true

Prothèse Phasix™

Prothèse résorbable pour la reconstruction des tissus mous

Phasix™ Mesh
Loading

Présentation

Designed to enable constructive and functional tissue remodeling1

Phasix™ Mesh provides a fully resorbable monofilament scaffold for rapid tissue incorporation that has been designed to allow for the repair strength of a synthetic mesh along with the remodeling characteristics of a biologic graft.1

true

Caractéristiques et avantages

Une solution avancée pour la cure des hernies et éventrations

Réparations.1
La structure monofilament assure une intégration rapide et une solide réparation.*

Remodelages.1
Des tests précliniques confirment la vascularisation, avec une abondance de collagène mature à 52 semaines. La charge du renfort est transférée vers le tissu natif au fil du temps*

QU’EST-CE QUE LA MAILLE PHASIX™ ?

La prothèse Phasix™ se présente sous forme de maille monofilament composée
de du poly-4-hydroxybutyrate (P4HB), un matériau d’origine biologique entièrement résorbable.

  • La forme monomère (4HB) est un métabolite naturellement présent dans le cerveau, le cœur, le foie, le rein et les muscles humains.
  • Elle se résorbe de manière prévisible par hydrolyse, alors que le P4HB est pour sa part métabolisé en sous-produits biocompatibles (CO2 et H2O)4

Intégration Tissulaire1

Objectif de l’étude : Évaluer la résistance du matériau et l’histopathologie de la prothèse Phasix™.

Plan de l’étude : Un defect circulaire de 3 centimètres a été crée dans la paroi abdominale ventrale de 25 mini-porcs Yucatan (poids moyen 38 kg). La prothèse Phasix™ a été fixée directement sur Un defect avec des attaches résorbables SorbaFix™. Le test de résistance à l’éclatement et l’histopathologie ont été réalisés à 6, 12, 26 et 52 semaines.

Résultats : Croissance tissulaire précoce, intégration vasculaire et incorporation de la prothèse Phasix™ dans la paroi abdominale ventrale, plus formation abondante de collagène mature autour des fibres restantes à 52 semaines.

CLINIQUE

    Prospective Multi-institutional Evaluation of Phasix™ Mesh in High Risk Ventral and Incisional Hernia Repairs:

    • 18 month follow-up (Publication intégrale désormais disponible dans Surgical Endoscopy) disponible ici.

    Produits associés

    Products & Accessories
    RELATED PRODUCTS NOT AVAILABLE

    Related Products

    References

    Please note, not all products, services or features of products and services may be available in your local area. Please check with your local BD representative.

    Indications.

    Phasix™ Mesh is indicated to reinforce soft tissue where weakness exists, in patients undergoing abdominal, plastic, and reconstructive surgery in ventral hernia repair and other abdominal fascial defect procedures.

    Contraindications.

    1. Because Phasix™ Mesh is fully resorbable, it should not be used in repairs where permanent wound or organ support from the mesh is required.

    Warnings.

