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Journals Journal of Biomedical Material...

Journal of Biomedical Materials Research

https://read.qxmd.com/read/12209931/adhesive-phase-separation-at-the-dentin-interface-under-wet-bonding-conditions
#21
JOURNAL ARTICLE
Paulette Spencer, Yong Wang
Under in vivo conditions, there is little control over the amount of water left on the tooth and, thus, there is the danger of leaving the dentin surface so wet that the bonding resin undergoes physical separation into hydrophobic and hydrophilic-rich phases. The purpose of this study was to investigate phase separation in 2,2-bis[4(2-hydroxy-3-methacryloyloxy-propyloxy)-phenyl] propane (BisGMA)-based adhesive using molecular microanalysis and to examine the effect of phase separation on the structural characteristics of the hybrid layer...
December 5, 2002: Journal of Biomedical Materials Research
https://read.qxmd.com/read/12209930/fabrication-and-surface-modification-of-macroporous-poly-l-lactic-acid-and-poly-l-lactic-co-glycolic-acid-70-30-cell-scaffolds-for-human-skin-fibroblast-cell-culture
#22
JOURNAL ARTICLE
Jian Yang, Guixin Shi, Jianzhong Bei, Shenguo Wang, Yilin Cao, Qingxin Shang, Guanghui Yang, Wenjing Wang
The fabrication and surface modification of a porous cell scaffold are very important in tissue engineering. Of most concern are high-density cell seeding, nutrient and oxygen supply, and cell affinity. In the present study, poly(L-lactic acid) and poly(L-lactic-co-glycolic acid) (70/30) cell scaffolds with different pore structures were fabricated. An improved method based on Archimedes' Principle for measuring the porosity of scaffolds, using a density bottle, was developed. Anhydrous ammonia plasma treatment was used to modify surface properties to improve the cell affinity of the scaffolds...
December 5, 2002: Journal of Biomedical Materials Research
https://read.qxmd.com/read/12209929/tissue-responses-against-immunoisolating-alginate-pll-capsules-in-the-immediate-posttransplant-period
#23
JOURNAL ARTICLE
Paul de Vos, Chris G van Hoogmoed, Bart J de Haan, Henk J Busscher
Alginate-polylysine (PLL) capsules are commonly applied for immunoisolation of living cells for the treatment of a wide variety of diseases. Large-scale application of the technique, however, is hampered by insufficient biocompatibility of the capsules with failure of the grafts as a consequence. Most studies addressing biocompatibility issues of alginate-PLL capsules have focused on the degree of overgrowth on the capsules after graft failure and not on the reaction against the capsules in the immediate posttransplant period...
December 5, 2002: Journal of Biomedical Materials Research
https://read.qxmd.com/read/12209928/a-jet-impingement-investigation-of-osteoblastic-cell-adhesion
#24
JOURNAL ARTICLE
Danielle C Giliberti, Kimberly A Anderson, Kay C Dee
When designing dental and orthopedic implants, it is important to consider phenomena occurring at the microscopic level, particularly at the bone-implant interface. The presence of hard tissue at this interface is essential to implant viability. The integrity of this tissue-biomaterial interface is dependent on appropriate osteoblast functions (adhesion, matrix deposition, etc.) in the immediate area. Researchers have modified various materials with cell-adhesive peptides with the ultimate goal of controlling osteoblast functions...
December 5, 2002: Journal of Biomedical Materials Research
https://read.qxmd.com/read/12209927/characterization-of-implant-materials-in-fetal-bovine-serum-and-sodium-sulfate-by-electrochemical-impedance-spectroscopy-i-mechanically-polished-samples
#25
JOURNAL ARTICLE
F Contu, B Elsener, H Böhni
Electrochemical impedance spectroscopy is used to monitor the long-term stability (up to 150 days) of mechanically polished commercial pure titanium, Ti6Al4V, Ti6Al7Nb, and CoCrMo alloys in 0.1M sodium sulfate and fetal bovine serum. A capacitive spectrum in the frequency range from 10(-3) to 10(5) Hz is always found and the impedance spectra can be fitted by a simple parallel RC circuit with a constant phase element. The open circuit potential observed in serum is always more cathodic and the polarization resistance (R(p)) is higher than that recorded in sodium sulfate solutions...
