PubMed Health⌕ Search

Biomedical subjects

G Zund

Publications and source records attributed to G Zund.

At least 19 recordsLinked to original sources

Intractable ventricular tachycardia and bridging to heart transplantation with a non-pulsatile flow assist device in a patient with isolated left-ventricular non-compaction.

Intractable ventricular tachycardia was investigated in a 51-year-old man with isolated left ventricular non-compaction during implantation of an automated internal cardioverter-defibrillator. Favorable bridging to cardiac transplantation was achieved with the DeBakey left ventricular assist device (LVAD).

Electrocardiography↗

Fibrin gel -- advantages of a new scaffold in cardiovascular tissue engineering.

OBJECTIVE: The field of tissue engineering deals with the creation of tissue structures based on patient cells. The scaffold plays a central role in the creation of 3-D structures in cardiovascular tissue engineering like small vessels or heart valve prosthesis. An ideal scaffold should have tissue-like mechanical properties and a complete immunologic integrity. As an alternative scaffold the use of fibrin gel was investigated. METHODS: Preliminary, the degradation of the fibrin gel was controlled by the supplementation of aprotinin to the culture medium. To prevent tissue from shrinking a mechanical fixation of the gel with 3-D microstructure culture plates and a chemical fixation with poly-L-lysine in different fixation techniques were studied. The thickness of the gel layer was changed from 1 to 3 mm. The tissue development was analysed by light, transmission and scanning electron microscopy. Collagen production was detected by the measurement of hydroxyproline. Injection molding techniques were designed for the formation of complex 3-D tissue structures. RESULTS: The best tissue development was observed at an aprotinin concentration of 20 microg per cc culture medium. The chemical border fixation of the gel by poly-L-lysine showed the best tissue development. Up to a thickness of 3 mm no nutrition problems were observed in the light and transmission electron microscopy. The molding of a simplified valve conduit was possible by the newly developed molding technique. CONCLUSION: Fibrin gel combines a number of important properties of an ideal scaffold. It can be produced as a complete autologous scaffold. It is moldable and degradation is controllable by the use of aprotinin.

Aprotinin↗

Surgical management of retro-aortic left renal vein in combined abdominal aortic and coronary surgery.

Although generally retro-aortic left renal vein is a rare anatomic finding, it occurs in 0.8% of the patients admitted for abdominal aortic aneurysm surgery. Surgeons fear fatal bleeding during clamping of the aorta, caused by a more caudal insertion of the retro-aortic left renal vein and a greater vulnerability of the anomalous tissue. Once such a complication occurs, a reconstruction of the retro-aortic left renal vein using a synthetic graft should be performed to obtain adequate renal venous flow and maintain renal function.

Aged↗

Optimal cell source for cardiovascular tissue engineering: venous vs. aortic human myofibroblasts.

Arterial vascular cells have been successfully utilized for tissue engineering in human cardiovascular structures, such as heart valves. The present study evaluates saphenous vein-derived myofibroblasts as an alternative, easy-to-access cell source for human cardiovascular tissue engineering. Biodegradable polyurethane scaffolds were seeded with human vascular myofibroblasts. Group A consisted of scaffolds seeded with cells from ascending aortic tissue; in group B, saphenous vein-derived cells were used. Analysis included histology, electron microscopy, mechanical testing, and biochemical assays for cell proliferation (DNA) and extracellular matrix (collagen). DNA content was comparable in both groups. Collagen and stress at maximum load was significantly higher in group B. Morphology showed viable, layered cellular tissue in all samples, with collagen fibrils most pronounced in group B. In conclusion, saphenous vein myofibroblasts cultured on biodegradable scaffolds showed excellent in vitro tissue generation. Collagen formation and mechanical properties were superior to aortic tissue derived constructs. Therefore, the easy-to-access vein cells represent a promising alternative cell source for cardiovascular tissue engineering.

Aorta↗

Tissue engineering: complete autologous valve conduit--a new moulding technique.

