An overview of surgical sealant devices: current approaches and future trends
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[1] Wenzhen Zhu,et al. Bioadhesives for internal medical applications: A review. , 2018, Acta biomaterialia.
[2] H. Redl,et al. Properties of collagen-based hemostatic patch compared to oxidized cellulose-based patch , 2018, Journal of Materials Science: Materials in Medicine.
[3] K. Lewis,et al. Clinical effectiveness and versatility of a sealing hemostatic patch (HEMOPATCH) in multiple surgical specialties , 2018, Expert review of medical devices.
[4] Hongwei Lin,et al. A meta-analysis of randomized control trials assessing mesh fixation with glue versus suture in Lichtenstein inguinal hernia repair , 2018, Medicine.
[5] H. Redl,et al. Liquid antiadhesive agents for intraperitoneal hernia repair procedures: Artiss® compared to CoSeal® and Adept® in an IPOM rat model , 2017, Surgical Endoscopy.
[6] W. Spotnitz,et al. The SPOT GRADE: A New Method for Reproducibly Quantifying Surgical Wound Bleeding , 2017, Spine.
[7] Ali Khademhosseini,et al. A highly adhesive and naturally derived sealant. , 2017, Biomaterials.
[8] Mudasir Ahmad,et al. Chitosan centered bionanocomposites for medical specialty and curative applications: A review. , 2017, International journal of pharmaceutics.
[9] R. Crisci,et al. Cost-effectiveness analysis of sealant impact in management of moderate intraoperative alveolar air leaks during video-assisted thoracoscopic surgery lobectomy: a multicentre randomised controlled trial. , 2017, Journal of Thoracic Disease.
[10] D. Santi,et al. Surgical sealants with tunable swelling, burst pressures, and biodegradation rates. , 2017, Journal of biomedical materials research. Part B, Applied biomaterials.
[11] R. Crisci,et al. Can a standardised Ventilation Mechanical Test for quantitative intraoperative air leak grading reduce the length of hospital stay after video-assisted thoracoscopic surgery lobectomy? , 2017, Journal of visualized surgery.
[12] E. Hidalgo,et al. A cost‐effective analysis of fibrin sealants versus no sealant following open right hemihepatectomy for colorectal liver metastases , 2017, ANZ journal of surgery.
[13] Hu Yang,et al. Dendrimers for Ocular Drug Delivery. , 2017, Canadian journal of chemistry.
[14] Alexandre Laurent,et al. A novel injectable tissue adhesive based on oxidized dextran and chitosan. , 2017, Acta biomaterialia.
[15] J. Vannucci,et al. Cost analysis of pulmonary lobectomy procedure: comparison of stapler versus precision dissection and sealant , 2017, ClinicoEconomics and outcomes research : CEOR.
[16] T. Taguchi,et al. Enhanced Sealing by Hydrophobic Modification of Alaska Pollock-Derived Gelatin-Based Surgical Sealants for the Treatment of Pulmonary Air Leaks. , 2017, Macromolecular bioscience.
[17] Mingyao Liu,et al. Novel hemostatic agents based on gelatin-microbial transglutaminase mix , 2017, Science China Life Sciences.
[18] A. DeAnda,et al. Development and validation of an intraoperative bleeding severity scale for use in clinical studies of hemostatic agents , 2017, Surgery.
[19] V. Pergialiotis,et al. The potential effect of biological sealants on colorectal anastomosis healing in experimental research involving severe diabetes , 2017, Annals of the Royal College of Surgeons of England.
[20] A. Rogers,et al. Meta‐analysis of the use of surgical sealants for suture‐hole bleeding in arterial anastomoses , 2016, The British journal of surgery.
[21] I. Ford,et al. A first-in-human, randomized, controlled, subject- and reviewer-blinded multicenter study of Actamax™ Adhesion Barrier , 2016, Archives of Gynecology and Obstetrics.
[22] Bruce P. Lee,et al. Recent approaches in designing bioadhesive materials inspired by mussel adhesive protein , 2016, Journal of polymer science. Part A, Polymer chemistry.
[23] I. Djordjevic,et al. Elastic Light Tunable Tissue Adhesive Dendrimers. , 2016, Macromolecular bioscience.
[24] P. Surda,et al. A purely synthetic and biodegradable material for repair of cerebrospinal fluid rhinorrhoea , 2016, Clinical otolaryngology : official journal of ENT-UK ; official journal of Netherlands Society for Oto-Rhino-Laryngology & Cervico-Facial Surgery.
