Novel Biomedical Applications of Crosslinked Collagen.
暂无分享,去创建一个
F. Tay | L. Niu | L. Gu | T. Shan | Yu-Xuan Ma
[1] Shengxue Hu,et al. Transglutaminase-catalyzed preparation of crosslinked carboxymethyl chitosan/carboxymethyl cellulose/collagen composite membrane for postsurgical peritoneal adhesion prevention. , 2018, Carbohydrate polymers.
[2] Jianzhong Ma,et al. Modification of collagen with three novel tannages, sulfonated calix[4]arenes. , 2018, International journal of biological macromolecules.
[3] M. Zenobi‐Wong,et al. Sortase A as a cross-linking enzyme in tissue engineering. , 2018, Acta biomaterialia.
[4] Fei Wang,et al. Preparation and evaluation of decellularized porcine carotid arteries cross-linked by genipin: the preliminary results , 2018, Cell and Tissue Banking.
[5] Jerry C. Hu,et al. Exogenous Lysyl Oxidase-Like 2 and Perfusion Culture Induce Collagen Crosslink Formation in Osteogenic Grafts. , 2018, Biotechnology journal.
[6] S. Mazzetto,et al. Synthesis and characterization of a new methacrylate monomer derived from the cashew nut shell liquid (CNSL) and its effect on dentinal tubular occlusion. , 2018, Dental materials : official publication of the Academy of Dental Materials.
[7] S. Grant,et al. Gold Nanoparticle-Collagen Gels for Soft Tissue Augmentation. , 2018, Tissue engineering. Part A.
[8] V. Jhanji,et al. Adjuvant collagen crosslinking for treatment of epithelial ingrowth after small‐incision lenticule extraction , 2018, Clinical & experimental ophthalmology.
[9] Xiao Hu,et al. Protein Polymer-Based Nanoparticles: Fabrication and Medical Applications , 2018, International journal of molecular sciences.
[10] W. Neethling,et al. Comparison of physical and biological properties of CardioCel® with commonly used bioscaffolds. , 2018, Interactive cardiovascular and thoracic surgery.
[11] Tengfei Zhao,et al. Genipin-cross-linked type II collagen scaffold promotes the differentiation of adipose-derived stem cells into nucleus pulposus-like cells. , 2018, Journal of biomedical materials research. Part A.
[12] Tengfei Zhao,et al. Genipin cross-linked type II collagen/chondroitin sulfate composite hydrogel-like cell delivery system induces differentiation of adipose-derived stem cells and regenerates degenerated nucleus pulposus. , 2018, Acta biomaterialia.
[13] I. Noh,et al. Recent trends in bioinks for 3D printing , 2018, Biomaterials Research.
[14] Kathryn A. Johnston,et al. Lysyl oxidase in cancer inhibition and metastasis. , 2018, Cancer letters.
[15] Byung-Jae Kang,et al. Silver nanoparticles improve structural stability and biocompatibility of decellularized porcine liver , 2018, Artificial cells, nanomedicine, and biotechnology.
[16] Y. S. Zhang,et al. Protein/polysaccharide-based scaffolds mimicking native extracellular matrix for cardiac tissue engineering applications. , 2018, Journal of biomedical materials research. Part A.
[17] A. Boccaccini,et al. Is quercetin an alternative natural crosslinking agent to genipin for long‐term dermal scaffolds implantation? , 2018, Journal of tissue engineering and regenerative medicine.
[18] Zhong-wen Zhang,et al. Construction and biocompatibility of a thin type I/II collagen composite scaffold , 2018, Cell and Tissue Banking.
[19] Qijuan Yuan,et al. Fabrication and characterization of a novel collagen-catechol hydrogel , 2018, Journal of biomaterials applications.
[20] J M García-Aznar,et al. Degradation of extracellular matrix regulates osteoblast migration: A microfluidic-based study. , 2018, Bone.
[21] A. Vasanji,et al. Nanophase bone substitute for craniofacial load bearing application: Pilot study in the rodent. , 2018, Journal of biomedical materials research. Part B, Applied biomaterials.
[22] Wendy Y. Zhang,et al. Prolonged survival of transplanted stem cells after ischaemic injury via the slow release of pro-survival peptides from a collagen matrix , 2018, Nature Biomedical Engineering.
[23] R. Me,et al. Crosslinking Enzyme Lysyl Oxidase Modulates Scleral Remodeling in Form-Deprivation Myopia , 2018, Current eye research.
[24] A. Kamali,et al. Chemical crosslinking of biopolymeric scaffolds: Current knowledge and future directions of crosslinked engineered bone scaffolds. , 2018, International journal of biological macromolecules.