OBJECTIVE: The use of fibrin gel, which can be produced from patients' blood, was investigated as an autologous, biodegradable scaffold. A new moulding technique was developed to create a complete aortic root. METHODS: A new moulding technique was generated for the creation of complete valve conduit. On the basis of biomechanical valve design studies, a tricuspid "ventricular" and "aortic" stamp were developed. A silicone-coated aluminum cylinder was used to circumferentially limit the mould. The cell/gel suspension was filled into the mould and polymerization was started. RESULTS: The creation of complex structures such as complete valve conduits is possible with the moulding technique described. With a layer thickness of up to 2 mm, histological investigations showed excellent tissue development with viable fibroblasts surrounded by collagen bundles. CONCLUSION: Fibrin gel unifies many properties of an ideal scaffold: The formation of complex structures is possible, the degradation and polymerization is controllable and the formation of the extracellular matrix is excellent.

Aortic Valve↗

Role of myocardial revascularization in postinfarction ventricular septal rupture.

BACKGROUND: Postinfarction ventricular septal rupture requires urgent closure. The role of systematic coronarography and coronary revascularization needs clarification. METHODS: Fifty-four patients who underwent patch closure of postinfarction ventricular septal defect were reviewed. A coronarography had been systematically and myocardial revascularization selectively (when significant coronary artery stenosis existed) performed. RESULTS: No patient died or deteriorated during coronarography. Twenty-six patients showed no coronary artery disease besides the infarct-related artery, and 28 had associated disease. Threatened myocardial territories were revascularized usually with venous grafts (mean number of distal anastomosis, 2.5). Operative mortality was 19% and 32% (p = 0.36) and late mortality 43% and 53% (p = 0.75) in patients without and in patients with associated coronary artery disease, respectively. Survival curve in both group was similar, at least up to 8 years after operation. CONCLUSIONS: Myocardial revascularization controlled the added risk of associated coronary artery disease in the postoperative period and in median term. A coronarography should be performed in all patients who can be stabilized hemodynamically and myocardial revascularization performed in case of significant stenosis.

Aged↗

A 20-year follow-up of internal carotid artery endarterectomy with bifurcation advancement.

BACKGROUND: Carotid artery disease is a frequent cause of transient ischemic attack and of cerebral infarction. For two last decades, we have been performing endarterectomy of the internal carotid artery with bifurcation advancement. METHODS: From January 1977 until December 1997, all records of patients who underwent internal carotid artery endarterectomy with bifurcation advancement were reviewed. Data were collected from patients charts and by a questionnaire. 160 patients (80.6% men, 19.4% women, average lifetime 65.1 year) underwent a total of 181 endarterectomies with bifurcation advancement. RESULTS: The 30-day mortality was 1.9% and the postoperative stroke plus death rate 3.1%. The incidence of reoperations was 0.6% with an average follow up of 64 months. In one patient (0.6%), a significant restenosis of the repaired carotid artery was observed. The 1, 5 and 10 years neurological death free survival (including early mortality) was 99.3%, 97.2% and 92.5% and the overall survival (including early mortality) was 96.3%, 78.9% and 59.3% (Kaplan-Meier). CONCLUSIONS: The technique of the internal carotid artery endarterectomy by bifurcation advancement is a safe and reliable method for improvement of cerebral blood supply. Or foreign material or autologous vein can thus be avoided. This method offers excellent long term patency and has a notable lack of late restenosis.

Adult↗

Optimized growth conditions for tissue engineering of human cardiovascular structures.

