expander during the expansion phase, providing biological support throughout the expansion period before the exchange procedure for a definitive implant.

Choosing the Right Bovine Pericardium Device

Not all bovine pericardium matrices are identical. Key variables that affect clinical performance include source animal age, decellularisation protocol, membrane thickness, available configurations (flat, meshed, pre-formed pocket, 3D pocket), and regulatory status. When evaluating devices for breast reconstruction, surgeons should consider:

Bovine Pericardium vs. Synthetic Mesh: Key Differences

Parameter Bovine Pericardium (Biological) Synthetic Mesh (e.g. Titanised PP)
Origin 100% biological — bovine collagen Synthetic polymer (polypropylene, PVDF, etc.)
Remodelling Replaced by host tissue over 3–12 months Remains permanently in situ
Animation deformity None in prepectoral placement None in prepectoral placement
Capsular contracture risk Potentially lower — biological integration Variable — dependent on material and surface
Implant visibility / rippling Provides soft biological coverage Mechanical support only; may not disguise rippling
Long-term foreign body No — fully remodelled Yes — permanent implant material
Cost Higher than synthetic Generally lower
Regulatory (EU) Class III MDR — highest scrutiny Class IIb–III MDR

Clinical Evidence: What the Data Shows

ExaShape-Specific Clinical Data

The first and, to date, most focused published clinical study specifically evaluating ExaShape BioShield Pocket in prepectoral breast reconstruction is Mazzocchi et al. (2022),[1] a prospective case series of 21 women undergoing 37 immediate prepectoral reconstructions following nipple-sparing mastectomy. Key findings included:

The authors concluded that ExaShape "proved to be useful in breast reconstruction, allowing a good aesthetic and functional result," and specifically highlighted its advantages in reducing implant exposure time, bacterial contamination risk, and handling-related injury to the implant.[1]

Supporting ABPM Evidence with ExaShape Connection

A 2024 multicentre retrospective analysis by De Vita et al.,[2] published in Clinical Breast Cancer, examined 65 prepectoral DTI breast reconstructions using acellular bovine pericardium matrix (ABPM) pockets, with a mean follow-up of 21.3 months. The lead author (Prof. De Vita) disclosed a consultancy relationship with ExaShape at the time of publication. Key findings:

Broader Bovine Pericardium Class Evidence

Beyond ExaShape-specific data, the broader class of acellular bovine pericardium matrices has been validated across multiple independent series using different branded products (Exaflex, Tutomesh, Veritas). These studies establish the safety profile of the material class that underpins ExaShape:

ABC Solution · ExaShape Line
ExaShape — Purpose-Built for Prepectoral Reconstruction

Developed by Advanced Biomedical Concept and CE-marked under EU MDR 2017/745, ExaShape is a family of 100% bovine pericardium devices sourced from cattle under 24 months old. The line includes flat membranes, meshed variants, and pre-formed implant pockets — each engineered for a specific surgical scenario in prepectoral and DTI breast reconstruction.

100% Biological CE-Marked EU MDR 23+ Countries 500+ Trained Surgeons

The ExaShape Product Family

Within the category of bovine pericardium devices, ExaShape by Advanced Biomedical Concept (ABC) represents one of the most comprehensively designed product families available in Europe. The line has been developed from the ground up for breast reconstruction — not adapted from cardiovascular or neurosurgical indications — and is sourced from cattle under 24 months old to ensure optimal collagen architecture.

The ExaShape family addresses every common surgical scenario in modern prepectoral and DTI reconstruction:

All ExaShape devices are CE-marked under EU MDR 2017/745 and are distributed in over 23 countries, supported by an international network of trained surgeons and a dedicated e-learning platform offering step-by-step surgical technique guidance.

Frequently Asked Questions

What is bovine pericardium used for in breast reconstruction?

Bovine pericardium is used as a biological scaffold (mesh or implant pocket) to support a breast implant in prepectoral and direct-to-implant (DTI) reconstruction. It integrates with host tissue over 3–12 months, replacing itself with the patient's own vascularised neo-tissue.

Is bovine pericardium safe for breast reconstruction?

Yes. Acellular bovine pericardium matrices are CE-marked under EU MDR 2017/745. Published clinical series report complication rates comparable to other biological matrices, with implant loss rates below 5% in most data.

How does bovine pericardium differ from acellular dermal matrix (ADM)?

Both are acellular biological scaffolds but differ in source: ADMs come from cadaveric human or porcine skin; bovine pericardium comes from bovine heart sac. Bovine pericardium offers consistent supply, no ethical constraints around cadaveric sourcing, and a distinct collagen architecture.

How long does bovine pericardium last in the body?

Bovine pericardium is gradually remodelled and replaced by the patient's own tissue over 3–12 months. Unlike synthetic meshes, it does not remain as a permanent foreign material in the body.

Which bovine pericardium devices are CE-marked for breast reconstruction in Europe?

The ExaShape® line by Advanced Biomedical Concept includes CE-marked bovine pericardium devices for breast reconstruction: ExaShape Grid, PREPEC®, BioShield Pocket®, BioShield Pocket PRO®, and BioShield Pocket 3D® — all certified under EU MDR 2017/745.

References

  1. Mazzocchi M, Dessy LA, Corrias F, Onesti MG. "Clinical assessment of a new biological mesh (ExaShape BioShield Pocket) in immediate prepectoral breast reconstruction after nipple-sparing mastectomy: A prospective case series." Plast Reconstr Regen Surg. 2022. DOI: 10.57604/PRRS-064. (ExaShape-specific study)
  2. De Vita R, Zaccheddu R, Buccheri EM, Nahas FX, Morais Besteiro JM. "Acellular bovine pericardium matrix for direct-to-implant prepectoral breast reconstruction: A multicentre retrospective analysis." Clin Breast Cancer. 2024. DOI: 10.1016/j.clbc.2024.06.004. PMID: 39003171. (Lead author disclosed ExaShape consultancy)
  3. Casella D, Rocco N, Luridiana G, Marcasciano M, Zerini I, Sordi S, Neri A, Catanuto G, Ferrando PM, Kaciulyte J. "Enhancing Breast Reconstruction with Bovine Pericardium: A Preliminary STEP (Surgical Techniques and Efficacy in Pericardium Use) Towards Improved Outcomes." J Clin Med. 2025;14(17):6296. DOI: 10.3390/jcm14176296. (Class evidence — Exaflex product)
  4. Nogueira Sixto M, De Castro Parga G, Lamas González MJ, Melendez Villar MR, Rodríguez Fernández V, Valladares Bajo Z, Freiria Barreiro G, Mallo Alonso R. "The role of bovine pericardium matrix in immediate prepectoral breast reconstruction: Insights from the largest published retrospective series." JPRAS Open. 2025. DOI: 10.1016/j.jpra.2025.09.005. PMID: 41215823. (Class evidence — Exaflex product)
  5. Castagnetti F, Bertani C, Foroni M, Falco G, Cenini E, De Bonis F, Ferrari G. "The Bovine Pericardium Matrix in Immediate Implant-Based Breast Reconstruction." Aesthetic Plast Surg. 2020;44(6):2051–2060. DOI: 10.1007/s00266-020-01651-z. PMID: 32112193. (Class evidence — Veritas product)
  6. Mofid MM, Meininger MS, Lacey MS. "Veritas bovine pericardium for immediate breast reconstruction: a xenograft alternative to acellular dermal matrix products." Eur J Plast Surg. 2012;35(10):717–722. DOI: 10.1007/s00238-012-0736-9. PMID: 23002328. (Class evidence — Veritas product)

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