[25] I. Donati,et al. Adhesive and sealant interfaces for general surgery applications. , 2016, Journal of biomedical materials research. Part B, Applied biomaterials.
[26] G. Bochicchio,et al. A multicentre, prospective, randomized, controlled trial comparing EVARREST™ fibrin sealant patch to standard of care in controlling bleeding following elective hepatectomy: anatomic versus non-anatomic resection. , 2016, HPB : the official journal of the International Hepato Pancreato Biliary Association.
[27] R. Poston,et al. A Novel Hemostatic Patch That Stops Bleeding in Cardiovascular and Peripheral Vascular Procedures. , 2016, Annals of vascular surgery.
[28] H. Gulle,et al. Control of bleeding in surgical procedures: critical appraisal of HEMOPATCH (Sealing Hemostat) , 2015, Medical devices.
[29] Haeshin Lee,et al. Bio-inspired adhesive catechol-conjugated chitosan for biomedical applications: A mini review. , 2015, Acta biomaterialia.
[30] P. Gaetani,et al. First Impressions about Adherus, a New Dural Sealant , 2015, Journal of applied biomaterials & functional materials.
[31] A. Khademhosseini,et al. Elastic sealants for surgical applications. , 2015, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[32] M. Broder,et al. Health and economic outcomes associated with uncontrolled surgical bleeding: a retrospective analysis of the Premier Perspectives Database , 2015, ClinicoEconomics and outcomes research : CEOR.
[33] J. Brunkwall,et al. Results from a First-in-Human Trial of a Novel Vascular Sealant , 2015, Front. Surg..
[34] D. Santi,et al. Biodegradable tetra-PEG hydrogels as carriers for a releasable drug delivery system. , 2015, Bioconjugate chemistry.
[35] Terry Kim,et al. Hydrogel sealant versus sutures to prevent fluid egress after cataract surgery , 2014, Journal of cataract and refractive surgery.
[36] James Darcey,et al. Tissue adhesives for closure of surgical incisions. , 2014, The Cochrane database of systematic reviews.
[37] J. Škorpil,et al. Effective and rapid sealing of coronary, aortic and atrial suture lines †. , 2014, Interactive cardiovascular and thoracic surgery.
[38] Ali Khademhosseini,et al. Surgical Materials: Current Challenges and Nano-enabled Solutions. , 2014, Nano today.
[39] C. Yag-Howard,et al. Sutures, Needles, and Tissue Adhesives: A Review for Dermatologic Surgery , 2014, Dermatologic surgery : official publication for American Society for Dermatologic Surgery [et al.].
[40] M. A. W. Stam,et al. Sylys® surgical sealant: a safe adjunct to standard bowel anastomosis closure , 2014 .
[41] P. Slezak,et al. Swelling, sealing, and hemostatic ability of a novel biomaterial: A polyethylene glycol-coated collagen pad , 2014, Journal of biomaterials applications.
[42] Ludwik Leibler,et al. Organ Repair, Hemostasis, and In Vivo Bonding of Medical Devices by Aqueous Solutions of Nanoparticles** , 2014, Angewandte Chemie.
[43] M. Masuda,et al. The use of surgical glue in acute type A aortic dissection , 2014, General Thoracic and Cardiovascular Surgery.
[44] W. Spotnitz. Fibrin Sealant: The Only Approved Hemostat, Sealant, and Adhesive—a Laboratory and Clinical Perspective , 2014, ISRN surgery.
[45] Robert Langer,et al. A Blood-Resistant Surgical Glue for Minimally Invasive Repair of Vessels and Heart Defects , 2014, Science Translational Medicine.
[46] Ji-Ho Park,et al. Surgical suture assembled with polymeric drug-delivery sheet for sustained, local pain relief. , 2013, Acta biomaterialia.
[47] I. Heger,et al. Venous air embolism from Tisseel use during endoscopic cranial vault remodeling for craniosynostosis repair: a case report , 2013, Paediatric anaesthesia.
[48] R. Troisi,et al. A multicentre, randomized clinical trial comparing the Veriset™ haemostatic patch with fibrin sealant for the management of bleeding during hepatic surgery. , 2013, HPB : the official journal of the International Hepato Pancreato Biliary Association.