[25] Bin Wang,et al. Efficacy and safety of transepithelial corneal collagen crosslinking surgery versus standard corneal collagen crosslinking surgery for keratoconus: a meta-analysis of randomized controlled trials , 2017, BMC Ophthalmology.
[26] A. Fawzy,et al. Effect of photoactivated riboflavin on the biodegradation-resistance of root-dentin collagen. , 2017, Journal of photochemistry and photobiology. B, Biology.
[27] R. Birngruber,et al. Interface Bonding With Corneal Crosslinking (CXL) After LASIK Ex Vivo. , 2017, Investigative ophthalmology & visual science.
[28] Jerry C. Hu,et al. Temporal development of near-native functional properties and correlations with qMRI in self-assembling fibrocartilage treated with exogenous lysyl oxidase homolog 2. , 2017, Acta biomaterialia.
[29] Qing Li,et al. Biofabrication: A Guide to Technology and Terminology. , 2017, Trends in biotechnology.
[30] Yu Meng Wang,et al. Comparative evaluation of progression rate in keratoconus before and after collagen crosslinking , 2017, British Journal of Ophthalmology.
[31] Wenhang Wang,et al. Improved mechanical properties and thermal-stability of collagen fiber based film by crosslinking with casein, keratin or SPI: Effect of crosslinking process and concentrations of proteins. , 2017, International journal of biological macromolecules.
[32] J. Hubbell,et al. Microfluidic production of bioactive fibrin micro-beads embedded in crosslinked collagen used as an injectable bulking agent for urinary incontinence treatment. , 2017, Acta biomaterialia.
[33] Jui-Sheng Sun,et al. Enzyme-crosslinked gene-activated matrix for the induction of mesenchymal stem cells in osteochondral tissue regeneration. , 2017, Acta biomaterialia.
[34] Nicoleta Anton,et al. Iontophoretic collagen cross‐linking versus epithelium‐off collagen cross‐linking for early stage of progressive keratoconus – 3 years follow‐up study , 2017, Acta ophthalmologica.
[35] F. Hafezi,et al. Differential Gene Transcription of Extracellular Matrix Components in Response to In Vivo Corneal Crosslinking (CXL) in Rabbit Corneas , 2017, Translational vision science & technology.
[36] Nicoleta Anton,et al. Outcomes of iontophoretic corneal collagen crosslinking in keratoconic eyes with very thin corneas , 2017, Medicine.
[37] A. Ryan,et al. A Physicochemically Optimized and Neuroconductive Biphasic Nerve Guidance Conduit for Peripheral Nerve Repair , 2017, Advanced healthcare materials.
[38] Geun Hyung Kim,et al. Development of a tannic acid cross-linking process for obtaining 3D porous cell-laden collagen structure. , 2017, International journal of biological macromolecules.
[39] A. Bedran-Russo,et al. An Overview of Dental Adhesive Systems and the Dynamic Tooth-Adhesive Interface. , 2017, Dental clinics of North America.
[40] S. Mazzetto,et al. Efficacy of new natural biomodification agents from Anacardiaceae extracts on dentin collagen cross-linking. , 2017, Dental materials : official publication of the Academy of Dental Materials.
[41] S. Elder,et al. Suitability of EGCG as a Means of Stabilizing a Porcine Osteochondral Xenograft , 2017, Journal of functional biomaterials.
[42] H. Hashemi,et al. Updates on corneal collagen cross-linking: Indications, techniques and clinical outcomes , 2017, Journal of current ophthalmology.
[43] E. Azargashb,et al. Comparative analysis of the visual performance after implantation of the toric implantable collamer lens in stable keratoconus: a 4-year follow-up after sequential procedure (CXL+TICL implantation) , 2017, BMJ Open Ophthalmology.
[44] Gopal Shankar Krishnakumar,et al. Ribose mediated crosslinking of collagen-hydroxyapatite hybrid scaffolds for bone tissue regeneration using biomimetic strategies. , 2017, Materials science & engineering. C, Materials for biological applications.
[45] H. C. de Sousa,et al. Multifactor analysis on the effect of collagen concentration, cross-linking and fiber/pore orientation on chemical, microstructural, mechanical and biological properties of collagen type I scaffolds. , 2017, Materials science & engineering. C, Materials for biological applications.
[46] F. Hafezi,et al. Effects of riboflavin, calcium-phosphate layer and adhesive system on stress-strain behavior of demineralized dentin. , 2017, American Journal of Dentistry.
[47] Xinhua Liu,et al. A novel grapheme oxide-modified collagen-chitosan bio-film for controlled growth factor release in wound healing applications. , 2017, Materials science & engineering. C, Materials for biological applications.
[48] E. Oosterwijk,et al. Novel tubular constructs for urinary diversion: a biocompatibility study in pigs , 2017, Journal of tissue engineering and regenerative medicine.
