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Biomedical subjects

T Waris

Publications and source records attributed to T Waris.

At least 19 recordsLinked to original sources

Treatment of pectus excavatum with bioabsorbable polylactide plates: Preliminary results.

BACKGROUND/PURPOSE: Pectus excavatum usually is corrected by thoracoplasty using metal plates. Recently bioabsorbabe polylactide plates have been developed. The aim of this study was to compare outcome after use of metal and bioasorbable plates in thoracoplasty performed for correction of pectus excavatum. METHODS: Eighty-three children (<16 years old) underwent thoracoplasty (Sulamaa's technique). In 75 patients, metallic plates, and in 8 patients, self-reinforced poly-L-lactide (SR-PLLA) plates, were used. Seven patients in the SR-PLLA group and 13 patients in the metal plate group were assessed 0.5 to 13 years postoperatively. RESULTS: The mean operating time was 121 minutes in the metal plate group, and 87 minutes in the SR-PLLA plate group. In the metal plate group, complications were pain caused by instability of the metal plates (n = 17), wound infection (n = 3), recurrence of deformity (n = 3), postoperative pain (n = 3), pneumothorax (n = 1), and nonspecific postoperative fever (n = 1). Thirteen patients underwent reoperation to refix the position of the metallic plates. In the SR-PLLA group, one case of pneumothorax occurred, and plate fragment palpability caused local pain in one patient. Cosmetic results and lung function values were similar. CONCLUSION: Our preliminary results show that bioabsorbable plates are a useful option in the treatment of pectus excavatum in children.

Absorbable Implants↗

Comparison of strength properties of poly-L/D-lactide (PLDLA) 96/4 and polyglyconate (Maxon) sutures: in vitro, in the subcutis, and in the achilles tendon of rabbits.

Achilles tendon rupture is a common injury. Absorbable sutures are not commonly used because of their limited strength properties. Recently, sutures with prolonged strength retention properties have been developed. The aim of the study is to test the mechanical properties of recently developed poly-L/D-lactide (PLDLA) sutures in comparison with polyglyconate (Maxon) sutures. PLDLA (0.2 mm thick) and Maxon (4.0) sutures were studied in vitro by immersion in a buffered saline solution (pH 7.4). Tensile strength tests were done on sutures retrieved after 1-26 weeks. In vivo, they were implanted in the subcutis of 32 rabbits. Tensile strength tests were done on sutures retrieved after 1-6 weeks. The sutures were also used to repair the Achilles tendon in rabbits. Maximum force before breaking and percentage elongation of tendons were determined. Although PLDLA had a lower initial tensile strength than Maxon, PLDLA showed more prolonged tensile strength retention than Maxon. Tendons repaired with PLDLA, however, had a lower strength than Maxon-repaired tendons at six weeks (insignificant difference). PLDLA has more prolonged tensile strength properties compared with Maxon. Thus, PLDLA offers an alternative to Maxon in repair of the Achilles tendon.

Absorbable Implants↗

Developments in craniomaxillofacial surgery: use of self-reinforced bioabsorbable osteofixation devices.

Because of the problems associated with the conventional osteofixation devices used in craniomaxillofacial surgery, absorbable devices present an appealing alternative. Devices made of the polymers polylactide, polyglycolide, and their copolymers (PLGA and P[L/DL]LA) are currently the most commonly used. Ultrahigh-strength implants can be manufactured from these polymers with the self-reinforcing technique. Over the authors' almost two decades of study, both in experimental and clinical settings, self-reinforced devices have proved to be biocompatible, easy to handle, and mechanically strong, even for the fixation of femoral neck fractures. In craniomaxillofacial surgery, the authors have used self-reinforced devices for over 8 years without complications. Because of the more favored degradation characteristics, currently the copolymeric self-reinforced devices (P[L/DL]LA, Biosorb FX and PLGA, Biosorb PDX; Elite Performance Technologies, Solana Beach, Calif.) represent the advancing front in the application of absorbable devices in craniomaxillofacial surgery. The authors' share their experience and their studies of self-reinforced devices, which possess the highest strength and ductility of all bioabsorbable products.