[49] Wei Nie,et al. Rapidly in situ forming chitosan/ε-polylysine hydrogels for adhesive sealants and hemostatic materials. , 2013, Carbohydrate polymers.
[50] M. Meier,et al. Sustainable routes to polyurethane precursors , 2013 .
[51] Devin G. Barrett,et al. Mechanically Robust, Negative‐Swelling, Mussel‐Inspired Tissue Adhesives , 2013, Advanced healthcare materials.
[52] Clark Fuller,et al. Reduction of intraoperative air leaks with Progel in pulmonary resection: a comprehensive review , 2013, Journal of Cardiothoracic Surgery.
[53] Jian Yang,et al. Design strategies and applications of tissue bioadhesives. , 2013, Macromolecular bioscience.
[54] A. Haverich,et al. TissuePatch™ as a novel synthetic sealant for repair of superficial lung defect: in vitro tests results , 2012, Annals of surgical innovation and research.
[55] L. Foster,et al. A chitosan based, laser activated thin film surgical adhesive, 'SurgiLux': preparation and demonstration. , 2012, Journal of visualized experiments : JoVE.
[56] Kyung Min Park,et al. Rapidly curable chitosan-PEG hydrogels as tissue adhesives for hemostasis and wound healing. , 2012, Acta biomaterialia.
[57] H. Redl,et al. Fibrin chain cross-linking, fibrinolysis, and in vivo sealing efficacy of differently structured fibrin sealants. , 2012, Journal of biomedical materials research. Part B, Applied biomaterials.
[58] K. Walgenbach,et al. Randomized, Prospective Study of TissuGlu® Surgical Adhesive in the Management of Wound Drainage Following Abdominoplasty , 2012, Aesthetic Plastic Surgery.
[59] P. Boyer,et al. Does fibrin sealant use in total knee replacement reduce transfusion rates? A non-randomised comparative study. , 2012, Orthopaedics & traumatology, surgery & research : OTSR.
[60] T. Vuocolo,et al. A Highly Elastic and Adhesive Gelatin Tissue Sealant for Gastrointestinal Surgery and Colon Anastomosis , 2012, Journal of Gastrointestinal Surgery.
[61] C. Bhamidipati,et al. BioGlue in 2011: what is its role in cardiac surgery? , 2012, The journal of extra-corporeal technology.
[62] Kee D. Kim,et al. Polyethylene Glycol Hydrogel Spinal Sealant (DuraSeal Spinal Sealant) as an Adjunct to Sutured Dural Repair in the Spine: Results of a Prospective, Multicenter, Randomized Controlled Study , 2011, Spine.
[63] Cordula Wagner,et al. The incidence, root-causes, and outcomes of adverse events in surgical units: implication for potential prevention strategies , 2011, Patient safety in surgery.
[64] R. Millner,et al. Celox (chitosan) for haemostasis in massive traumatic bleeding: experience in Afghanistan , 2011, European journal of emergency medicine : official journal of the European Society for Emergency Medicine.
[65] R. Shi,et al. Rapidly photo-cross-linkable chitosan hydrogel for peripheral neurosurgeries. , 2011, Biomacromolecules.
[66] S. Fuchs,et al. Transglutaminase: New insights into gelatin nanoparticle cross-linking , 2010, Journal of microencapsulation.
[67] Misook Kim,et al. A highly elastic tissue sealant based on photopolymerised gelatin. , 2010, Biomaterials.
[68] Henry T. Peng,et al. Novel wound sealants: biomaterials and applications , 2010, Expert review of medical devices.
[69] Karun S. Arora,et al. A versatile pH sensitive chondroitin sulfate-PEG tissue adhesive and hydrogel. , 2010, Biomaterials.
[70] W. Berry,et al. A Surgical Safety Checklist to Reduce Morbidity and Mortality in a Global Population , 2009, The New England journal of medicine.
[71] Gregory F Payne,et al. Biomimetic sealant based on gelatin and microbial transglutaminase: an initial in vivo investigation. , 2009, Journal of biomedical materials research. Part B, Applied biomaterials.
[72] Andrea Frilling,et al. Efficacy of TachoSil a fibrin-based haemostat in different fields of surgery- a systematic review , 2009, Expert opinion on biological therapy.
[73] Timothy C. Hughes,et al. The development of photochemically crosslinked native fibrinogen as a rapidly formed and mechanically strong surgical tissue sealant. , 2009, Biomaterials.