Optimized in vitro formation of strong tissue is a prerequisite for tissue engineering of cardiovascular structures, such as heart valves and blood vessels. This study evaluates different growth media additives as to cell proliferation, extracellular matrix formation, and mechanical characteristics. Biodegradable polymers were seeded with human vascular myofibroblasts. Group A was cultured with standard medium, groups B, C, and D were in addition supplemented with ascorbate, fibroblast growth factor (bFGF), and both respectively. Analysis included histology, electron microsocopy, mechanical testing, and biochemical assays for cell proliferation (DNA) and extracellular matrix (collagen). DNA content increased in all groups, showing significantly more cells in group C and D after 14d. Collagen increased in all groups, except for C. Morphology showed viable, layered cellular tissue, with collagen fibrils after 2w, most pronounced in B and D. Mechanical properties decreased initially, stabilizing after 2w. In conclusion, standard nutrient media were efficient for seeded human vascular cells cultured on biodegradable meshes. Supplementation with bFGF+ascorbate resulted in enhanced early cell proliferation and structurally more mature tissue formation.

Biomechanical Phenomena↗

Congenital subaortic stenosis by accessory mitral valve tissue, recognition and management.

Accessory mitral valve tissue as the single cause for left ventricular outflow tract obstruction is a very rare cardiac malformation in normally connected hearts. We report a case in which this condition was present as single cause for left ventricular outflow tract obstruction. The surgical technique is described and a review of the literature presented.

Aortic Valve Stenosis↗

Tissue engineering in cardiovascular surgery: MTT, a rapid and reliable quantitative method to assess the optimal human cell seeding on polymeric meshes.

OBJECTIVE: Currently used valve substitutes for valve replacement have certain disadvantages that limit their long-term benefits such as poor durability, risks of infection, thromboembolism or rejection. A tissue engineered autologous valve composed of living tissue is expected to overcome these shortcomings with natural existing biological mechanisms for growth, repair, remodeling and development. The aim of the study was to improve cell seeding methods for developing tissue-engineered valve tissue. METHODS: Human aortic myofibroblasts were seeded on polyglycolic acid (PGA) meshes. Cell attachment and growth of myofibroblasts on the PGA scaffolds with different seeding intervals were compared to determine an optimal seeding interval. In addition, scanning electron microscopy study of the seeded meshes was also performed to document tissue development. RESULTS: There was a direct correlation between cell numbers assessed by direct counting and MTT(3-[4,5-dimethylthiazol-2-yl]-2,5-diphenyltertra-zoliu m bromide) assay. Both attach rate and cell growth seeded on meshes with long intervals (24 and 36 h) were significantly higher than those seeded with short intervals (2 and 12 h) (P<0.01), there was no significant difference between 24- and 36-h seeding interval. Scanning electron microscopy also documented more cell attachment with long seeding intervals resulting in a more solid tissue like structure. CONCLUSION: It is feasible to use human aortic myofibroblasts to develop a new functional tissue in vitro. Twenty-four hours is an optimal seeding interval for seeding human aortic myofibroblasts on PGA scaffolds and MTT test is a rapid and reliable quantitative method to assess the optimal human cell seeding on polymeric meshes.

Biomedical Engineering↗

Improved exposure of the pulmonary arteries for thromboendarterectomy.

Pulmonary thromboendarterectomy is a surgical technique for treating pulmonary hypertension caused by unresolved pulmonary embolism. It has been recommended to perform this procedure under deep hypothermic circulatory arrest. Here we describe two technical modifications: (1) improved exposure to the right pulmonary artery by division of the superior caval vein and (2) thromboendarterectomy in normothermic cardiopulmonary bypass, with beating heart or electrically induced ventricular fibrillation. These modifications allow complete endarterectomy of both pulmonary arteries under normothermic conditions, thus avoiding hypothermic circulatory arrest, which results in short cardiopulmonary bypass times and reduces the morbidity and mortality of this procedure.

Cardiopulmonary Bypass↗

The in vitro construction of a tissue engineered bioprosthetic heart valve.