Absorbable Implants↗

A new technique for correction of trigonocephaly in an infant: application of an absorbable endocranial plate.

We report on a new method of cranial bone osteofixation using absorbable material, which is applied endocranially to avoid the application of a thick, cosmetically inferior system epicranially in the frontal area. This is especially important in the correction of deformity in trigonocephaly cases. A 9-month-old boy presented with a prominent trigonocephalic deformity. Cranioplasty was performed, in which a supraorbital bar (bandeau) was removed, reinforced with a self-reinforced polylactide (SR-PLA) plate and reshaped to correct the deformity. The plate was applied on the inner side of the bony bar, with its ends fixed epicranially to the temporal bones by means of SR-PLA miniscrews. 3-D CT scans and rapid prototypes were used to evaluate the results. Stable and secure fixation was obtained, and the cosmetic result appeared excellent. No complications occurred during the postoperative period of 1 year. Hence, stabilisation of cranial bone can be achieved endocranially using an absorbable plate and screws, with an encouraging cosmetic result. The method is thought to be reliable.

Biocompatible Materials↗

Bioabsorbable scaffolds for guided bone regeneration and generation.

Several different bioabsorbable scaffolds designed and manufactured for guided bone regeneration and generation have been developed. In order to enhance the bioactivity and potential osteoconductivity of the scaffolds, different bioabsorbable polymers, composites of polymer and bioactive glass, and textured surface structures of the manufactured devices and composites were investigated in in vitro studies and experimental animal models. Solid, self-reinforced polyglycolide (SR-PGA) rods and self-reinforced poly L-lactide (SR-PLLA) rods were successfully used as scaffolds for bone formation in muscle by free tibial periosteal grafts in animal experiments. In an experimental maxillary cleft model, a bioabsorbable composite membrane of epsilon-caprolactone and L-lactic acid 50/50 copolymer (PCL/LLA) film and mesh and poly 96L,4D-lactide (PLA96) mesh were found to be suitable materials for guiding bone regeneration in the cleft defect area. The idea of solid layer and porous layer combined together was also transferred to stiff composite of poly 70L,30DL-lactide (PLA70) plate and PLA96 mesh which structure is introduced. The osteoconductivity of several different biodegradable composites of polymers and bioactive glass (BG) was shown by apatite formation in vitro. Three composites studied were self-reinforced composite of PLA70 and bioactive glass (SR-(PLA70 + BG)), SR-PLA70 plate coated with BG spheres, and Polyactive with BG.

Animals↗

[Musculoskeletal tissue engineering with resorbable polymers].

Musculoskeletal tissues can present congenital or acquired defects as a result of disease, accidental trauma or iatrogenous causes. This loss of bony substance is traditionally treated by the replacement of bony tissue (grafts or flaps), or by synthetic materials. Each of these methods of treatment, however, entails its specific disadvantages, limitations and complications. The recent approach for treatment of musculoskeletal defects has been the development of the growing of neotissues derived from autogenous cells, and artificial biodegradable matrixes. This method assumed the name "tissue engineering" in the late 1980s. Tissue Engineering, or TE, has employed advances made in the area of cellular culture, intercellular matrix biology, and also, in the area of biomaterial science. TE is an multi-disciplinary approach. Musculoskeletal TE, although in its preliminary stages, should allow access to treatments of the future.

Biocompatible Materials↗

SR-PLLA and SR-PGA miniscrews: biodegradation and tissue reactions in the calvarium and dura mater.