December 5, 2002: Journal of Biomedical Materials Research
https://read.qxmd.com/read/12209926/characterization-of-microrough-bioactive-glass-surface-surface-reactions-and-osteoblast-responses-in-vitro
#26
JOURNAL ARTICLE
A Itälä, H O Ylänen, J Yrjans, T Heino, T Hentunen, M Hupa, H T Aro
The current study characterized the in vitro surface reactions of microroughened bioactive glasses and compared osteoblast cell responses between smooth and microrough surfaces. Three different bioactive glass compositions were used and surface microroughening was obtained using a novel chemical etching method. Porous bioactive glass specimens made of sintered microspheres were immersed in simulated body fluid (SBF) or Tris solutions for 1, 6, 24, 48, or 72 h, and the formation of reaction layers was studied by means of a scanning electron microscope/energy dispersive X-ray analysis (SEM/EDXA)...
December 5, 2002: Journal of Biomedical Materials Research
https://read.qxmd.com/read/12209925/liquid-acrylate-endcapped-biodegradable-poly-epsilon-caprolactone-co-trimethylene-carbonate-ii-computer-aided-stereolithographic-microarchitectural-surface-photoconstructs
#27
JOURNAL ARTICLE
Takehisa Matsuda, Manabu Mizutani
Advanced micromedical devices may require computer-aided photofabrication, by which microarchitectural surface design and entire macroshaped body design are feasible. Liquid acrylate-endcapped poly(epsilon-caprolactone-co-trimethylene carbonate)s, poly(CL/TMC)s, prepared using trimethylene glycol (TMG) or poly(ethylene glycol) (PEG) as an initiator and an acrylate group for subsequent terminal capping, were used as photocurable copolymers. The stereolithographically microarchitectured photoconstructs were prepared using a custom-designed apparatus with a moving ultraviolet (UV) light pen driven by a computer-assisted design program...
December 5, 2002: Journal of Biomedical Materials Research
https://read.qxmd.com/read/12209924/liquid-acrylate-endcapped-biodegradable-poly-epsilon-caprolactone-co-trimethylene-carbonate-i-preparation-and-visible-light-induced-photocuring-characteristics
#28
JOURNAL ARTICLE
Manabu Mizutani, Takehisa Matsuda
Photocurable liquid biodegradable copolymers were prepared by ring-opening copolymerization of epsilon-caprolactone (CL) and trimethylene carbonate (TMC) in the presence of a multifunctional hydroxyl group-bearing substance (di-, tri-, and tetra-functional alcohol and poly(ethylene glycol) (PEG) and its four-branched derivative) as an initiator and subsequent endcapping with acryloyl chloride at their hydroxyl terminals. These multifunctional, viscous liquid copolymers (molecular weights; approximately 2 x 10(3) to 7 x 10(3) g/mol) were converted to crosslinked solids by visible-light irradiation in the presence of camphorquinone as an initiator...
December 5, 2002: Journal of Biomedical Materials Research
https://read.qxmd.com/read/12209923/calcium-phosphate-chitosan-composite-scaffolds-for-controlled-in-vitro-antibiotic-drug-release
#29
JOURNAL ARTICLE
Yong Zhang, Miqin Zhang
Macroporous chitosan scaffolds reinforced by beta-tricalcium phosphate (beta-TCP) and calcium phosphate invert glasses were fabricated using a thermally induced phase separation technique. These porous composite materials were specially designed as both a drug carrier for controlled drug release and a scaffold for bone regeneration. The controlled drug release of antibiotic gentamicin-sulfate (GS) loaded scaffolds and morphology of osteosarcoma MG63 cells cultured on the scaffolds were studied. In comparison with the GS loaded pure chitosan scaffolds, the initial burst release of GS was decreased through incorporating calcium phosphate crystals and glasses into the scaffolds, and the sustained release for more than 3 weeks was achieved...
December 5, 2002: Journal of Biomedical Materials Research
https://read.qxmd.com/read/12209922/optimization-of-monomethoxy-polyethylene-glycol-grafting-on-the-pancreatic-islet-capsules
#30
JOURNAL ARTICLE
Dong Yun Lee, Kyungwook Yang, Sangjun Lee, Su Young Chae, Kwang-Won Kim, Moon Kyu Lee, Duck-Jong Han, Youngro Byun
As a new approach to islet transplantation, biocompatible monomethoxy-poly(ethylene glycol) (mPEG) was chemically grafted onto the pancreatic islet capsule. The aim of this study was to determine the optimal conditions for completely covering the islet by the mPEG while maintaining a high viability of islets according to the reaction time and the repeating number of the reaction. By grafting the fluorescein-PEG instead of mPEG, we determined the optimal mPEG grafting time as 1 h, during which time the procedure did not reduce islet viability...