[49] D. Pashley,et al. Effect of pH on dentin protease inactivation by carbodiimide , 2017, European journal of oral sciences.
[50] L. Yao,et al. Fabrication and characterization of microspheres encapsulating astrocytes for neural regeneration. , 2017, ACS biomaterials science & engineering.
[51] Lawrence J Bonassar,et al. Correlating rheological properties and printability of collagen bioinks: the effects of riboflavin photocrosslinking and pH , 2017, Biofabrication.
[52] A. del Campo,et al. 3D bioprinting of structural proteins. , 2017, Biomaterials.
[53] S. Marcos,et al. Corneal Wound Repair After Rose Bengal and Green Light Crosslinking: Clinical and Histologic Study. , 2017, Investigative ophthalmology & visual science.
[54] L. Setton,et al. Biomaterials for intervertebral disc regeneration and repair. , 2017, Biomaterials.
[55] N. Hibino,et al. Tissue engineered vascular grafts: current state of the field , 2017, Expert review of medical devices.
[56] G. Zararsiz,et al. Accelerated Corneal Crosslinking for Treatment of Progressive Keratoconus in Pediatric Patients , 2017, European journal of ophthalmology.
[57] D. O’Brart. Corneal Collagen Crosslinking for Corneal Ectasias: A Review , 2017, European journal of ophthalmology.
[58] Wenhang Wang,et al. Improved thermal-stability and mechanical properties of type I collagen by crosslinking with casein, keratin and soy protein isolate using transglutaminase. , 2017, International journal of biological macromolecules.
[59] Sai Zhang,et al. Collagen/heparin sulfate scaffolds fabricated by a 3D bioprinter improved mechanical properties and neurological function after spinal cord injury in rats. , 2017, Journal of biomedical materials research. Part A.
[60] Farhad Hafezi,et al. Corneal cross-linking. , 2017, Survey of ophthalmology.
[61] Jui‐Teng Lin,et al. Modeling the efficacy profiles of UV-light activated corneal collagen crosslinking , 2017, PloS one.
[62] P. Schor,et al. Characterization of Rabbit Corneas Subjected to Stromal Stiffening by the Açaí Extract (Euterpe oleracea) , 2017, Current eye research.
[63] H. van Goor,et al. Tubular collagen scaffolds with radial elasticity for hollow organ regeneration. , 2017, Acta biomaterialia.
[64] A. Pandit,et al. Bioengineered three-dimensional diseased intervertebral disc model revealed inflammatory crosstalk. , 2017, Biomaterials.
[65] H. Walles,et al. Osteogenesis and mineralization of mesenchymal stem cells in collagen type I-based recombinant peptide scaffolds. , 2017, Journal of biomedical materials research. Part A.
[66] D. Jaikumar,et al. Effect of chromium(III) gallate complex on stabilization of collagen. , 2017, International journal of biological macromolecules.
[67] Yue Zhou,et al. Repairing the ruptured annular fibrosus by using type I collagen combined with citric acid, EDC and NHS: an in vivo study , 2017, European Spine Journal.
[68] Yun Liu,et al. Improved performance of collagen scaffolds crosslinked by Traut’s reagent and Sulfo-SMCC , 2017, Journal of biomaterials science. Polymer edition.
[69] Sarah Unser,et al. Collagen-Gold Nanoparticle Conjugates for Versatile Biosensing , 2017, Sensors.
[70] Cameron P. Brown,et al. Effect of crosslinking in cartilage-like collagen microstructures. , 2017, Journal of the mechanical behavior of biomedical materials.
[71] Wenhang Wang,et al. Mechanical properties and solubility in water of corn starch-collagen composite films: Effect of starch type and concentrations. , 2017, Food chemistry.
[72] Richard W Farndale,et al. Fundamental insight into the effect of carbodiimide crosslinking on cellular recognition of collagen-based scaffolds. , 2017, Acta biomaterialia.
[73] N. Çağıl,et al. Outcomes of corneal collagen crosslinking using a customized epithelial debridement technique in keratoconic eyes with thin corneas , 2017, International Ophthalmology.
[74] P. Enders,et al. Effect of corneal collagen crosslinking on subsequent deep anterior lamellar keratoplasty (DALK) in keratoconus , 2017, Graefe's Archive for Clinical and Experimental Ophthalmology.
[75] Byung-Jae Kang,et al. New Insights into the Pros and Cons of Cross-Linking Decellularized Bioartificial Organs , 2017, The International journal of artificial organs.
[76] Daidi Fan,et al. A novel human-like collagen hemostatic sponge with uniform morphology, good biodegradability and biocompatibility , 2017, Journal of biomaterials applications.
[77] Hassan Razmjoo,et al. Short-term result of collagen crosslinking in pellucid marginal degeneration , 2016, Advanced biomedical research.