The biocompatibility and degradation of self-reinforced poly-L-lactide (SR-PLLA) and polyglycolide (SR-PGA) miniscrews, vs titanium miniscrews, was studied in frontal bone osteotomies in 20 lambs, where they were used for plate fixation. At follow-up at 4, 6, 12, 26, 52 and 104 weeks, no clinical foreign body reaction, infection or other complications had occurred. Histologically, PGA material was hydrolyzed and fragmented at 4-6 weeks and was resorbed by 12 weeks, whereas the SR-PLLA miniscrews retained their integrity and holding power for 26 weeks and were mostly resorbed at 2 years. According to histological and histomorphometric analyses and plain film radiography, the degradation of PGA miniscrews was accompanied by a typical non-specific foreign-body reaction and initial transient osteolysis with decreased osteoid formation around the screw channel, but compensatory intense osteoid formation and bone remodelling followed after resorption of the polymer. The foreign body reactions to PLLA and titanium were considerably milder. All miniscrews were commendably strong and could be satisfactorily tightened against the plate. SR-PLLA miniscrews offer fixation stability for half a year, whereas rapidly degrading SR-PGA miniscrews may be used when short-term fixation is needed.

Absorbable Implants↗

Biodegradable semirigid plate and miniscrew fixation compared with rigid titanium fixation in experimental calvarial osteotomy.

OBJECT: To determine the biocompatibility and suitability of resorbable plates and miniscrews, consolidation of symmetrical, bilateral frontal bone craniotomies that had been closed using various methods was studied in 20 growing lambs. METHODS: Bone fixation with a flexible, punched polylactide plate and four slowly degradable, self-reinforced poly-levolactide (SR-PLLA) or rapidly degradable, self-reinforced polyglycolide (SR-PGA) miniscrews (10 animals in each group) was compared intraindividually with rigid fixation by using a titanium miniplate and four miniscrews. Plain x-ray films, magnetic resonance images, histological studies, and histomorphometric studies were obtained at 4 to 104 weeks. CONCLUSIONS: No dislocation, instability, clinical foreign body reactions, infections, or loss of fixation were observed. Bone consolidation of the 2.35-mm-wide craniotomy lines was incomplete; connective tissue-filled defects through the bone were observed in 13 of 28 lines at 26 to 52 weeks. Statistical analyses based on histomorphometric studies showed no difference in consolidation with SR-PLLA miniscrew and titanium plate/screw fixation or between the two resorbable fixation methods. Fixation with rapidly degradable SR-PGA miniscrews resulted in less effective consolidation than on the contralateral titanium-treated side (p<0.05), but the bone segment was thicker (p<0.005). The SR-PGA miniscrews had disappeared by 6 weeks, the polyactide plate by 104 weeks, and the SR-PLLA miniscrews had been mostly resorbed at 104 weeks. Passive translocation of the titanium plates and screws into the bone tissue was seen at 52 and 104 weeks. In rapidly growing lamb frontal bone, comparable consolidation results, without complications, can be achieved with semi-rigid resorbable fixation compared with rigid metallic fixation.

Absorbable Implants↗

The formation of the demarcation line at experimental frostbite.

Experiments were carried out to gain a better understanding of the pathogenesis of frostbite and changes at the demarcation line after freezing and thawing and to determine the forming demarcation line as early as possible. These changes were investigated by histochemical techniques, by histofluorescence, by determining noradrenaline content in the tissue and nerve, by scintigraphy and thermography. The experimental animal was New Zealand white rabbit. The frostbite was produced using a small laboratory bottle filled with liquid nitrogen pressing against the shaved skin in the middle of the proximal part of the ear. Enzyme histochemistry was good in demonstrating the demarcation line between irreversibly damaged and healing frostbitten tissue. Especially the reaction to esterase was the clearest, the demarcation line was visible already after one week. The glyoxylic acid-induced fluorescence method was available for showing adrenergic nerves around the vessels and the accumulation of catecholamines in these nerves in the demarcation line. The result of quantitative measurement of catecholamines in the nerve and tissue was similar and the reaction was the most powerful during the first three days. Scintigraphy was better than thermography and necrotic areas in the middle of the frostbitten area became clearly visible after three weeks. It seems that many changes caused by frostbite happen both in tissue and cells. The role of catecholamines in vascular circumstances is important and that's why chemical or surgical sympathectomy could be useful.