    1. Phasix™ Mesh must not be put in direct contact with the bowel or viscera.
    2. The use of any mesh or patch in a contaminated or infected wound can lead to fistula formation and/or extrusion of the mesh.
    3. Mesh manufacture involves exposure to tetracycline hydrochloride and kanamycin sulfate. The safety and product use for patients with hypersensitivities to these antibiotics is unknown. The use of this mesh in susceptible patients with known allergies to tetracycline hydrochloride or kanamycin sulfate should be avoided.
    4. The safety and effectiveness of Phasix™ Mesh in the following applications has not been evaluated or established: a. Pregnant or breastfeeding women b. Pediatric use c. Neural and cardiovascular tissue.
    5. If an infection develops, treat the infection aggressively. Consideration should be given regarding the need to remove the mesh. An unresolved infection may require the removal of the mesh.
    6. To prevent recurrences when repairing hernias, the mesh should be sized with appropriate overlap for the size and location of the defect, taking into consideration any additional clinical factors applicable to the patient. Careful attention to mesh fixation placement and spacing will help prevent excessive tension or gap formation between the mesh and fascial tissue.
    7. The mesh is supplied sterile. Prior to use, carefully examine package and product to verify neither is damaged and that all seals are intact. Do not use if the foil pouch or package is damaged or open, or if the center of the temperature indicator on the foil pouch is black.
    8. This mesh has been designed for single use only. Reuse, reprocessing, resterilization, or repackaging may compromise the structural integrity and/or essential material and design characteristics that are critical to the overall performance of the mesh and may lead to mesh failure which may result in injury to the patient. Reuse, reprocessing, resterilization, or repackaging may also create a risk of contamination of the mesh and/or cause patient infection or cross infection, including, but not limited to, the transmission of infectious diseases from one patient to another. Contamination of the mesh may lead to injury, illness, or death of the patient or end user.
    9. If unused Phasix™ Mesh has been in contact with instruments or supplies used on a patient or contaminated with body fluids, handle and dispose of in accordance with accepted medical practice and applicable local, state, and federal laws and regulations to prevent risk of transmission of viral infections.
    10. This mesh is not for the use of repair of pelvic organ prolapse via transvaginal approach.
    11. This mesh is not for the use of treatment of stress urinary incontinence.
    12. Phasix™ Mesh has not been studied for use in breast reconstructive surgeries.

    Precautions.

    1. Please read all instructions prior to use.
    2. Only physicians qualified in the appropriate surgical techniques should use this mesh. Users should be familiar with mesh strength and size requirements. Improper selection, placement, positioning, and fixation of the mesh can cause subsequent undesirable results.
    3. Clinical data in accordance with EU MDR has not been established for laparoscopic/robotic procedures.
    4. The safety and effectiveness of Phasix™ Mesh in the proximity of existing or excised cancer has not been established.

    Adverse Reactions.

    In preclinical testing, Phasix™ Mesh elicited a minimal tissue reaction characteristic of foreign body response to a substance. The tissue reaction resolved as the mesh was resorbed. Possible complications may include, but are not limited to infection, seroma, pain, mesh migration, wound dehiscence, hemorrhage, adhesions, hematoma, inflammation, allergic reaction, extrusion, erosion, fistula formation and recurrence of the hernia or soft tissue defect. Please consult product package insert for more detailed safety information and instructions for use.

    References
    1. Preclinical data on file. Results may not correlate to clinical performance in humans.
    2. Deeken CR, Abdo MS, Frisella MM, Matthews BD. “Physicomechanical evaluation of absorbable and nonabsorbable barrier composite meshes for laparoscopic ventral hernia repair.” Surgical Endoscopy 25.5 (2010): 1541-552.
    3. Estimated from Standard Curve in (Martin DP, et al. “Characterizationof poly-4-hydroxybutyrate mesh for hernia repair applications.” Journal of Surgical Research. 2013; (184): 766-773
    4. Martin, DP. et al. “ Medical applications of poly-4-hydroxybutyrate:a strong flexible absorbable biomaterial. Biochemical Engineering Journal. 2002; December 9
    5. Amid PK, Shulman AG, Lichtenstein IL, Hakaha M. Biomaterials for Abdominal Wall Hernia Surgery and Principles of their Applications. Langenbecks Archive Chir. 1994; 379(3): 168-71.
    6. Halaweish I, Harth K, Broome AM, Voskerician G, Jacobs MR, Rosen M. Novel In Vitro Model for Assessing Susceptibility of Synthetic Hernia Repair Meshes to Staphylococcus aureus Infection Using Green Fluorescent Protein-Labeled Bacteria and Modern Imaging Techniques. J Surg Infect (Larchmt). 2010; Oct1(5): 449-54.