[78] J. Tien,et al. Generation, Endothelialization, and Microsurgical Suture Anastomosis of Strong 1-mm-Diameter Collagen Tubes. , 2016, Tissue engineering. Part A.
[79] A. Fadlallah,et al. Corneal Resistance to Keratolysis After Collagen Crosslinking With Rose Bengal and Green Light. , 2016, Investigative ophthalmology & visual science.
[80] A. Behndig,et al. Refractive improvements and safety with topography-guided corneal crosslinking for keratoconus: 1-year results , 2016, British Journal of Ophthalmology.
[81] Daidi Fan,et al. A novel smart injectable hydrogel prepared by microbial transglutaminase and human-like collagen: Its characterization and biocompatibility. , 2016, Materials science & engineering. C, Materials for biological applications.
[82] Ranjani B Iyer,et al. In vitro characterization of electrochemically compacted collagen matrices for corneal applications , 2016, Biomedical materials.
[83] K. Min,et al. Effects of proanthocyanidin, a crosslinking agent, on physical and biological properties of collagen hydrogel scaffold , 2016, Restorative dentistry & endodontics.
[84] Erich Wintermantel,et al. Bio-inspired in situ crosslinking and mineralization of electrospun collagen scaffolds for bone tissue engineering. , 2016, Biomaterials.
[85] M. Nathan,et al. Photo-oxidized bovine pericardium in congenital cardiac surgery: single-centre experience. , 2016, Interactive cardiovascular and thoracic surgery.
[86] C. Battaglia,et al. Major Action of Endogenous Lysyl Oxidase in Clear Cell Renal Cell Carcinoma Progression and Collagen Stiffness Revealed by Primary Cell Cultures. , 2016, The American journal of pathology.
[87] M. Hashimoto,et al. Influence of Nonenzymatic Glycation in Dentinal Collagen on Dental Caries , 2016, Journal of dental research.
[88] Rachita Lakra,et al. Curcumin cross-linked collagen aerogels with controlled anti-proteolytic and pro-angiogenic efficacy , 2016, Biomedical materials.
[89] A. Kishen,et al. Characterizing the collagen stabilizing effect of crosslinked chitosan nanoparticles against collagenase degradation. , 2016, Dental materials : official publication of the Academy of Dental Materials.
[90] Irit Sagi,et al. Tumor Cell Invasion Can Be Blocked by Modulators of Collagen Fibril Alignment That Control Assembly of the Extracellular Matrix. , 2016, Cancer research.
[91] Mohammad Kamali,et al. Comparative study of changes of corneal curvatures and uncorrected distance visual acuity prior to and after corneal collagen crosslinking: 1-year results , 2016, Taiwan journal of ophthalmology.
[92] M. Gelinsky,et al. Jellyfish collagen and alginate: Combined marine materials for superior chondrogenesis of hMSC. , 2016, Materials science & engineering. C, Materials for biological applications.
[93] Farshid Guilak,et al. Fabrication of anatomically-shaped cartilage constructs using decellularized cartilage-derived matrix scaffolds. , 2016, Biomaterials.
[94] A. Sannino,et al. Scaffolds for bone regeneration made of hydroxyapatite microspheres in a collagen matrix. , 2016, Materials science & engineering. C, Materials for biological applications.
[95] Jin-Jia Hu,et al. Rapid Fabrication of a Cell-Seeded Collagen Gel-Based Tubular Construct that Withstands Arterial Pressure , 2016, Annals of Biomedical Engineering.
[96] L. Ye,et al. A vascular tissue engineering scaffold with core–shell structured nano-fibers formed by coaxial electrospinning and its biocompatibility evaluation , 2016, Biomedical materials.
[97] L. Yao,et al. Dynamic behaviors of astrocytes in chemically modified fibrin and collagen hydrogels. , 2016, Integrative biology : quantitative biosciences from nano to macro.
[98] Hong Bu,et al. Genipin crosslinking reduced the immunogenicity of xenogeneic decellularized porcine whole-liver matrices through regulation of immune cell proliferation and polarization , 2016, Scientific Reports.
[99] J. Snedeker,et al. Tendon Collagen Crosslinking Offers Potential to Improve Suture Pullout in Rotator Cuff Repair: An Ex Vivo Sheep Study , 2016, Clinical orthopaedics and related research.
[100] D. Grainger,et al. Extracellular matrix-based biomaterial scaffolds and the host response. , 2016, Biomaterials.
[101] K. Meek,et al. Enzymatic Resistance of Corneas Crosslinked Using Riboflavin in Conjunction With Low Energy, High Energy, and Pulsed UVA Irradiation Modes , 2016, Investigative ophthalmology & visual science.