Animals↗

Evaluation of self-reinforced polyglycolide membrane implanted in the subcutis of rabbits.

BACKGROUND: Self-reinforced absorbable implants have been developed recently to use in hard tissue reconstructive surgery. Polyglycolide is a biocompatible polymer from which the suture Dexon is made and widely used. AIMS: To study histologically the behaviour of self-reinforced polyglycolide membrane (SR-PGA) in rabbits' ears. MATERIAL AND METHODS: SR-PGA membranes, 0.4 mm thick, were implanted in the subcutis of the ears of 24 New Zealand white rabbits. Sham operations were carried out on the contralateral ear of each rabbit. The rabbits were followed-up for 4, 12 and 20 weeks. Attention was directed towards external macroscopic changes in the rabbits' ears. After sacrifice, the ears were taken as specimens, inspected for any evidence of infection, sinus formation or fluid accumulation and histological examination was carried out. RESULTS: No complications such as infection, fluid accumulation or sinus formation were observed. Histologically, the membranes induced a foreign-body reaction involving fibrous tissue encapsulation, macrophages and giant cells. Fibrous tissue and inflammatory cells were seen between the PGA fibres. The membranes underwent progressive degradation throughout the follow-up period. However, PGA material could be still seen 20 weeks postoperatively, with a small amount of fibrous tissue and macrophages and giant cells. The implant-cartilage interface comprised fibrous and fatty tissue. CONCLUSIONS: SR-PGA membranes are biocompatible when implanted in the subcutis of the ears of rabbits.

Absorbable Implants↗

Histological evaluation of poly(L-lactide/epsilon-caprolactone) membrane implanted subcutaneously in rats.

BACKGROUND: Poly(L-lactide/epsilon-caprolactone) [P(L-LA/epsilon-CL)] 50/50 membranes is an absorbable membrane which has been developed recently for possible use in tissue engineering. AIMS: To look at histological tissue reactions to the membrane and its behaviour upon its in vivo implantation in rats. MATERIAL AND METHODS: P(L-LA/e-CL) 50/50 membranes, 0.4 mm thick, were implanted subcutaneously in the dorsal neck of 20 Wistar rats. The rats were followed-up for 1, 3, 6, 12 and 28 months. After sacrifice, subcutaneous tissues with implants were taken as specimens, inspected for any gross abnormality and histological examination was carried out. RESULTS: No significant macroscopic changes were noticed except for two implants that were grossly rounded. Histologically, the membranes had undergone cracking, fragmentation and progressive degradation. Cracks appeared initially at the periphery of the implant. Large cracks progressed mainly in longitudinal planes. Cracks occurred in the middle of implants and led to membrane bending in some cases. "Neomembrane" formation, comprised of fibrous tissue and the implant, was seen. The foreign-body reaction to the membrane involved macrophages and foreign-body giant cells. In one case an acute type of polymorphonuclear cell reaction was observed and in a second case a predominantly lymphocytic reaction was seen at three months. They were thought to be the results of infection. No other adverse effects were seen. CONCLUSIONS: P(L-LA/e-CL) 50/50 membrane was found to be biocompatible when implanted subcutaneously in rats. It was degraded to a great extent but not completely in 28 months.

Absorbable Implants↗

Comparison of self-reinforced poly-L-lactide and steel wire in fixation of sternotomy in rabbits.

