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At least 19 recordsLinked to original sources

Contraceptive efficacy of polyester-induced azoospermia in normal men.

The contraceptive effect of a polyester sling applied to the scrotum was studied in 14 men. The suspensor was worn for 12 months. Follow-up investigations comprised periodic check of semen character, testicular size, rectal-testicular temperature difference, serum reproductive hormones and testicular biopsy. The electrostatic potentials generated by friction between the polyester suspensor and the scrotal skin were determined. Female partners used contraceptives until the men became azoospermic. After 12 months, the suspensor was abandoned and the aforementioned investigations were performed again. In the suspensor-wearing period, all men became azoospermic after a mean of 139.6 +/- 20.8 sd days, with decrease in both testicular volume (P less than 0.05) and rectal-testicular temperature difference (P less than 0.001). Serum reproductive hormones showed no significant change (P greater than 0.05). Seminiferous tubules revealed degenerative changes. No pregnancy occurred during this period. The polyester suspensor generated electrostatic potentials (mean 366.4 +/- 30.5 sd volt/cm2 by day and 158.3 +/- 13.6 sd volt/cm2 by night). In the suspensor-release period, the sperm concentration returned to the pre-test level in a mean period of 156.6 +/- 14.8 sd days. Likewise, the testicular volume and rectal-testicular temperature difference were normalized. The 5 couples, who had planned to become pregnant, conceived. The azoospermic effect of the polyester sling seems to be due to two mechanisms: 1) the creation of an electrostatic field across the intrascrotal structures, and 2) disordered thermoregulation. To conclude, fertile men can be rendered azoospermic by wearing the polyester sling. It is a safe, reversible, acceptable and inexpensive method of contraception in men.

Adult

[Chest wall reconstruction using polyester mesh].

Using polyester, we prepared a new material for chest wall reconstruction. The polyester mesh has the same rigidity and elasticity as Marlex tracheal mesh. From January 1987 through July 1991, we performed chest wall reconstruction using the polyester mesh in 8 patients with lung cancer, 9 with empyema after open drainage, 2 with metastatic chest wall tumors, 1 with a primary osteogenic giant cell tumor originating from the rib and 1 with radiation dermatitis and costal chondritis. Three or more ribs were resected in 17 patients. The defects of the chest wall were reconstructed with the polyester mesh covered with a GORE-TEX soft tissue patch to achieve air tightness. Fifteen cases have passed at least one year with no sign of infection. In conclusion, the polyester mesh prevents flail chest and seems to be a satisfactory material for chest wall reconstruction.

Adult

Determination of specific rate constants of specific oligomers during polyester hydrolysis.

Aliphatic polyesters have great utility as temporary prosthetics and surgical aids, and in drug delivery systems. Knowledge of the mechanism and pathways of hydrolysis can form a basis for the design and selection of a controlled-release system. Because of the importance of hydrolysis to the properties of such a system, a technique was developed to accurately determine the specific rate constants and relevant kinetic parameters for the specific oligomers from the reaction mixture of polyesters undergoing hydrolysis. A detailed kinetic analysis of the acid hydrolysis of well-characterized oligomers of polyesters is presented. Several oligomers of poly(butylene tartrate)s were synthesized and their kinetic behavior was studied under acidic conditions. The oligomers and their degradation products were monitored by HPLC and identified by fast-atom bombardment mass spectrometry. From the rates of hydrolysis measured from pH 1 to 3.0 and at temperature of 75 degrees C, it becomes evident that the degradation of the oligomers obeys pseudo-first-order kinetics. The rate of hydrolysis among the homologous series of oligomers increases as the molecular weight increases. The hydrolysis was catalyzed by hydrogen ion; the catalytic rate constant increased predictably with the number of ester linkages present in the molecule. The reaction is first order with respect to the catalyst concentration and the number of ester linkages. Good agreement was obtained with a model in which the individual rate of bond cleavage depends only on the statistical factor. The technique described in this paper is unique for the determination of polyester hydrolysis pathways and isolation of any structural effects on the rates of hydrolysis.

