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Biomedical subjects

A C Berger

Publications and source records attributed to A C Berger.

At least 19 recordsLinked to original sources

Mms22p protects Saccharomyces cerevisiae from DNA damage induced by topoisomerase II.

The cleavage reaction of topoisomerase II, which creates double-stranded DNA breaks, plays a central role in both the cure and initiation of cancer. Therefore, it is important to understand the cellular processes that repair topoisomerase II-generated DNA damage. Using a genome-wide approach with Saccharomyces cerevisiae, we found that Deltamre11, Deltaxrs2, Deltarad50, Deltarad51, Deltarad52, Deltarad54, Deltarad55, Deltarad57 and Deltamms22 strains were hypersensitive to etoposide, a drug that specifically increases levels of topoisomerase II-mediated DNA breaks. These results confirm that the single-strand invasion pathway of homologous recombination is the major pathway that repairs topoisomerase II-induced DNA damage in yeast and also indicate an important role for Mms22p. Although Deltamms22 strains are sensitive to several DNA-damaging agents, little is known about the function of Mms22p. Deltamms22 cultures accumulate in G2/M, and display an abnormal cell cycle response to topoisomerase II-mediated DNA damage. MMS22 appears to function outside of the single-strand invasion pathway, but levels of etoposide-induced homologous recombination in Deltamms22 cells are lower than wild-type. MMS22 is epistatic with RTT101 and RTT107, genes that encode its protein binding partners. Finally, consistent with a role in DNA processes, Mms22p localizes to discrete nuclear foci, even in the absence of etoposide or its binding partners.

Cell Cycle↗

Internal fixation of unstable fracture dislocations of the proximal interphalangeal joint.

We report a group of 14 patients with fracture dislocations of the proximal interphalangeal joint with fracture fragments of adequate size to allow reduction of the proximal interphalangeal joint and internal mini screw fixation of the bone fragment attached to the palmar plate to the base of the middle phalanx. Three years after surgery, (range 25-52 months) the average total active range of motion of the proximal interphalangeal joint was 100 degrees (range 65-115 degrees) for the acute group (operation within 14 days of injury, n=7) and 86 degrees (range 60-110 degrees) for the chronic group (operation on average 46 days after injury, range 21-120 days, n=7). Longer delay from injury was associated with a decreased total range of motion (P=0.028). Further subluxation occurred in three chronic group patients, one required further surgery. The key to successful treatment of this injury is the re-establishment of joint congruity and early mobilization. With appropriate patient selection, pain free, satisfactory range of motion can be achieved. There is a risk of persistent subluxation or dislocation, particularly if treatment is delayed.

Adolescent↗

Rupture of the flexor digitorum profundus tendon to the small finger within the carpal tunnel.

We report three patients who sustained a rupture of the flexor digitorum profundus tendon to the small finger within the carpal tunnel. There was a common mechanism of injury, each rupture occurred during resisted flexion of the digit with the metacarpophalangeal joint in extension. All the patients were male, one patient had an asymptomatic undiagnosed fracture of the hook of hamate, one patient had radiological evidence of piso-triquetral osteoarthritis. In each case, an attrition rupture was confirmed at surgery.

Adult↗

Prognostic value of initial fasting serum gastrin levels in patients with Zollinger-Ellison syndrome.

PURPOSE: To assess the value of the initial fasting serum gastrin (FSG) at presentation in patients with Zollinger-Ellison Syndrome (ZES) in predicting primary tumor characteristics and survival. PATIENTS AND METHODS: A total of 239 patients were treated for ZES between December 1981 and September 1998, with a mean follow-up of 9.1 +/- 0.6 years. At initial evaluation, 86 patients (36%) had mild (0 to 499 pg/mL), 61 (25.5%) had moderate (500 to 1,000 pg/mL), and 92 (38.5%) had severe (> 1,000 pg/mL) elevations in FSG. Primary tumor location and size, presence of lymph node or hepatic metastases, and survival were analyzed based on the level of initial FSG. RESULTS: In patients with sporadic ZES, but not in those with multiple endocrine neoplasia type 1 (MEN-1) and ZES, there was a significant relationship between the level of initial FSG and tumor size and location of primary tumor, frequency of lymph node and liver metastases, and survival. The median 5- and 10-year survival decreased with increasing initial FSG (P <.001) in patients with sporadic ZES; MEN-1 patients lived longer than sporadic ZES patients (P =.012), and survival in this group was not associated with the level of initial FSG. Multivariate analysis showed that factors independently associated with death from disease in patients with sporadic ZES were liver metastases (P =.0001), a pancreatic site (P =.0027), and primary tumor size (P =.011) but not initial FSG (P >.30). CONCLUSION: The severity of FSG at presentation is associated with size and site of tumor and the presence of hepatic metastases, factors that are significant independent predictors of outcome. The level of FSG at presentation may be useful in planning the nature and extent of the initial evaluation and management in patients with sporadic ZES.