BACKGROUND AND AIMS: To investigate the healing of sternotomies fixed with biodegradable self-reinforced poly-L-lactide (SR-PLLA) wire and comparing it with steel wire fixation. MATERIAL AND METHODS: Sixteen rabbits (15 Chinchilla and one New Zealand White rabbit) were operated on. Two parallel holes of 1.5 mm in diameter were drilled in the sternum at the level of the second and third rib and similar holes of 0.8 mm were drilled at the level of the third and fourth rib. A transverse sternotomy was created between both drill hole pairs. The sternotomy with larger drill holes was fixed with 1.1-mm thick SR-PLLA wire. The sternotomy between the smaller drill holes was fixed using 2.0 steel wire. The animals were sacrificed at 2, 7, 26 and 52 weeks postoperatively and specimens were taken, radiographed and studied by both light and scanning electron microscopy. RESULTS: One rabbit died at four months postoperatively as a result of gastrointestinal problems. No other complications were seen. The SR-PLLA wire was slowly degraded. There was no disturbance of bone healing. The implants were surrounded by a fibrous tissue capsule, which also contained chronic inflammatory cells. Both SR-PLLA and steel wires provided sufficient fixation security. No differences in the healing of the sternotomies were observed between SR-PLLA and steel wire fixation. CONCLUSIONS: SR-PLLA wires are biocompatible and useful for sternotomy fixation. They may be suitable for use in clinical applications.

Absorbable Implants↗

Consolidation of craniotomy lines after resorbable polylactide and titanium plating: a comparative experimental study in sheep.

The consolidation process of craniotomy lines in a skeletally immature large mammal was studied. A traditional narrow titanium miniplate was compared with a 0.5-mm-thick, 12-mm-wide absorbable punched self-reinforced poly-L-lactide (SR-PLLA) plate, both fixed with titanium miniscrews over bilateral parietal 2.5-mm-wide stable transosseous craniotomies on nine female sheep (16 to 20 months old). After 6, 12, 20, 52, and 104 weeks, cross-sectional histology, histomorphometry, and oxytetracycline chloride fluorescence studies were done to compare the healing process of the craniotomy lines and to study the biocompatibility and the degradation process of the SR-PLLA plate. The consolidation pattern supported the principle of guided tissue regeneration: under the wide, resorbable plate osseous bridging proceeded evenly throughout the line, whereas titanium plating led to bulky, uneven growth in the bone margins. All SR-PLLA-plated osteotomy lines had healed completely by 20 weeks, whereas none of the titanium-plated lines had consolidated during a follow-up of 1 year. The nonossified gaps were filled with dense connective tissue. Histomorphometric analysis showed that osseous bridging proceeded significantly faster on the resorbable plate side compared with the titanium side (p < 0.001). The osteoid surface fraction over the total trabecular surface was highest at 6 weeks, being 63 percent on the SR-PLLA side and only 36 percent on the titanium side. The oxytetracycline chloride fluorescence studies confirmed these findings. After 52 weeks, there was no osteoid or oxytetracycline chloride fluorescence left as a sign of terminated ossification, even in the nonconsolidated titanium sides. Microscopic cracking of the plate was evident at 12 to 20 weeks, and the first signs of active resorption were present at 52 weeks. After 2 years, the plate had disappeared and tiny polylactide particles were being actively reabsorbed. The biocompatibility of SR-PLLA and titanium was good, and no adverse cellular reactions to these materials were noted, except a clinical foreign body reaction caused by loosened titanium miniscrews. A densely punched, 0.5-mm-thick self-reinforced PLLA plate seems to retain its integrity for a sufficiently long time to complete osseous healing of a 2.5-mm-wide craniotomy line in the sheep calvarial area. A thin, wide fixation plate enables superior healing, especially in osseous defects. The degradation process of the SR-PLLA plate begins within 1 year and is far advanced after 2 years. By using absorbable SR-PLLA fixation plates instead of metallic plates, a subsequent operation for the removal of the implants can be avoided. SR-PLLA devices could thus be a potential additive or even alternative to metallic implants in craniofacial surgery.

Animals↗

Intraosseous plating: a new method for biodegradable osteofixation in craniofacial surgery.