Chemical Phenomena

New method for analysis of biodegradable polyesters by high-performance liquid chromatography after alkali hydrolysis.

A new method was developed for analysis of biodegradable polyesters, which involves alkali hydrolysis of polyesters to the corresponding hydroxyacids and determination of the hydroxyacids by high-performance liquid chromatography. It can be used to monitor weight change in polyesters and change in molecular ratio of the hydroxyacid constituents of polyesters during in vitro and in vivo degradation.

Animals

Replacement of the medial collateral ligament with polypropylene mesh or a polyester suture in dogs.

The medial collateral ligament of one stifle in 20 adult dogs was excised and replaced with polypropylene mesh or a polyester suture. After 26 weeks, the fibrous tissue-prosthesis composites were evaluated clinically, morphologically, and biomechanically. Clinical lameness was not significantly different after 10 days. The polypropylene mesh reconstructions consistently had more fibrous tissue and greater collagenous ingrowth than the polyester suture reconstructions. There were four complications related to fixation of the polypropylene mesh prosthesis and one to the polyester suture. The polypropylene mesh reconstructions had greater stability and were biomechanically more similar to the natural ligaments than the polyester suture reconstructions. Although the results with polypropylene mesh were favorable, more challenging biomechanical testing and alternative anchoring techniques are required before polypropylene mesh can be recommended as a collateral ligament replacement in dogs.

Animals

[Inflammatory process caused by intraperitoneal injection of polyester in the rat: chemotactic activity in lavage fluid from the cavity].

Minced polyester threads introduced into peritoneal cavity of guinea pigs or rats cause a granulomatous inflammation with evidence of macrophage stimulation. Chemotactic agents play an important role in the inflammatory reaction; they may be exogenous and/or endogenous. These are released locally by the cells involved in inflammation. In this paper the chemotactic effects of the peritoneal fluids from rats bearing the polyester inflammatory process, have been studied on PMN cells "in vitro". The peritoneal cavity fluids were obtained by washing the cavity of untreated rats or rats intraperitoneally injected with polyester, 1, 3, 7, 14 days after the intraperitoneal injection. The chemotactic response was assayed by employing modified chemotaxis Boyden chambers (Blind Well Neuro Probe) and polymorphonuclear leukocytes from normal or treated rats. Quantification of the migration was calculated by chemotactic index (A/B) (B = random migration, A = chemotaxis). The results demonstrated that the peritoneal fluids taken 3 and 7 days after the intraperitoneal polyester injection, elicit an evident chemotaxis response greater than that showed by peritoneal fluids from control rats. It is suggested that chemotactic factors can be produced and released by mononuclear cells involved in the inflammatory process.

Animals

A study of polybutilate lubricated polyester sutures.

In the 49 patients in whom polybutilate coated polyester sutures were used, no adverse side-effects, such as increased redness, tenderness, pain or edema of the wounds, were noted. Primary healing was achieved in each patient. There were no suture related complications encountered during the early or late follow-up examinations. Polybutilate coated polyester sutures were found to be easy to work with. They were strong, pliable and handled and tied with ease. They had no tendency to twist, tangle or adhere to gloves or instruments. Tissue passage through skin, fascia, arteries, veins and Dacron vascular grafts was better than it was with uncoated polyester sutures and as good as with Teflon coated sutures. No unusual drag, pull or catching of the sutures was encountered. Over-all, the polybutilate coated polyester suture is thought to be a safe, reliable and an easy to use material for a wide variety of surgical procedures for which a strong nonabsorbable suture is indicated.

Adolescent

[Experimental studies of using polyester-coated materials of Polish production in surgical treatment of retinal detachment].

The authors evaluated the tolerance of the rabbit eye to a new generation of polyester bands coated by polymethane polyester or by silicone. Investigations consisted on the application of episcleral implants made from polyester coated bands and--for comparison--of already well known polyester non-coated bands The eyes were removed on the 4th, 10th, 30th, 60th and 90th day after operation, macroscopically evaluated and fixed in formaline. The specimen were prepared from the spot of the applied implant together with a margin of surrounding tissues. Clinical observations, macroscopic evaluations as well as histopathological examinations showed a good tolerance of the silicone coated bands; it was discovered instead that the polyurethane coated bands are causing a more pronounced inflammatory reaction in the early postoperative period.