    CE 2797

    BD- 51656

    true

    BD-16443

    FAQs

    The Basics of Phasix™ Mesh

    Phasix™ Mesh provides a fully resorbable monofilament scaffold for rapid tissue incorporation that has been designed to allow for the repair strength of a synthetic mesh along with the remodeling characteristics of a biologic graft.

    Composed of biologically-derived material, Poly-4-hydroxybutyrate (P4HB), Phasix™ Mesh provides critical strength during the initial healing phase with rapid tissue ingrowth and vascularization through its open-pore monofilament structure. Monomer form (4HB) is a naturally occurring human metabolite found in the brain, heart, liver, kidney, and muscle and P4HB scaffold has been used clinically for hernia repair for more than 5 years.

    Phasix™ Mesh gradually and predictably degrades within 12 to 18 months via hydrolysis leaving behind a durable, functional repair with over 3x the strength of the native abdominal wall.

    Phasix™ Mesh has not been shown to break down in the presence of bacteria - maintaining 100% of its strength at 56 days - unlike biologic grafts which demonstrate accelerated degradation in the presence of bacteria. Additionally, Phasix™ Mesh offers the benefits of rapid tissue incorporation with organized and functional collagen at the repair site, while offering high repair strength through the critical healing phase.

    The Basics of Phasix™ ST Mesh 

    Phasix™ ST Mesh combines two market-leading technologies into one product: monofilament resorbable Phasix™ Mesh and a proven hydrogel barrier based on Sepra® technology. It handles, sutures and fixates like a synthetic mesh, while facilitating trocar deployment during laparoscopic placement.

    Phasix™ ST Mesh combines Phasix™ Mesh and a proven hydrogel barrier based on Sepra® technology into one product. While the monofilament mesh supports functional healing and a strong repair, the hydrogel barrier is designed to minimize tissue attachment to the visceral side of the mesh for intraabdominal placement.

    Phasix™ ST Mesh is a biologically derived scaffold with a hydrogel barrier for intraabdominal placement. It has been designed to provide the repair strength of a synthetic mesh and the remodeling characteristics of a biologic. Additionally, its longitudinal stripes aid with orientation and visibility during placement.

    The ST hydrogel barrier is designed to minimize the risk of tissue attachment, resorbs within 30 days, and has over 10 years of clinical application.

    Phasix™ Mesh and Phasix™ ST Mesh: Results and Case Studies

     

    More than 10 clinical studies with more than 950 patients studied
    Phasix Clinical Compendium

    References

     

    For more information, please contact your local sales rep to learn more

    2. Internal market research, data on file, 2015.

    3. Liang MK, Li LT, Nguyen MT, Berger RL, Hicks SC, Kao LS. Abdominal reoperation and mesh explantation following open ventral hernia repair with mesh. The American Journal of Surgery. 208.4(2014):670–76.

    4. Itani KM, et al. Prospective study of single-stage repair of contaminated hernias using a biologic porcine tissue matrix: the RICH Study. Surgery. 2012;152(3):498–505.

    5. Annor AH, Tang ME, Pui CL, Ebersole GC, Frisella MM, Matthews BD, Deeken CR. Effect of enzymatic degradation on the mechanical properties of biological scaffold materials. Surgical Endoscopy. 26.10(2012):2767–778. 6. Harth KC, et al. Effect of surgical wound classification on biologic graft performance in complex hernia repair: an experimental study. Surgery. 2013;153(4):481–492

    BD-46830

    true

    Références

    Veuillez noter que certains produits, services ou caractéristiques peuvent ne pas être disponibles dans votre région. Veuillez consulter votre représentant BD local.

    Le filet Phasix™ est destiné à renforcer les tissus mous où une faiblesse existe, chez les patients subissant une chirurgie abdominale, plastique et reconstructive dans le cadre d’une réparation de hernie ventrale et d’autres interventions de réparation des défauts abdominaux au niveau du fascia. Dispositif médical de classe III MDR (EU) 2017/745, CE 2797, Fabricant : Davol, Inc. Pour un bon usage se référer à la notice d'utilisation. Edition avril 2023.