[74] A. Singer,et al. In vivo study of wound bursting strength and compliance of topical skin adhesives. , 2008, Academic emergency medicine : official journal of the Society for Academic Emergency Medicine.
[75] Eric J. Beckman,et al. Lysine-Derived Urethane Surgical Adhesive Prevents Seroma Formation in a Canine Abdominoplasty Model , 2008, Plastic and reconstructive surgery.
[76] G. J. Mattamal. US FDA perspective on the regulations of medical-grade polymers: cyanoacrylate polymer medical device tissue adhesives , 2008, Expert review of medical devices.
[77] M. Grinstaff. Designing hydrogel adhesives for corneal wound repair. , 2007, Biomaterials.
[78] T. Nagayasu,et al. Development of new biodegradable hydrogel glue for preventing alveolar air leakage. , 2007, The Journal of thoracic and cardiovascular surgery.
[79] Hyung Joon Cha,et al. Practical recombinant hybrid mussel bioadhesive fp-151. , 2007, Biomaterials.
[80] S. Bhatia,et al. Interactions of polysaccharide-based tissue adhesives with clinically relevant fibroblast and macrophage cell lines , 2007, Biotechnology Letters.
[81] J. Feijen,et al. Rapidly in situ-forming degradable hydrogels from dextran thiols through Michael addition. , 2007, Biomacromolecules.
[82] P. Leggat,et al. SURGICAL APPLICATIONS OF CYANOACRYLATE ADHESIVES: A REVIEW OF TOXICITY , 2007, ANZ journal of surgery.
[83] D. Wood,et al. Prospective randomized study evaluating a biodegradable polymeric sealant for sealing intraoperative air leaks that occur during pulmonary resection. , 2004, The Annals of thoracic surgery.
[84] Mark C. Preul,et al. Toward Optimal Tissue Sealants for Neurosurgery: Use of a Novel Hydrogel Sealant in a Canine Durotomy Repair Model , 2003, Neurosurgery.
[85] Gerard Marx,et al. Evolution of fibrin glue applicators. , 2003, Transfusion medicine reviews.
[86] M. Leonardi,et al. Glubran 2((r)):a new acrylic glue for neuroradiological endovascular use: a complementary histological study. , 2003, Interventional neuroradiology : journal of peritherapeutic neuroradiology, surgical procedures and related neurosciences.
[87] M. Leonardi,et al. Glubran 2®: A New Acrylic Glue for Neuroradiological Endovascular Use , 2003 .
[88] D. Albala. Fibrin sealants in clinical practice. , 2003, Cardiovascular surgery.
[89] D. Wallace,et al. A sprayable hemostat containing fibrillar collagen, bovine thrombin, and autologous plasma. , 1999, The Annals of thoracic surgery.
[90] J. Wain,et al. Experimental and clinical evaluation of a new synthetic, absorbable sealant to reduce air leaks in thoracic operations. , 1999, The Journal of thoracic and cardiovascular surgery.
[91] C. Krettek,et al. Biophysical properties of the gelatin-resorcin-formaldehyde/glutaraldehyde adhesive. , 1993, The Annals of thoracic surgery.
[92] H. P. Jenkins,et al. Clinical and experimental observations on the use of gelatin sponge or foam. , 1946, Surgery.
[93] R. Lattes,et al. Hemostasis With Absorbable Gauze (Oxidized Cellulose). , 1944, Annals of surgery.
[94] G. Parker,et al. Use of TissuePatch™ sealant film in the management of chyle leak in major neck surgery. , 2014, The British journal of oral & maxillofacial surgery.
[95] Ben Newland,et al. Mussel-inspired hyperbranched poly(amino ester) polymer as strong wet tissue adhesive. , 2014, Biomaterials.
[96] A. Coury,et al. Tissue adhesives and sealants for surgical applications , 2013 .
[97] M. Pinto,et al. Development of a biodegradable bioadhesive containing urethane groups , 2008, Journal of materials science. Materials in medicine.
[98] Zhiyuan Zhong,et al. Enzyme-mediated fast in situ formation of hydrogels from dextran-tyramine conjugates. , 2007, Biomaterials.
[99] Y. Shimizu,et al. In vivo evaluation of a new sealant material on a rat lung air leak model. , 2001, Journal of biomedical materials research.