[102] I. Rupenthal,et al. Nanoparticle cross-linked collagen shields for sustained delivery of pilocarpine hydrochloride. , 2016, International journal of pharmaceutics.
[103] Ryan C Bailey,et al. Increasing the strength and bioactivity of collagen scaffolds using customizable arrays of 3D-printed polymer fibers. , 2016, Acta biomaterialia.
[104] Yong Wang,et al. The effect of proanthocyanidin-containing 10% phosphoric acid on bonding properties and MMP inhibition. , 2016, Dental materials : official publication of the Academy of Dental Materials.
[105] T. Sastry,et al. Effect of reinforced Al2O3 nanoparticles on collagen nanobiocomposite from chrome-containing leather waste for biomedical applications , 2016, Clean Technologies and Environmental Policy.
[106] Rachita Lakra,et al. Effect of bimetallic iron:zinc nanoparticles on collagen stabilization. , 2016, Journal of materials chemistry. B.
[107] K. Munger,et al. A novel photochemical cross-linking technology to improve luminal gain, vessel compliance, and buckling post-angioplasty in porcine arteries. , 2016, Journal of biomedical materials research. Part B, Applied biomaterials.
[108] D. Arola,et al. On the stiffness of demineralized dentin matrices. , 2016, Dental materials : official publication of the Academy of Dental Materials.
[109] Kevin W Eliceiri,et al. Validation of an arterial constitutive model accounting for collagen content and crosslinking. , 2016, Acta biomaterialia.
[110] F. Tay,et al. Occlusal loading and cross-linking effects on dentin collagen degradation in physiological conditions. , 2016, Dental materials : official publication of the Academy of Dental Materials.
[111] L. Yao,et al. Injectable hydrogel provides growth-permissive environment for human nucleus pulposus cells. , 2016, Journal of biomedical materials research. Part A.
[112] K. Min,et al. Effects of epicatechin, a crosslinking agent, on human dental pulp cells cultured in collagen scaffolds , 2016, Journal of applied oral science : revista FOB.
[113] R. Faridi‐Majidi,et al. Preparation of a biomimetic composite scaffold from gelatin/collagen and bioactive glass fibers for bone tissue engineering. , 2016, Materials science & engineering. C, Materials for biological applications.
[114] M. Harmsen,et al. Development of recombinant collagen-peptide-based vehicles for delivery of adipose-derived stromal cells. , 2016, Journal of biomedical materials research. Part A.
[115] Jacob A. VanderBurgh,et al. Manipulation of in vitro collagen matrix architecture for scaffolds of improved physiological relevance , 2015, Physical biology.
[116] Daidi Fan,et al. Novel hydrogels based on carboxyl pullulan and collagen crosslinking with 1, 4-butanediol diglycidylether for use as a dermal filler: initial in vitro and in vivo investigations. , 2015, Materials science & engineering. C, Materials for biological applications.
[117] L. Mastropasqua. Collagen cross-linking: when and how? A review of the state of the art of the technique and new perspectives , 2015, Eye and Vision.
[118] B. W. van Balkom,et al. Exosomes from hypoxic endothelial cells have increased collagen crosslinking activity through up‐regulation of lysyl oxidase‐like 2 , 2015, Journal of cellular and molecular medicine.
[119] Rachita Lakra,et al. Fabrication of homobifunctional crosslinker stabilized collagen for biomedical application , 2015, Biomedical materials.
[120] B. Nair,et al. Nanorod mediated collagen scaffolds as extra cellular matrix mimics , 2015, Biomedical materials.
[121] R. Cameron,et al. Biomaterials Synthesis and Characterization Optimisation of Uv Irradiation as a Binding Site Conserving Method for Crosslinking Collagen-based Scaffolds , 2022 .
[122] R. Cameron,et al. Tailoring chitosan/collagen scaffolds for tissue engineering: Effect of composition and different crosslinking agents on scaffold properties. , 2015, Carbohydrate polymers.
[123] Jixiang Zhu,et al. A tubular gelatin scaffold capable of the time-dependent controlled release of epidermal growth factor and mitomycin C. , 2015, Colloids and surfaces. B, Biointerfaces.
[124] Nelson Durán,et al. Advances in Dental Materials through Nanotechnology: Facts, Perspectives and Toxicological Aspects. , 2015, Trends in biotechnology.
[125] Y. Ni,et al. Physical crosslinkings of edible collagen casing. , 2015, International journal of biological macromolecules.
[126] T. Ovaert,et al. Genipin crosslinking of cartilage enhances resistance to biochemical degradation and mechanical wear , 2015, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[127] A. Mata,et al. Development of tailored and self-mineralizing citric acid-crosslinked hydrogels for in situ bone regeneration. , 2015, Biomaterials.