Animals

Cathepsin D activity of venous and polyester vascular grafts implanted in the abdominal aorta of the dog.

Autogenous veins and polyester prostheses were implanted in the abdominal aorta of dogs. The venous or polyester grafts were removed together with sections of the normal arteries and veins 1 month, 4 months, and 3 years after the operation. This material was then dissected into the intimal, medial, and adventitial layers, and homogenized after which their cathepsin D activity was determined. It was found that the cathepsin D activity was far higher in all the layers of the venous grafts, particularly in the polyester grafts, than in the corresponding layers of the normal arteries and veins.

Animals

Formation of polyesters consisting of medium-chain-length 3-hydroxyalkanoic acids from gluconate by Pseudomonas aeruginosa and other fluorescent pseudomonads.

Pseudomonas aeruginosa PAO and 15 other strains of this species synthesized a polyester with 3-hydroxydecanoate as the main constituent (55 to 76 mol%) if the cells were cultivated in the presence of gluconate and if the nitrogen source was exhausted; 3-hydroxyhexanoate, 3-hydroxyoctanoate, and 3-hydroxydodecanoate were minor constituents of the polymer. The polymer was deposited in granules within the cell and amounted to 70% of the cell dry matter in some strains. Among 55 different strains of 41 Pseudomonas species tested, P. aureofaciens (21.6% of cellular dry matter), P. citronellolis (78.0%), P. chlororaphis (8.5%), P. marginalis (11.4%), P. mendocina (50.7%), P. putida (33.5%), and Pseudomonas sp. strain DSM 1650 (54.6%) accumulated this type of polymer at significant levels (greater than 5%) during cultivation on gluconate. In two strains of P. facilis and P. fluorescens, as well as in one strain of P. syringae, this polymer was detected as a minor constituent (much less than 5%). All other strains accumulated either poly(3-hydroxybutyrate) or a polymer consisting mainly of 3-hydroxyoctanoate with octanoate but no polyester with gluconate as the carbon source. Only a few species (e.g., P. stutzeri) were unable to accumulate poly(hydroxyalkanoic acids) (PHA) at all. These results indicated that the formation of PHA depends on a pathway which is distinct from all other known PHA-biosynthetic pathways. The polyesters accumulated by gluconate- or octanoate-grown cells of recombinant strains of P. aeruginosa and P. putida, which harbored the Alcaligenes eutrophus poly(3-hydroxybutyrate)biosynthetic genes, contained 3-hydroxybutyrate as an additional constituent.

Gluconates

[Polyester treatment in rats with a dorsal air pouch: chemotaxis in lavage fluid from the pouch].

Minced polyester threads introduced into peritoneal cavity of rats cause a granulomatous inflammation with evidence of macrophage stimulation. Chemotactic agents play an important role in the inflammatory reaction; they are released locally by cells involved in inflammation. In this paper the chemotactic effect of the peritoneal and subcutaneous air pouch fluids from rats bearing the polyester inflammatory process, have been studied on PMN cells "in vitro". The fluids were obtained by washing the cavity of untreated rats or rats injected with polyester, 7 days after the injection. The chemotactic response was assayed by employing modified chemotaxis Boyden chambers (Blind Well Neuro Probe) and polymorphonuclear cells from normal rats. Quantification of the migration was calculated by chemotactic index (A/B) (B = random migration, A = chemotaxis). The results demonstrate that a chemotactic activity is present in peritoneal and subcutaneous air pouch fluids following the inflammatory process. In conclusion the chronic inflammation determines the appearance of chemotactic factors for PMN cells, in the peritoneal cavity and in the air pouch, and the air pouch is a very convenient experimental system with the particular advantage that it permits easy repeated sampling of exudate during the course of an inflammatory response.