Adolescent↗

VEGF is upregulated in a neuroblastoma and hepatocyte coculture model.

BACKGROUND: We hypothesize that angiogenic factors are altered by the interaction between neuroblastoma cells and host tissues. MATERIALS AND METHODS: Human Chang hepatocytes and human neuroblastoma cells are cultured separately and in a noncontact, coculture system. Immunostaining for VEGF is performed on the cells. ELISA is used to detect vascular endothelial growth factor (VEGF), basic fibroblast growth factor, and interleukin-8 in the conditioned media. Human umbilical vein endothelial cells (HUVEC) are cultured with standard medium (control) and hepatocyte, neuroblastoma, and coculture conditioned media. After 48 and 72 h, cells are counted to determine proliferation. Finally, VEGF-blocking antibody is added to the HUVEC cultures with the conditioned media. RESULTS: VEGF is markedly elevated in the coculture medium compared to the media from hepatocytes or neuroblastoma grown alone [412.2 +/- 52 vs 235 +/- 35 or 74.5 +/- 28.5 (pg/10(6) cells), P < 0.05]. Other growth factors are almost undetectable in any of the media. Immunostaining for VEGF in the cocultured hepatocytes is decreased by almost 50%, but VEGF immunostaining is increased fourfold in the cocultured neuroblastoma cells. A significant increase in cell proliferation is seen at both 48 and 72 h when HUVEC are cultured with the coculture media. Cell proliferation is blocked with the addition of anti-VEGF antibody. CONCLUSION: The interaction of neuroblastoma with hepatocytes results in an increased production of VEGF. It stimulates endothelial cell proliferation and may enhance the tumor's metastatic potential in an autocrine fashion.

Cell Culture Techniques↗

Botulinum toxin treatment of cocontractions after birth-related brachial plexus lesions.

The authors studied botulinum toxin type A therapy of severe biceps-triceps cocontractions after nerve regeneration following birth-related brachial plexus lesions. Six children (age, 2 to 4 years) were treated two to three times over a period of 8 to 12 months with 40 mouse units of botulinum toxin at two sites of the triceps muscle. Elbow range of motion improved from 0 to 25 to 50 deg to 0 to 25 to 100 deg (p < 0.05), and muscle force of elbow flexion increased from a mean of Medical Research Council classification 1.7 to 3.7 (p < 0.05). After a 1-year follow-up, there was no clinical recurrence.

Birth Injuries↗

The angiogenesis inhibitor, endostatin, does not affect murine cutaneous wound healing.

BACKGROUND: Endostatin is a potent angiogenesis inhibitor, which is currently being used in Phase I trials as an antitumor agent. The purpose of this study was to determine whether endostatin has an effect on wound healing in a murine model. MATERIALS AND METHODS: The function of endostatin was confirmed using a human microvascular endothelial cell (HMVEC) proliferation assay in which cells are treated for 4 days with growth media plus or minus endostatin. Full-thickness incisions were made on the dorsum of athymic nude mice and closed primarily with skin staples. PVA sponges were implanted in some wounds to determine vascular ingrowth. Subsequently, mice were treated with recombinant human endostatin at 20 mg/kg/day or 50 mg/kg/dose BID versus control for a total of 14 days. On Days 2, 4, 8, 12, and 16, three mice per group had serum samples drawn and were sacrificed. Perpendicular breaking strength (N) was determined using an Instron 5540 tensometer. Wound strength was determined by dividing breaking strength by wound area (N/cm(2)). Vascular density in sponges was determined using CD31 immunohistochemistry. Serum endostatin concentrations were determined using a commercially available ELISA kit. RESULTS: Endostatin caused a significant reduction of endothelial cell proliferation after 4 days compared to media alone (72%, P = 0.031). At all time points tested, there was no statistical difference in the wound-breaking strength between endostatin and control-treated mice at either the low or high dose. Serum endostatin levels were consistently 10-fold higher in endostatin-treated mice than in controls. No differences in vascular density were seen in endostatin versus control-treated mice as determined by CD31 immunohistochemistry of PVA sponges. CONCLUSION: Therapy with human endostatin does not induce a significant decrease in breaking strength of cutaneous wounds in mice.