Biodegradable miniplates and screws offer special possibilities for surgical techniques because the removal operation is avoided. In areas beneath thin skin, intraosseous plating could be preferable to avoid palpability and transient swelling during resorption. The tissue reaction to a 0.5-mm-thick self-reinforced poly-L-lactide (SR-PLLA) plate fixed with an SR-PLLA miniscrew was studied histologically and histomorphometrically after implantation into the calvarium of six young sheep. After follow-up periods of 6, 20, and 52 weeks, no signs of adverse tissue reaction such as clinically manifest foreign body reaction or histologically manifest osteolysis were noted. By 52 weeks the implants were largely in direct contact with remodeled, dense bone tissue. No signs of fragmentation or resorption were noted in the intraosseous parts of the implants, whereas the screw head had been fragmented and was undergoing resorption at 52 weeks. The screw head is unnecessary in this plating method and could have been removed with a hot wire loop. The excellent biocompatibility of the mechanically strong, resorbable SR-PLLA plate with miniscrew fixation provides a possibility for intraosseous plating in less loaded craniofacial areas, especially in areas with very thin soft-tissue coverage.

Absorption↗

Biodegradable and titanium plating in experimental craniotomies: a radiographic follow-up study.

Plain film radiography and computed tomography (CT) were evaluated in assessing the consolidation of experimental craniotomy lines covered with titanium miniplates or biodegradable self-reinforced poly-L-lactide (SR-PLLA) plates. Two sagittal (2.3-2.5 mm wide and 22 mm long) symmetrical craniotomy lines were made in the skulls of eight young sheep. One craniotomy line was covered with a biodegradable SR-PLLA plate and the other with a titanium miniplate. Both plates were fixed with four titanium miniscrews. Consolidation of the osteotomies was studied using plain film radiography and CT 6, 12, 20, and 52 weeks postoperatively. Microradiography and histology were used for reference. Plain film was not reliable in assessing osseous consolidation because false-positive results were obtained in three osteotomies. Osseous consolidation was more reliably assessed by CT, which showed consolidation on the SR-PLLA side within 20 weeks, whereas none of the titanium-plated lines was consolidated by 52 weeks. Superior consolidation under the resorbable plate was confirmed in histology and microradiography. The radiolucent SR-PLLA plates did not interfere with CT, whereas the titanium plates caused minor CT artifacts.

Animals↗

Free tissue coverage of wound complications following Achilles tendon rupture surgery.

The purpose of this study was to examine the long term functional results following free tissue coverage in 4 patients who developed wound complications after surgical treatment of partial or total Achilles tendon rupture. Between 1987 and 1993, 3 radial forearm flaps and 1 lateral arm flap were used. Two Achilles tendons were reinforced, 1 with palmaris longus tendon, and 1 with extensor carpi radialis and palmaris longus tendons. The patients were seen during followup an average of 3.1 years after the reconstruction. All patients were able to return to their preoperative level of activity within a year, and the aesthetic outcome was good in all cases. Isometric and isokinetic calf muscle performance was evaluated with a Lido Multi Joint II dynamometer, which showed the mean of isometric test values in 3 patients to be greater than 90% of that of the normal unaffected side, and probably abnormal (80%) in 1 patient. The mean isometric values obtained in 3 ankle positions, 20 degrees plantar flexion, neutral, and 10 degrees dorsiflexion, were 114%, 104%, and 94%, respectively. Isokinetic peak torque values were normal in 3 patients at a velocity of 30 degrees per second, and in 2 at 90 degrees per second. The mean peak torque value was 90% of normal at both angle velocities. The cross sectional area of the calf muscle was greater than 90% of the normal unaffected side. Ultrasonography indicated that the diameters of 2 reinforced tendons were larger than those on the control sides. Posterior peritendinous fibrosis was found in the upper corner of the scar in 2 patients.

Achilles Tendon↗