Air

[Efficacy of leukocyte-depleted platelet concentrates for prevention of HLA-alloimmunization in patients with frequent platelet transfusions: a prospective multi-institutional study using a polyester platelet filter].

A prospective multi-institutional study was conducted to assess the efficacy of leukocyte-depleted platelet concentrates, prepared by a method using a newly developed polyester filter, in the prevention of HLA-alloimmunization in patients with hematological disorders. Patients who were expected frequent platelet transfusions, were assigned into two groups, receiving either standard platelet concentrates (control group) or leukocyte-depleted platelet concentrates prepared through a polyester platelet filter, Sepacell-PL (filtered group). All patients received leukocyte-depleted red cell products. Of III patients enrolled, 72 were evaluable, 23 in the control and 49 in the filtered group. Both groups were comparable according to age, sex ratio, underlying disorders, previous exposure to alloantigens by transfusion and/or pregnancy. There was no statistically significant difference in the number and duration of transfusion in the two groups. There were significant differences in HLA-alloimmunization rate (9 cases out of 23, 39% in the control group versus 4 cases out of 49, 8% in the filtered group; p less than 0.01) and refractoriness to platelet transfusion from random donors (6 cases out of 23, 26% in the control group versus 2 cases out of 49, 4% in the filtered group; p less than 0.05). These results indicated that leukocyte-depleted platelet concentrates prepared through the polyester platelet filter are beneficial to reduce HLA-alloimmunization in patients with frequent platelet transfusions.

Adolescent

[Histological and cytological studies of the inflammatory process induced by polyesters in the guinea pig].

The inflammatory process caused in the omentum of the guinea pig by the intraperitoneal injection of minced polyester threads is characterized by an increasing number of mononuclear and giant cells surrounding polyester fragments. Lymphocytes and plasma cells have been found to participate in the process when the animals are treated for longer times. The cells obtained from the peritoneal cavity have a large lysosomal apparatus as stained by acridine orange, although the colour is taken up to a lesser degree when the cells are in the presence of the polyester.

Animals

Filtration characteristics of polyester mesh (Pall) micropore blood transfusion filter.

Stored human blood of varying age was passed through polyester mesh (Pall) micropore blood transfusion (pore size, 40 mu). Passage through the filter resulted in decreased screen filtration pressure (SFP) of the blood and increased filter weight. Mumerous microaggregates were removed, but SFP did not return to normal after filtration. On the basis of this research, we conclude that polyester mesh micropore blood transfusion filters are not as effective as Dacron wool (Swank) transfusion filters in removal of micro-aggregates from stored human blood. If a polyester mesh filter must be used, it is recommended that once occlusion of the filter has occurred, the filter should then be discarded and another inserted.

Blood Preservation

The biostability of silicone rubbers, a polyamide, and a polyester.

A biostability test program was designed after evaluation of the relevant literature on in vivo aging phenomena in plastics and elastomers. The program comprised macroscopic, microscopic, mechanical, and physicochemical investigations. Five silicone rubbers, one polyester, and one polyamid were tested as to their aging behavior and their suitability for long-term implantation in the human body was assessed. In order to be able to state the applicability of materials used for endotheses, the various aging phenomena had to be divided into three groups, viz. unspecific, relative, and absolute indications of aging or unserviceability. Changes due to aging were found in all types of implanted plastics and elastomers. Thus, the formation of layers on inlay surfaces occurred regularly and the same would apply to changes in mechanical characteristics during the tensile test. Aging processes resulting in total unserviceability were fragmentation and crazing in the polyester and polyamide sheetings. Other aging phenomena which will easily fit into the classification given above are changes in electrical test values, protein, and lipid depositions without stronger absorptive adhesion, crystallizations on the surface of silicone vulcanizates, and chemical changes in the polyester and polyamide sheetings. Following the assessment of the materials used for endotheses, the test methods used have been evaluated with regard to their suitability for the testing of biostability.

Amides

[Studies concerning the usefulness of catgut, PGA and polyester for abdominal fascia closure (author's transl)].