[128] L. Bonassar,et al. Riboflavin crosslinked high-density collagen gel for the repair of annular defects in intervertebral discs: An in vivo study. , 2015, Acta biomaterialia.
[129] D. Pashley,et al. Effect of ultraviolet A-induced crosslinking on dentin collagen matrix. , 2015, Dental materials : official publication of the Academy of Dental Materials.
[130] Changpeng Li,et al. Collagen cryogel cross-linked by naturally derived dialdehyde carboxymethyl cellulose. , 2015, Carbohydrate polymers.
[131] M. Mazloumi,et al. Effects of Corneal Collagen Crosslinking on Confocal Microscopic Findings and Tear Indices in Patients with Progressive Keratoconus , 2015, International journal of preventive medicine.
[132] V. Nistor,et al. Multiphoton crosslinking for biocompatible 3D printing of type I collagen , 2015, Biofabrication.
[133] Sonia H Yoo,et al. Corneal stromal elasticity and viscoelasticity assessed by atomic force microscopy after different cross linking protocols. , 2015, Experimental eye research.
[134] Jian-feng Zhou,et al. UVA-activated riboflavin improves the strength of human dentin. , 2015, Journal of oral science.
[135] F. O'Brien,et al. Functionalization of a Collagen–Hydroxyapatite Scaffold with Osteostatin to Facilitate Enhanced Bone Regeneration , 2015, Advanced healthcare materials.
[136] B. Harley,et al. Optimizing Collagen Scaffolds for Bone Engineering: Effects of Cross-linking and Mineral Content on Structural Contraction and Osteogenesis , 2015, The Journal of craniofacial surgery.
[137] C. Yao,et al. Porous gelatin/tricalcium phosphate/genipin composites containing lumbrokinase for bone repair. , 2015, Bone.
[138] Xuebin B. Yang,et al. Compositional and in Vitro Evaluation of Nonwoven Type I Collagen/Poly-dl-lactic Acid Scaffolds for Bone Regeneration , 2015, Journal of functional biomaterials.
[139] D. Pashley,et al. Effect of pretreatment with collagen crosslinkers on dentin protease activity. , 2015, Dental materials : official publication of the Academy of Dental Materials.
[140] Naveen Kumar,et al. Comparative histologic and immunologic evaluation of 1,4-butanediol diglycidyl ether crosslinked versus noncrosslinked acellular swim bladder matrix for healing of full-thickness skin wounds in rabbits. , 2015, The Journal of surgical research.
[141] Md. Sofiqul Islam,et al. Effect of phytic acid etchant on the structural stability of demineralized dentine and dentine bonding. , 2015, Journal of the mechanical behavior of biomedical materials.
[142] R. Cameron,et al. Control of crosslinking for tailoring collagen-based scaffolds stability and mechanics , 2015, Acta biomaterialia.
[143] J. Deprest,et al. Diaphragm Repair with a Novel Cross-Linked Collagen Biomaterial in a Growing Rabbit Model , 2015, PloS one.
[144] B. Chan,et al. A Structurally and Functionally Biomimetic Biphasic Scaffold for Intervertebral Disc Tissue Engineering , 2015, PloS one.
[145] B. K. Gupta,et al. Nanobiocomposite from Collagen Waste Using Iron Oxide Nanoparticles and Its Conversion Into Magnetic Nanocarbon. , 2015, Journal of nanoscience and nanotechnology.
[146] Neil Rushton,et al. Effect of 1-ethyl-3-(3-dimethylaminopropyl) carbodiimide and N-hydroxysuccinimide concentrations on the mechanical and biological characteristics of cross-linked collagen fibres for tendon repair , 2015, Regenerative biomaterials.
[147] N. Chandrasekaran,et al. Synthesis, characterization and evaluation of collagen scaffolds crosslinked with aminosilane functionalized silver nanoparticles: in vitro and in vivo studies. , 2015, Journal of materials chemistry. B.
[148] Terry Kim,et al. Reshaping procedures for the surgical management of corneal ectasia , 2015, Journal of cataract and refractive surgery.
[149] Rachita Lakra,et al. Effect of curcumin caged silver nanoparticle on collagen stabilization for biomedical applications. , 2015, International journal of biological macromolecules.
[150] B. Matthews,et al. Remodeling characteristics and biomechanical properties of a crosslinked versus a non-crosslinked porcine dermis scaffolds in a porcine model of ventral hernia repair , 2015, Hernia.
[151] A. Oryan,et al. Three-Dimensional Porous Gelapin–Simvastatin Scaffolds Promoted Bone Defect Healing in Rabbits , 2015, Calcified Tissue International.
[152] Eva Brauchle,et al. Generation and Assessment of Functional Biomaterial Scaffolds for Applications in Cardiovascular Tissue Engineering and Regenerative Medicine , 2015, Advanced healthcare materials.