    Références

    1. Données précliniques archivées. Il est possible que les résultats ne correspondent pas aux performances cliniques chez l’homme.
    2. Deeken CR, Abdo MS, Frisella MM, Matthews BD. “Physicomechanical evaluation of absorbable and nonabsorbable barrier composite meshes for laparoscopic ventral hernia repair.” Surgical Endoscopy 25.5 (2010): 1541-552.
    3. Estimated from Standard Curve in (Martin DP, et al. “Characterizationof poly-4-hydroxybutyrate mesh for hernia repair applications.” Journal of Surgical Research. 2013; (184): 766-773
    4. Martin, DP. et al. “ Medical applications of poly-4-hydroxybutyrate:a strong flexible absorbable biomaterial. Biochemical Engineering Journal. 2002; December 9
    5. Amid PK, Shulman AG, Lichtenstein IL, Hakaha M. Biomaterials for Abdominal Wall Hernia Surgery and Principles of their Applications. Langenbecks Archive Chir. 1994; 379(3): 168-71.
    6. Halaweish I, Harth K, Broome AM, Voskerician G, Jacobs MR, Rosen M. Novel In Vitro Model for Assessing Susceptibility of Synthetic Hernia Repair Meshes to Staphylococcus aureus Infection Using Green Fluorescent Protein-Labeled Bacteria and Modern Imaging Techniques. J Surg Infect (Larchmt). 2010; Oct1(5): 449-54.

     

    BD-119808

    true
    Prothèse Phasix™ BD Renfort de paroi Phasix™

    Une solution avancée pour la cure des hernies et éventrations

    ,

    Réparations.1
    La structure monofilament assure une intégration rapide et une solide réparation.*

    Remodelages.1
    Des tests précliniques confirment la vascularisation, avec une abondance de collagène mature à 52 semaines. La charge du renfort est transférée vers le tissu natif au fil du temps*

    ,

    QU’EST-CE QUE LA MAILLE PHASIX™ ?

    ,

    La prothèse Phasix™ se présente sous forme de maille monofilament composée
    de du poly-4-hydroxybutyrate (P4HB), un matériau d’origine biologique entièrement résorbable.

    • La forme monomère (4HB) est un métabolite naturellement présent dans le cerveau, le cœur, le foie, le rein et les muscles humains.
    • Elle se résorbe de manière prévisible par hydrolyse, alors que le P4HB est pour sa part métabolisé en sous-produits biocompatibles (CO2 et H2O)4
    ,,,

    Intégration Tissulaire1

    ,

    Objectif de l’étude : Évaluer la résistance du matériau et l’histopathologie de la prothèse Phasix™.

    Plan de l’étude : Un defect circulaire de 3 centimètres a été crée dans la paroi abdominale ventrale de 25 mini-porcs Yucatan (poids moyen 38 kg). La prothèse Phasix™ a été fixée directement sur Un defect avec des attaches résorbables SorbaFix™. Le test de résistance à l’éclatement et l’histopathologie ont été réalisés à 6, 12, 26 et 52 semaines.

    Résultats : Croissance tissulaire précoce, intégration vasculaire et incorporation de la prothèse Phasix™ dans la paroi abdominale ventrale, plus formation abondante de collagène mature autour des fibres restantes à 52 semaines.

    ,

    CLINIQUE

      ,

      Prospective Multi-institutional Evaluation of Phasix™ Mesh in High Risk Ventral and Incisional Hernia Repairs:

      • 18 month follow-up (Publication intégrale désormais disponible dans Surgical Endoscopy) disponible ici.
      /content/dam/bd-assets/bd-com/en-us/logos/bd/header-bd-logo.svg

      Prothèse résorbable pour la reconstruction des tissus mous

      phasix mesh (720 AMS), ventral hernia repair (2,900 AMS)