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Hypro-Sorb ® M Membranes pure crystalline Atelo-Collagen Type I

Hypro-Sorb ® M Membranes pure crystalline Atelo-Collagen Type I

Hypro-Sorb ® M Membranes pure crystalline Atelo-Collagen Type I

Product catalog summary
General Information
Hypro-Sorb® M membranes are biphasic, bilayer membranes made from pure, crystalline atelocollagen of bovine origin. They are available in three sizes and two thicknesses: 0.8 mm (soft) and 0.3 mm (medium rigid). These membranes do not require soaking before application due to their special collagen fiber processing. Developed through collaboration between Hypro s.r.o. and Bioimplon GmbH, they are used in dental surgery and implantology for bone defect restitution.
Indications
Hypro-Sorb M membranes are primarily used by periodontists for applications such as cystectomy, sinus lift, maxillofacial surgery, and periodontal surgery. The membrane's bilayer structure features a smooth side to prevent gingival tissue ingrowth and a rough side to promote bone cell integration and blood clot formation.
Properties and Advantages
The membranes are composed of 99.9% collagen type I, free of immunogenic telopeptides, ensuring high biocompatibility and excellent wound healing. They adapt quickly to defects due to hydrophilic properties and have a mild bacteriostatic effect. The resorption process begins after four to six weeks and completes within six months, eliminating the need for a second operation. They have a five-year shelf life and are stored between -25°C and +50°C.
Postoperative Care
In cases of wound dehiscence with membrane exposure, standard antimicrobial precautions are advised. Membrane removal is unnecessary, and collagen properties may aid rapid healing.
Product Portfolio
Hypro-Sorb M membranes are available in soft and medium-rigid forms, with various sizes for guided bone and tissue regeneration (GBR/GTR). They are classified as a Medical device class III, clinically tested, and certified by notified body No. 1023.
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Catalog excerpts

Hypro-Sorb ® M Membranes pure crystalline Atelo-Collagen Type I-1

■Collagen Type | Membrane Biotech Innovation Pioneers

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Hypro-Sorb ® M Membranes pure crystalline Atelo-Collagen Type I-2

General information Hypro­Sorb® M membranes are biphasic, bilayer membranes of pure, crystalline atelocollagen of bovine origin. They come in three different sizes and two convenient thicknesses. The membranes differ with regards to their handling: The 0.8 mm thick Hypro­Sorb M membrane is soft, whereas the 0.3 mm thick Hypro­Sorb M membrane is medium rigid. Due to the special processing of the collagen fibers it is not necessary to soak these membranes with saline or the patient's blood before application. The membranes are the result of many years of experience and an intensive research collaboration...

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Hypro-Sorb ® M Membranes pure crystalline Atelo-Collagen Type I-3

Advantages of Hypro­Sorb M Membranes • Pure, crystalline atelocollagen type I – free of immunogenic telopeptides • Highest degree of tissue biocompatibility with excellent wound healing characteristics • Quick adaptation to the defect due to it is potent hydrophilic properties • Reduced risk of dehiscence formation due to the texture and mild bacteriostatic effect of atelocollagen • Can be attached with pins and suturing material • Sufficiently long barrier function – resorption starts after four to six weeks • Naturally resorbable within six months – a second operation for membrane removal is...

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Hypro-Sorb ® M Membranes pure crystalline Atelo-Collagen Type I-4

Important information Composition: This product is natural, pure, crystalline, resorbable, sterile bovine atelocollagen (99.9%collagen type I, free of telopeptides). Shelf life: Five years from the date of production. Storage conditions: Hypro-Sorb® M must be stored at a temperature between -25°C and +50°C in a dry place. It needs to be protected from direct sunlight. Postoperative care In case of wound dehiscence with membrane exposure, the usual antimicrobial precautions are recommended. Removal of the membrane is not necessary. The resorption time may be accelerated by external influences...

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