PROBLEM: Heart valve replacement with either a nonliving xenograft or a mechanical prosthesis is an effective therapy for valvular heart disease. Both of these approaches have limitations, including their inability to grow, repair, and remodel. In addition, a mechanical prosthesis requires long-term anticoagulation therapy. METHODS: This study demonstrates the in vitro creation of tissue engineered heart valve tissue using cardiovascular cells on degradable polymer matrices, 40 heart valve leaflets were created using this technique from two sources. Xenograft leaflets were created using human dermal fibroblasts and bovine aortic endothelial cells (n = 20) or allograft valve leaflets were created using sheep myofibroblasts and sheep endothelial cells (n = 20). A mixed sheep cell population was obtained consisting of endothelial cells and myofibroblasts. Endothelial cells were labelled with acethylated low density lipoprotein (Ac-Dil-LDL) and cells were separated into two groups using an activated cell sorter: LDL positive cells comprised of a pure endothelial cell population and LDL negative cells comprised of mixed cell population containing myofibroblasts and smooth muscle cells. The LDL negative cells were seeded on a synthetic polyglycolic acid (PGA) mesh and grown in vitro to form a tissue-like fibroblast-mesh core. Endothelial cells were then seeded onto the surface of the fibroblast-mesh core, forming a single monolayer. RESULTS: Histological evaluation of these constructs revealed an inner core of LDL negative cells and outer endothelial-like cells which were factor VIII positive. There was no evidence of capillary formation from endothelial cells invading the myofibroblasts and smooth muscle matrix and the endothelial lining appeared complete. CONCLUSIONS: It is feasible to construct allogenic heart valve tissue which could be used to make a valve.

Animals↗

Tissue-engineered heart valves. Autologous valve leaflet replacement study in a lamb model.

BACKGROUND: We have previously reported the successful creation of tissue-engineered valve leaflets and the implantation of these autologous tissue leaflets in the pulmonary valve position. This study was designed to trace cultured cells that were seeded onto a biodegradable polymer with the use of a 1,1'-dioctadecyl-3,3,3' 3'-tetramethylindo-carbocyanine perchlorate (Di-1) cell-labeling method. We also examined the time-related biochemical, biomechanical, and histological characteristics and evolution of these tissue constructs. METHODS AND RESULTS: Mixed cell populations of endothelial cells and fibroblasts were isolated from explanted ovine arteries. Endothelial cells were selectively labeled with an acetylated low density lipoprotein marker and separated from fibroblasts with the use of a fluorescence-activated cell sorter. A synthetic biodegradable scaffold consisting of polyglycolic acid fibers was seeded first with fibroblasts, then coated with endothelial cells. Using these methods, we implanted autologous cell/polymer constructs in six animals. In two additional control animals, a leaflet of polymer was implanted without prior cell seeding. In each animal, cardiopulmonary bypass was used to completely resect the right posterior leaflet of the pulmonary valve and replace it with an engineered valve leaflet with (n = 6) or without (n = 2) prior cultured cell seeding. The animals were killed either after 6 hours or after 1, 6, 7, 9, or 11 weeks, and the implanted valve leaflets were examined histologically, biochemically, and biomechanically. 4-Hydroxyproline assays were performed to determine collagen content. Leaflet strength was evaluated in vitro with a mechanical tester Factor VIII and elastin stains were done to verify histologically that endothelial cells and elastin, respectively, were present. Animals receiving leaflets made from polymers without cell seeding were killed and examined in a similar fashion after 8 weeks. In the control animals, the acellular polymer leaflets were completely degraded, with no residual leaflet tissue at 8 weeks. The tissue-engineered valve leaflet persisted in each animal in the experimental group. 4-Hydroxyproline analysis of the constructs showed a progressive increase in collagen content. Immunohistochemical staining demonstrated elastin fibers in the matrix and factor VIII on the surface of the leaflet. The cell-labeling experiments demonstrated that the cells on the leaflets had persisted from the in vitro seeding of the leaflets. CONCLUSIONS: In the tissue-engineered heart valve leaflet, transplanted autologous cells generated a proper matrix on the polymer scaffold in a physiological environment at a period of 8 weeks after implantation.