[153] Yves Bayon,et al. To cross-link or not to cross-link? Cross-linking associated foreign body response of collagen-based devices. , 2015, Tissue engineering. Part B, Reviews.
[154] A. Sionkowska,et al. Effects of different crosslinking methods on the properties of collagen-calcium phosphate composite materials. , 2015, International journal of biological macromolecules.
[155] J. H. Lee,et al. Characterization and tissue incorporation of cross-linked human acellular dermal matrix. , 2015, Biomaterials.
[156] J. Rao,et al. Magnetic collagen fibers stabilized using functional iron oxide nanoparticles in non-aqueous medium , 2015 .
[157] K. Aoki,et al. Phytic acid: an alternative root canal chelating agent. , 2015, Journal of endodontics.
[158] T. Arinzeh,et al. An investigation of common crosslinking agents on the stability of electrospun collagen scaffolds. , 2015, Journal of biomedical materials research. Part A.
[159] Jerry C. Hu,et al. Harnessing biomechanics to develop cartilage regeneration strategies. , 2015, Journal of biomechanical engineering.
[160] J. McAlpine,et al. Mimicking the hierarchical functions of dentin collagen cross-links with plant derived phenols and phenolic acids. , 2014, Langmuir : the ACS journal of surfaces and colloids.
[161] Jerry C. Hu,et al. Developing functional musculoskeletal tissues through hypoxia and lysyl oxidase-induced collagen cross-linking , 2014, Proceedings of the National Academy of Sciences.
[162] M. Kiran,et al. Fluorescent nanonetworks: A novel bioalley for collagen scaffolds and Tissue Engineering , 2014, Scientific Reports.
[163] Chengtie Wu,et al. Crosslinking of saphenous vein ECM by procyanidins for small diameter blood vessel replacement. , 2014, Journal of biomedical materials research. Part B, Applied biomaterials.
[164] B. Willershausen,et al. In vitro and in vivo characterization of porcine acellular dermal matrix for gingival augmentation procedures. , 2014, Journal of periodontal research.
[165] C. Torneck,et al. Bioactive chitosan nanoparticles and photodynamic therapy inhibit collagen degradation in vitro. , 2014, Journal of endodontics.
[166] D. Zeugolis,et al. Influence of sterilisation methods on collagen-based devices stability and properties , 2014, Expert review of medical devices.
[167] M. Yamauchi,et al. Characterization of Genipin-Modified Dentin Collagen , 2014, BioMed research international.
[168] G. Fried,et al. A systematic review of synthetic and biologic materials for abdominal wall reinforcement in contaminated fields , 2014, Surgical Endoscopy.
[169] Bryan J Pfister,et al. Controlled formation of cross-linked collagen fibers for neural tissue engineering applications , 2014, Biofabrication.
[170] L. Breschi,et al. Carbodiimide Inactivation of MMPs and Effect on Dentin Bonding , 2014, Journal of dental research.
[171] J. Werkmeister,et al. Bone regeneration using photocrosslinked hydrogel incorporating rhBMP-2 loaded 2-N, 6-O-sulfated chitosan nanoparticles. , 2014, Biomaterials.
[172] Zhipeng Gu,et al. Modification of collagen with a natural derived cross-linker, alginate dialdehyde. , 2014, Carbohydrate polymers.
[173] Anja Lode,et al. Jellyfish collagen scaffolds for cartilage tissue engineering. , 2014, Acta biomaterialia.
[174] S. Grant,et al. Assessment of the biocompatibility and stability of a gold nanoparticle collagen bioscaffold. , 2014, Journal of biomedical materials research. Part A.
[175] E. Middelkoop,et al. Effect of pore size and cross-linking of a novel collagen-elastin dermal substitute on wound healing , 2014, Journal of Materials Science: Materials in Medicine.
[176] Xuanyi Ma,et al. Photochemically crosslinked collagen annulus plug: a potential solution solving the leakage problem of cell-based therapies for disc degeneration. , 2013, Acta biomaterialia.
[177] F. Guilak,et al. The effects of crosslinking of scaffolds engineered from cartilage ECM on the chondrogenic differentiation of MSCs. , 2013, Biomaterials.
[178] Zhipeng Gu,et al. Synergistic effect of carbodiimide and dehydrothermal crosslinking on acellular dermal matrix. , 2013, International journal of biological macromolecules.
[179] M. Richter,et al. Enzyme-catalyzed protein crosslinking , 2012, Applied Microbiology and Biotechnology.
[180] R. Manfredi,et al. Italian Biological Prosthesis Work-Group (IBPWG): proposal for a decisional model in using biological prosthesis , 2012, World Journal of Emergency Surgery.