The abdominal fascia incisions of 133 rabbits were closed either with plain gut, chromic gut, PGA or polyester threads. The breaking strength of the wounds were determined tensiometrically at different time intervals and the tissue was examined histologically. For a three-week period the strength of the abdominal wall depends significantly on the intactness of the threads. PGA produces minimal inflammatory reactions, but loses its strength after a fortnight. Since longitudinal incisions are endangered by severe muscle pull, this material cannot be recommended because of the possibility of wound disruption and the formation of hernias. The loss of strength of catgut plain and catgut chromic starts later. Catgut causes inflammatory reactions within the wound area leading to loss of strength of the sutured tissue. Thus incisions of the abdominal fascia should not be closed with catgut. The non-resorbable suture material polyester shows satisfactory strength and minimal tissue reaction. As long as there is no synthetic suture material with mild tissue reaction and late resorption the fascial closure should be sutured with polyester.

Abdominal Muscles

Production of unsaturated polyesters by Pseudomonas oleovorans.

Pseudomonas oleovorans was grown separately on 3-hydroxy-6-octenoic acid and 3-hydroxy-7-octenoic acid as the only carbon source and under ammonium nutrient-limiting conditions to produce storage polyesters. The polyesters produced contained mainly unsaturated C8 units. Small amounts of both the saturated and the unsaturated C6 units were also present, but only about 1% of the saturated 3-hydroxyoctanoate units was detected. The polyester obtained from 3-hydroxy-6-octenoic acid, which was a mixture of the cis and trans isomers, also contained units with cis and trans double bonds. The weight average molecular weights of the polymers produced were in the range of 339,000-383,000 as determined by g.p.c. relative to polystyrene, with Mw/Mn ratios of 1.8-2.1. The mechanism of PHA formation from n-octene previously reported is discussed in relation to the present results, and the two were found to be in good agreement.

Culture Media

Broad-spectrum biodegradation of aliphatic and aliphatic-aromatic polyesters by Papiliotrema laurentii isolated from locust frass.

Biodegradable aliphatic and aliphatic-aromatic polyesters, such as poly(butylene adipate-co-terephthalate) (PBAT), polylactic acid (PLA), polycaprolactone (PCL), polybutylene succinate (PBS), and polyhydroxyalkanoates (PHA), are increasingly used as sustainable alternatives to petrochemical plastics. However, their depolymerization outside industrial composting facilities is often incomplete. This study characterized Papiliotrema laurentii strain 62UF-13, isolated from migratory locust frass, for broad-spectrum polyester hydrolysis. Emulsion assays demonstrated hydrolytic activity across all five polymers, with PCL and PBS showing the highest clearance rates. Solid-film assays revealed substantial gravimetric mass loss of PCL, PLA, and PHA cast films, whereas a commercial PBAT-PLA mulch film in minimal medium, underwent progressive fragmentation/disintegration, as assessed by the remaining film area. Incubation with the PBAT-PLA film was accompanied by the release of adipic acid (49.60 mg/L, week 1) and terephthalic acid (maximum 21.62 mg/L, week 4), followed by a decrease to 0.26 mg/L by week 8, coinciding with the emergence of putative 3,4-dihydroxymandelic acid and a putative acetylated derivative. Scanning electron microscopy (SEM) revealed pronounced pitting and erosion, while Fourier-transform infrared (FTIR) spectroscopy and differential scanning calorimetry (DSC) indicated ester-bond scission and changes in crystallinity/melting behavior. Whole-genome sequencing identified eight candidate polyesterases, including cutinases and esterases, with ≥ 60% amino acid identity to known hydrolases active on PCL, PBS, PHA, and PLA. This study is the first report of P. laurentii degrading a broad range of aliphatic and aliphatic-aromatic polyesters, including partial biotransformation of terephthalate moieties from PBAT. Integration of phenotypic assays and genomic evidence positions P. laurentii 62UF-13 as a viable biocatalyst for decentralized management of biodegradable plastic waste under mild environmental conditions.

Papiliotrema laurentii