Animals↗

Blockade of selectin-mediated leukocyte adhesion improves postischemic function in lamb hearts.

BACKGROUND: Leukocyte-endothelial interactions appear to have a important role in ischemia/reperfusion injury and are mediated by specific leukocyte and endothelial adhesion molecules. The selectins are adhesion molecules found on leukocytes (L-selectin) and endothelium (P and E selectin) that bind to oligosaccharide ligands containing fucose and sialic acid to mediate leukocyte rolling on the endothelium. Fucoidin is a nontoxic sulfated fucose oligosaccharide derived from seaweed that blocks the selectins. METHODS: We tested the effects of fucoidin in an isolated blood-perfused neonatal (age range, 3 to 7 days; mean age, 4.3 days) lamb heart model undergoing 2 hours of cold cardioplegic ischemia. In group F (n = 8) fucoidin (30 mg/L) was added at initial reperfusion. Group C (n = 9) received only cardioplegia with no reperfusion intervention. Isovolumic maximum developed pressure and the maximum positive and negative first derivatives of pressure were measured using a catheter-tip transducer in an intraventricular balloon before ischemia and at 30 minutes of reperfusion. Coronary blood flow, myocardial oxygen consumption, and white blood cell counts in the circulating blood were also measured. RESULTS: Percent recoveries of baseline maximum developed pressure and maximum positive and negative first derivatives of pressure in group F (86% +/- 5%, 81% +/- 10%, and 74% +/- 8%, respectively; mean +/- standard deviation) were higher than in group C (77% +/- 5%, 70% +/- 9%, and 65% +/- 6%; p < 0.05). Group F postischemic coronary blood flow was greater (190% +/- 35%) than in group C (102% +/- 10%; p < 0.05). Recovery of myocardial oxygen consumption in group F (86% +/- 14%) was greater than group C (72% +/- 11%; p < 0.05). Postischemic white blood cell count in group F (88% +/- 4%) was greater than in group C (81% +/- 5%; p < 0.05). CONCLUSIONS: Selectin blockade with fucoidin resulted in better recovery of left ventricular function, coronary blood flow, and myocardial oxygen consumption after cold ischemia, despite a higher circulating white blood cell count. These data support the hypothesis that endothelial-leukocyte interactions play an important role in ischemia/reperfusion and suggest that selectin blockade may be a useful therapeutic strategy.

Animals↗

Tissue engineering heart valves: valve leaflet replacement study in a lamb model.

BACKGROUND: Valve replacements using either bioprosthetic or mechanical valves have the disadvantage that these structures are unable to grow, repair, or remodel and are both thrombogenic and susceptible to infection. These characteristics have significantly limited their durability and longevity. In an attempt to begin to overcome these shortcomings, we have tested the feasibility of constructing heart valve leaflets in lambs by seeding a synthetic polyglycolic acid fiber matrix in vitro with fibroblasts and endothelial cells. METHODS: Mixed cell populations of endothelial cells and fibroblasts were isolated from explanted ovine arteries. Endothelial cells were selectively labeled with an acetylated low-density lipoprotein marker and separated from the fibroblasts using a fluorescent activated cell sorter. A synthetic biodegradable scaffold constructed from polyglycolic acid fibers was seeded with fibroblasts, which grew to form a tissue-like sheet. This tissue was subsequently seeded with endothelial cells, which formed a cellular monolayer coating around the leaflet. Using these constructs, autologous (n = 3) and allogenic (n = 4) tissue engineered leaflets were implanted in 7 animals. In each animal the right posterior leaflet of the pulmonary valve was resected and replaced with an engineered valve leaflet. RESULTS: All animals survived the procedure. Postoperative echocardiography demonstrated no evidence of stenosis and trivial pulmonary regurgitation in the autografts and moderate regurgitation in the allogenic valves. Collagen analysis of the constructs showed development of an extracellular matrix. Histologic evaluation of the constructs demonstrated appropriate cellular architecture. CONCLUSIONS: This preliminary experiment showed that a tissue engineered valve leaflet constructed from its cellular components can function in the pulmonary valve position. Tissue engineering of a heart valve leaflet is feasible, and these preliminary studies suggest that autograft tissue will probably be superior to allogenic tissue.