December 5, 2002: Journal of Biomedical Materials Research
https://read.qxmd.com/read/12209921/collagen-fiber-disruption-occurs-independent-of-calcification-in-clinically-explanted-bioprosthetic-heart-valves
#31
JOURNAL ARTICLE
Michael S Sacks, Frederick J Schoen
The durability of bioprosthetic heart valves (BHV) is severely limited by tissue deterioration, manifested as calcification and mechanical damage to the extracellular matrix. Extensive research on mineralization mechanisms has led to prevention strategies, but little work has been done on understanding the mechanisms of noncalcific matrix damage. The present study tested the hypothesis that calcification-independent damage to the valvular structural matrix mediated by mechanical factors occurs in clinical implants and could contribute to porcine aortic BHV structural failure...
December 5, 2002: Journal of Biomedical Materials Research
https://read.qxmd.com/read/12209920/bone-formation-by-rat-bone-marrow-cells-cultured-on-titanium-fiber-mesh-effect-of-in-vitro-culture-time
#32
JOURNAL ARTICLE
Juliette van den Dolder, Johan W M Vehof, Paul H M Spauwen, John A Jansen
The objective of this study was to examine the effect of cell culture time on bone formation by rat bone marrow cells seeded in titanium fiber mesh. As a seeding technique, a high cell suspension was used (3 x 10(6) cells/mL). Therefore, 30 meshes were repeatedly rotated in a 10 mL tube (containing 30 x 10(6) cells) on a rotation plate (2 rpm) for 3 h. Osteogenic cells were cultured for 1, 4, and 8 days on titanium fiber mesh and finally implanted subcutaneously in rats. Meshes without cells were also implanted subcutaneously in rats...
December 5, 2002: Journal of Biomedical Materials Research
https://read.qxmd.com/read/12209919/theoretical-investigation-of-elastic-flexural-properties-for-multistranded-orthodontic-archwires
#33
JOURNAL ARTICLE
Brian K Rucker, Robert P Kusy
The bending and torsional stresses during flexure were detailed and simplified for a single twisted strand, which emulates a spring. General expressions were derived to evaluate the elastic properties (i.e., strength, stiffness, and range) of multistranded wires by combining the effects of a number of outer twisted strands, with or without an inner strand. Specific expressions were solved for single-stranded, twisted, and coaxial wires. Initially, we considered the following multistranded wire configurations: two- (twin), three- (triple), four-strand (quad) twisted, and coaxial wires...
December 5, 2002: Journal of Biomedical Materials Research
https://read.qxmd.com/read/12209918/human-monocyte-response-to-retrieved-polymethylmethacrylate-particles
#34
JOURNAL ARTICLE
Masatsugu Miyaguchi, Akio Kobayashi, Hiroyoshi Iwaki, Hirotsugu Ohashi, Yoshinori Kadoya, Yoshiki Yamano
The purpose of this study was to compare retrieved polymethylmethacrylate (PMMA) particles from failed total hip arthroplasties in terms of size, shape, and the response of human monocytes with commercially available particles. PMMA particles were isolated from peri-implant tissues of five failed cemented total hip arthroplasties using tissue digestion and a sucrose density gradient technique. Prepolymerized cement powder and those from which barium sulfate had been removed were examined for comparison. After exposure of peripheral human monocytes to PMMA particles, tumor necrosis factor-alpha and interleukin-6 in medium were measured by using enzyme-linked immunosorbent assays...
December 5, 2002: Journal of Biomedical Materials Research
https://read.qxmd.com/read/12209917/characterization-of-cartilagenous-tissue-formed-on-calcium-polyphosphate-substrates-in-vitro
#35
JOURNAL ARTICLE
Stephen D Waldman, Marc D Grynpas, Robert M Pilliar, Rita A Kandel
Successful joint resurfacing by tissue-engineered cartilage has been limited, in part, by an inability to secure the implant to bone. To overcome this, we have developed the methodology to form a cartilage implant in vitro consisting of a layer of cartilagenous tissue overlying a porous, biodegradable calcium polyphosphate (CPP) substrate. As bone will grow into the CPP after implantation, it will result in anchorage of the cartilage. In this study, the cartilagenous tissue formed in vitro after 8 weeks in culture was characterized and compared to native articular cartilage...