Animals↗

Tumour necrosis factor receptor I (p55) is upregulated on endothelial cells by exposure to the tumour-derived cytokine endothelial monocyte- activating polypeptide II (EMAP-II).

Endothelial monocyte activating polypeptide-II (EMAP-II) is an inflammatory cytokine known to have a role in neutrophil and macrophage chemotaxis and in apoptosis. It is a tumour-derived cytokine that sensitizes tumour vasculature to the effects of systemic TNF. In order to gain insight into the mechanism by which EMAP-II sensitizes vessels to TNF, we focused on its effects on TNF receptor expression. In human umbilical vein endothelial cells (HUVEC), TNF-R1 mRNA is increased four-fold following incubation with recombinant EMAP-II. Conditioned media from cell lines known to produce high levels of EMAP-II upregulated TNF-R1 but not TNF-R2 by up to twenty-fold compared to media controls and low expressing cell lines; this effect was blocked by anti-EMAP-II antibody. Recombinant EMAP-II upregulated TNF-R1 expression by approximately six-fold. Analysis of HUVEC lysates by ELISA showed increased expression of TNF-R1 within 2 h; TNF-R2 expression was unaffected by recombinant EMAP-II. Finally, immunohistochemistry of human melanomas in vivo showed that TNF-R1 staining is increased on the vessels of tumours known to express high levels of EMAP-II compared to low EMAP-II expressing tumours. These results suggest that EMAP-II upregulates TNF-R1 expression by endothelial cells both in vitro and in vivo. This induction of TNF-R1 expression may be the mechanism by which EMAP-II sensitizes tumour endothelium to the effects of TNF leading to haemorrhagic necrosis.

Animals↗

Endothelial monocyte activating polypeptide II induces endothelial cell apoptosis and may inhibit tumor angiogenesis.

Endothelial monocyte activating polypeptide II (EMAP-II) is a tumor-derived cytokine with potent effects on endothelial cells in vitro and in vivo including upregulation of tissue factor and the sensitization of human melanoma to systemic TNF treatment via its effects on the tumor vasculature. We investigated the effects of EMAP-II on tumor growth, angiogenesis, vasculogenesis, and apoptosis. EMAP-II inhibited endothelial cell proliferation, vasculogenesis, and neovessel formation. In vivo growth of human melanoma lines expressing high amounts of EMAP-II demonstrated slower growth, smaller tumors, and increased amounts of tumor necrosis than those expressing lower amounts of EMAP-II. EMAP-II induced endothelial-cell-specific apoptosis via a pathway that includes upregulation of the Fas-associated death domain and downregulation of Bcl-2. EMAP-II appears to have important effects on angiogenesis and may play a role in regulating tumor vascular growth.

3T3 Cells↗

[Gene therapy possibilities in plastic surgery].

Advances in gene technologies have meanwhile reached plastic surgery. Important contributions in this field (which are not all included in the paper) come not only from plastic surgeons, but also from neighboring specialities like dermatology, trauma surgery, orthopedics and vascular surgery. The uniting principle for all this work is improving wound healing and reconstructing tissue defects taking into consideration functional and aesthetic aspects. Gene-therapy is gaining further importance in the clinical field of plastic surgery. In this regard, every clinician has to be aware of the fact that progress in experimental and experimental-clinical work will be achieved only with the help of basic science. On the other hand, basic science needs the clinical input to get relevant patient-oriented studies started. Further intensive cooperation between clinicians and basic scientists is therefore mandatory. In plastic surgery, 2 years ago we founded a forum called ECSAPS (European Conference of Scientists and Plastic Surgeons), which takes place in European city every year.

Animals↗

Evaluation of dermal-epidermal skin equivalents ('composite-skin') of human keratinocytes in a collagen-glycosaminoglycan matrix(Integra artificial skin).