[181] C. Gerber,et al. Potential of collagen cross-linking therapies to mediate tendon mechanical properties. , 2012, Journal of shoulder and elbow surgery.
[182] Jan P Stegemann,et al. Gelatin microspheres crosslinked with genipin for local delivery of growth factors , 2010, Journal of tissue engineering and regenerative medicine.
[183] Kyle V. Camarda,et al. Adhesive/Dentin Interface: The Weak Link in the Composite Restoration , 2010, Annals of Biomedical Engineering.
[184] J. Tessmar,et al. Matrices and scaffolds for protein delivery in tissue engineering. , 2007, Advanced drug delivery reviews.
[185] W. Helton,et al. Abdominal wall reconstruction using biological tissue grafts: present status and future opportunities , 2006, Expert review of medical devices.
[186] A. Bailey,et al. Enzymic and non‐enzymic cross‐linking mechanisms in relation to turnover of collagen: relevance to aging and exercise , 2005, Scandinavian journal of medicine & science in sports.
[187] A Rajaram,et al. Influence of different crosslinking treatments on the physical properties of collagen membranes. , 2003, Biomaterials.
[188] J. Veerkamp,et al. Development of tailor-made collagen-glycosaminoglycan matrices: EDC/NHS crosslinking, and ultrastructural aspects. , 2000, Biomaterials.
[189] W. Friess,et al. Collagen--biomaterial for drug delivery. , 1998, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[190] E. Atkins,et al. Chemical cross-linking restrictions on models for the molecular organization of the collagen fibre , 1980, Nature.
[191] M. Matthews,et al. Eliminating glutaraldehyde from crosslinked collagen films using supercritical CO2. , 2018, Journal of biomedical materials research. Part A.
[192] Gopal Shankar Krishnakumar,et al. Evaluation of different crosslinking agents on hybrid biomimetic collagen-hydroxyapatite composites for regenerative medicine. , 2018, International journal of biological macromolecules.
[193] F. Tay,et al. Dentin bonding systems: From dentin collagen structure to bond preservation and clinical applications. , 2018, Dental materials : official publication of the Academy of Dental Materials.
[194] D. Viswanathan,et al. Comparative study of long-term outcomes of accelerated and conventional collagen crosslinking for progressive keratoconus , 2018, Eye.
[195] Yiying Zhang,et al. Gel-spinning of mimetic collagen and collagen/nano-carbon fibers: Understanding multi-scale influences on molecular ordering and fibril alignment. , 2017, Journal of the mechanical behavior of biomedical materials.
[196] T. Maruno,et al. Hesperidin interaction to collagen detected by physico-chemical techniques. , 2017, Dental materials : official publication of the Academy of Dental Materials.
[197] Tianming Du,et al. Modification of collagen-chitosan matrix by the natural crosslinker alginate dialdehyde. , 2016, International journal of biological macromolecules.
[198] M. Frigione,et al. Assessment of collagen crosslinking and denaturation for the design of regenerative scaffolds. , 2016, Journal of biomedical materials research. Part A.
[199] Jiang Chang,et al. Preparation of decellularized vascular matrix by co-crosslinking of procyanidins and glutaraldehyde. , 2015, Bio-medical materials and engineering.
[200] Tae-Hyun Kim,et al. Utilizing core-shell fibrous collagen-alginate hydrogel cell delivery system for bone tissue engineering. , 2014, Tissue engineering. Part A.
[201] Qingang Hu,et al. Controlling stem cell-mediated bone regeneration through tailored mechanical properties of collagen scaffolds. , 2014, Biomaterials.
[202] Jeffrey M. Caves,et al. Effects of crosslinking on the mechanical properties, drug release and cytocompatibility of protein polymers. , 2014, Acta biomaterialia.
[203] Shu Chien,et al. Vascular tissue engineering: from in vitro to in situ , 2014, Wiley interdisciplinary reviews. Systems biology and medicine.
[204] F. Tay,et al. State of the art etch-and-rinse adhesives. , 2011, Dental materials : official publication of the Academy of Dental Materials.
[205] James E Bruce,et al. Chemical cross-linking for protein-protein interaction studies. , 2009, Methods in molecular biology.
[206] P. Prithvi Raj,et al. Intervertebral Disc: Anatomy‐Physiology‐Pathophysiology‐Treatment , 2008, Pain practice : the official journal of World Institute of Pain.
[207] R L Reis,et al. Materials in particulate form for tissue engineering. 1. Basic concepts , 2007, Journal of tissue engineering and regenerative medicine.
[208] A. Bailey,et al. Effect of ionizing radiation on connective tissue components. , 1968, International review of connective tissue research.
[209] P. V. von Hippel,et al. The structure of collagen and gelatin. , 1961, Advances in protein chemistry.