December 5, 2002: Journal of Biomedical Materials Research
https://read.qxmd.com/read/12209916/a-new-vascular-prosthesis-coated-with-polyamino-acid-urethane-copolymer-pau-to-enhance-endothelialization
#36
JOURNAL ARTICLE
Chunren Wang, Qing Zhang, Shinji Uchida, Makoto Kodama
Clinically available synthetic ePTFE vascular grafts frequently fail when used for small-diameter arterial substitution. The lower long-term patency of ePTFE grafts is due mainly to thrombogenicity and poor healing. We developed a new small-diameter (1.5-mm) ePTFE vascular prosthesis coated with polyamino-acid urethane copolymer (PAU) to enhance endothelialization. Coating with PAU made the hydrophobic ePTFE vascular graft hydrophilic. Scanning electron microscopy (SEM) observation showed that PAU was homogeneously coated on the ePTFE graft while maintaining the graft's porous structure...
December 5, 2002: Journal of Biomedical Materials Research
https://read.qxmd.com/read/12209952/in-vivo-drug-distribution-dynamics-in-thermoablated-and-normal-rabbit-livers-from-biodegradable-polymers
#37
JOURNAL ARTICLE
Jinming Gao, Feng Qian, Agata Szymanski-Exner, Nicholas Stowe, John Haaga
Image-guided radiofrequency ablation combined with intratumoral drug delivery provides a novel and minimally invasive treatment of liver cancers. In this study, the in vivo transport properties of doxorubicin in thermoablated and nonablated rabbit livers were characterized and compared. Doxorubicin was released from polymer implants (millirods) to the ablated and nonablated liver tissue. At different time points, the 2D distribution profiles were quantitatively determined by a fluorescence imaging method. Analysis of the doxorubicin concentration at the ablation boundary showed that it reached a maximum of 49...
November 2002: Journal of Biomedical Materials Research
https://read.qxmd.com/read/12209951/new-acrylic-bone-cements-conjugated-to-vitamin-e-curing-parameters-properties-and-biocompatibility
#38
JOURNAL ARTICLE
J A Méndez, M R Aguilar, G A Abraham, B Vázquez, M Dalby, L Di Silvio, J San Román
Acrylic bone cement formulations with antioxidant character were prepared by incorporation of a methacrylic monomer derived from vitamin E (MVE). Increasing concentrations of this monomer provided decreasing peak temperature values, ranging from 62 to 36 degrees C, and increasing setting time with values between 17 and 25 min. Mechanical properties were evaluated by compression and tension tests. Compressive strength of the new formulations were superior to 70 MPa in all cases. The cement containing 25 wt % MVE, however, showed a significant decrease in tensile properties...
November 2002: Journal of Biomedical Materials Research
https://read.qxmd.com/read/12209950/enhancement-of-osteogenesis-on-hydroxyapatite-surface-coated-with-synthetic-peptide-eeeeeeeprgdt-in-vitro
#39
JOURNAL ARTICLE
D Itoh, S Yoneda, S Kuroda, H Kondo, A Umezawa, K Ohya, T Ohyama, S Kasugai
Some dental implants are coated with hydroxyapatite (HA), which preferentially binds to bone. Several matrix proteins have an arginine-glycine-aspartic acid (RGD) sequence where cells attach via an integrin receptor. We hypothesized that coating an HA surface with an RGD-containing peptide might enhance the attachment and differentiation of osteoblasts. The HA disks (diameter 34 mm, thickness 1 mm) were treated with a solution (50 mM Tris/HCl and 150 mM NaCl, pH 7.4) containing the peptide EEEEEEEPRGDT, in which the E repetition exerts a high affinity to HA...
November 2002: Journal of Biomedical Materials Research
https://read.qxmd.com/read/12209949/improvement-of-the-functions-of-osteoblasts-seeded-on-modified-poly-d-l-lactic-acid-with-poly-aspartic-acid
#40
JOURNAL ARTICLE
Kaiyong Cai, Kangde Yao, Xin Hou, Yaquan Wang, Yongjiang Hou, Zhiming Yang, Xiuqiong Li, Huiqi Xie
One of the challenges in the field of tissue engineering is the development of biomaterial/cell interactions. For the purposes of the present study, two molecular weights of poly(aspartic acid) (PASP) were used to modify poly(D,L-lactic acid) (PDLLA) films in order to enhance their cell affinity. The properties of the PDLLA-modified surfaces and the controls were investigated by water contact angle measurement and electron spectroscopy for chemical analysis (ESCA). These data reflect the change in the biocompatibility of modified PDLLA surfaces...
November 2002: Journal of Biomedical Materials Research
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