Integra artificial skin (Integra LifeSciences Corp., Plainsboro, NJ, USA) is a dermal template consisting of bovine collagen, chondroitin-6-sulphate and a silastic membrane manufactured as Integra. This product has gained widespread use in the clinical treatment of third degree burn wounds and full thickness skin defects of different aetiologies. The product was designed to significantly reduce the time needed to achieve final wound closure in the treatment of major burn wounds, to optimise the sparse autologous donor skin resources and to improve the durable mechanical quality of the skin substitute. The clinical procedure requires two stages. The first step creates a self neodermis, the second creates a self epidermis on the neodermis. However, it is desirable to cover major burn wounds early in a single step by a skin substitute consisting of a dermal equivalent seeded in vitro with autologous keratinocytes ('composite-skin') out of which a full thickness skin develops in vivo.The goal of this experimental study was to develop a method to integrate human keratinocytes in homogeneous distribution and depth into Integra Artificial Skin. The seeded cell-matrix composites were grafted onto athymic mice in order to evaluate their potential to reconstitute a human epidermis in vivo. We were able to demonstrate that the inoculated human keratinocytes reproducibly displayed a homogeneous pattern of distribution, adherence, proliferation and confluence. The cell-matrix composites grafted in this model exhibited good wound adherence, complete healing, minor wound contraction and had the potential to reconstitute an elastic, functional and durable human skin. Histologically we were able to show that the inoculated human keratinocytes in vivo colonised the matrix in a histomorphologically characteristic epidermal pattern (keratomorula, keratinocyte bubbling) and developed a persisting, stratified, keratinising epidermis which immunohistologically proved to be of human origin. These experimental results demonstrate the establishment of an effective cell cultivation process which may be suitable for scale-up production of the epidermal component as large-scale composite-skin grafts. When seeded into Integratrade mark and grafted onto the nude mouse a replacement skin with normal functioning dermal-epidermal components was developed. These results encourage the design of a clinical trial to assess the function of this composite graft in man.

Animals↗

Flap perfusion after free musculocutaneous tissue transfer: the impact of postoperative complications.

In a previous study, the authors found persistence of pedicle blood flow up to 10 years after uncomplicated free latissimus dorsi transfer. In this study, the impact of postoperative complications (hematoma, thrombosis, infection) and successful surgical revision was tested. Since 1982, more than 1200 free tissue transfers have been performed at the authors' institution (Hannover Medical School). Of these, the authors selected two groups of 30 patients each who had received a free latissimus dorsi transfer to the lower leg without microsurgical nerve coaptation for wound coverage. All patients included in this study were carefully selected for clinical homogeneity, with one difference: group I comprised patients who had no postoperative complications after free latissimus dorsi transfer. Group II included only patients with major postoperative complications after the procedure. All flaps in group II survived after successful surgical revision. The arteries, which nourished the lower leg, were visualized and documented by means of a duplex scanner in both groups. Three different time intervals were chosen for measurements of blood flow: 4 to 6 months (groups I.I and II.I), 4 to 6 years (groups I.II and II.II), and 8 to 10 years (groups I.III and II.III). Quantitative measurements of local flap perfusion in milliliters per minute per 100 g tissue were performed by means of the hydrogen clearance technique. In each patient, a total of nine measurements was performed in three phases: phase A, before closing the vascular pedicle by manual compression (n = 3); phase B, with a closed pedicle (n = 3); and phase C, after releasing the vascular pedicle from manual compression (n = 3). Each measurement took approximately 10 minutes. One hundred percent closure of each pedicle in phase B was confirmed by the duplex scanner. Furthermore, all patients were monitored both clinically and by means of the hydrogen clearance technique during phase B for adequate blood supply to the lower leg. Lower leg perfusion showed no statistical differences for phases A, B, and C in all groups of patients. In group I, no statistical differences in local flap perfusion were encountered for phases A and C. In phase B, however, a statistically significant (p < 0.01) complete extinction of local flap perfusion was registered in all patients of group I at the site of the flap's skin paddle. In group II, however, persistent flap perfusion was registered during phase B in up to 50 percent of cases in one subgroup (II.III). No statistically significant alterations of local blood flow were registered in the surrounding tissue of group II during phases A, B, and C. Patients with thrombosis of the venous anastomosis (n = 7) seemed to have the highest incidence of loss of autonomous blood supply through the vascular pedicle (5 out of 11 cases). No inconstant results were found during the repetitive measurements (n = 3) for each patient in each phase. After uncomplicated free tissue transfer, the flap's intact vascular pedicle seems to play an important role in permanent flap survival up to 10 years after the procedure. Postoperative complications after free tissue transfer with successful surgical revision, especially venous thrombosis of the vascular anastomosis, may lead to loss of vascular flap autonomy over time.