Animals↗

Age differences in effects of hypothermic ischemia on endothelial and ventricular function.

BACKGROUND: Prior studies indicate that immature myocardium has a greater tolerance to ischemia. Prior studies from our laboratory have shown that impaired postischemic endothelial function was correlated with reduced ventricular contractility, and that coronary endothelium has an important role in ischemia and reperfusion injury in neonatal hearts. METHODS: We examined the differences of endothelial function as well as ventricular function between immature and mature hearts in isolated blood-perfused lamb and sheep hearts after 2 hours of 15 degrees C cardioplegic ischemia. Three groups were defined according to age: neonatal ( < 1 week) hearts (n = 8), infant (1 month) hearts (n = 8), and adult (1 year) hearts (n = 6). Each of the three groups underwent a similar protocol including ischemic time, myocardial temperature, and cardioplegic solution. Based on earlier work, all had low perfusion pressures during the first 10 minutes of reperfusion. Thereafter the perfusion pressure was constant at 60 mm Hg in the neonatal hearts, 80 mm Hg in the infant hearts, and 100 mm Hg in the adult hearts to match the mean arterial pressure at each age in this species. RESULTS: At 30 minutes of reperfusion, the neonatal and infant hearts achieved significantly improved recovery of left ventricular systolic (maximum developed pressure and positive first time derivative of pressure, and volume normalized developed pressure and first time derivative of pressure) and diastolic (negative maximum first time derivative of pressure) functions and coronary blood flow. The postischemic endothelial function determined by the coronary vasodilator response to acetytlcholine was better in the neonatal and infant hearts compared with the adult hearts (p < 0.05). CONCLUSIONS: These results show that the immature hearts had better recovery of endothelial function and coronary blood flow as well as ventricular function compared with adult hearts after hypothermic ischemia and reperfusion. These results combined with previous studies add further support to the concept that events in the coronary vascular bed play an important role in reperfusion injury in both immature and mature hearts.

Aging↗

The use of an amniotic membrane graft to prevent postoperative adhesions.

Grafts of trypsin-treated, gamma-irradiated human amniotic membranes were used to cover injured uterine horns of nulliparous female rabbits to prevent adhesions. In this study, the gradual integration of the membranes into the serosal layer of the uterus, together with marked neovascularization, was observed. By the 30th postoperative day, the grafts had been completely integrated, with little evidence of rejection and no evidence of infection at the graft sites. Of 30 uterine horns treated with membrane grafts, only 4 (13.4%) showed any adhesion formation at or among the graft sites. All of the 24 untreated controls showed adhesion formation at the site of injury. Furthermore, whatever adhesions were found in membrane-treated horns could be graded as thin and filmy, accounting for less than 10% of the surface area of the graft, whereas the controls showed dense, thick adhesions covering 50% to 100% of the injured areas. We conclude that these specially prepared amniotic membranes are safe and effective in dramatically reducing postoperative adhesion formation in this animal model.

Animals↗

Pelvic inflammatory disease complicated by massive helminthic hyperinfection.

Strongyloidiasis is a potentially life-threatening condition which, when appropriately diagnosed early in its course, is easily eradicated. When severe, it may mimic other disease processes including appendicitis or severe pelvic inflammatory disease. The diagnosis of parasitic infestation should be considered in any individual who has lived in an endemic area and presents with diarrhea regardless of attendant conditions and superimposed disease processes. A minimum workup consisting of stool examination for ova and parasites should be performed on all such individuals. Thiabendazol is the treatment of choice in nonpregnant patients; however, piperazine tartrate has established safety and efficacy in pregnancy and is therefore preferable in the pregnant patient.

Adult↗