Adult↗

Bioartificial skin.

The loss of skin has been one of the oldest, yet most frequent and costly problems in our health care system. To restore functional and esthetic integrity in patients with unstable or hypertrophic scars, in burn patients and after skin loss for hereditary, traumatic or oncological reasons, an armamentarium of reconstructive surgical procedures including autogenous, allogenous and xenogenous tissue transfer as well as implantation of alloplastic materials has been favored. For several decades there has been increasing interest focused on 'tissue engineering' of dermal, epidermal and full thickness skin substitutes by both biological and synthetic matrices. At our institution (Hannover Medical School), a collagen/glycosaminoglycan dermal regeneration matrix has been used for immediate dermal coverage after escharectomy in burn injuries as well as for dermal replacement in chronically unstable scars. This article gives an overview on the current state of the art in bioartificial skin as well as our personal experience with the collagen/glycosaminoglycan matrix for dermal replacement in different clinical situations.

Adolescent↗

Sensitization of tumor necrosis factor alpha-resistant human melanoma by tumor-specific in vivo transfer of the gene encoding endothelial monocyte-activating polypeptide II using recombinant vaccinia virus.

Tumor necrosis factor alpha (TNF-alpha) is a proinflammatory cytokine with potent experimental antitumor activity. Its clinical use in cancer treatment is severely limited by its considerable toxicity after systemic administration, and it is currently confined to isolated limb and organ perfusion settings. In this report, we introduce a novel concept of TNF-alpha-based gene therapy using the TNF-sensitizing properties of endothelial cell monocyte-activating polypeptide II (EMAP-II). We hypothesized that transfer of the EMAP-II gene into established TNF-resistant human melanomas would render these tumors sensitive to subsequent systemic TNF-alpha treatment. To achieve tumor selective gene delivery, we constructed a recombinant vaccinia virus encoding the human EMAP-II gene (vvEMAP). In vitro transfection of human melanoma cells led to the production of EMAP-II by these cells. Supernatants of vvEMAP-transfected tumor cells mediated the induction of tissue factor in endothelial cells. We characterized the pattern of gene expression after systemic administration of a recombinant vaccinia virus encoding a reporter gene in a murine in vivo model of s.c. human melanoma. Gene expression in tumor tissue was increased 100-fold as compared with normal tissue, providing evidence for tumor-selective gene delivery. Finally, human melanomas in nude mice were sensitized in vivo by transferring the EMAP-II gene using vvEMAP. Subsequent systemic administration of TNF-alpha led to tumor regression and growth inhibition of these previously TNF-resistant tumors (P < 0.05). This approach using gene therapy to sensitize primarily unresponsive tumors toward TNF-alpha may enhance the usefulness of TNF-alpha in clinical treatment strategies by increasing the window for the therapeutic application of the cytokine, thus reducing the dose necessary for antitumor responses and subsequently reduce toxicity.

Animals↗

In vivo sensitivity of human melanoma to tumor necrosis factor (TNF)-alpha is determined by tumor production of the novel cytokine endothelial-monocyte activating polypeptide II (EMAPII).

Tumor necrosis factor (TNF)-alpha is a potent anticancer agent that seems to selectively target tumor-associated vasculature resulting in hemorrhagic necrosis of tumors without injury to surrounding tissues. The major limitation in the clinical use of TNF has been severe dose-limiting toxicity when administered systemically. However, when administered in isolated organ perfusion it results in regression of advanced bulky tumors. A better understanding of the mechanisms of TNF-induced antitumor effects may provide valuable information into how its clinical use in cancer treatment may be expanded. We describe here that the release of a novel tumor-derived cytokine endothelial-monocyte-activating polypeptide II (EMAPII) renders the tumor-associated vasculature sensitive to TNF. EMAPII has the unique ability to induce tissue factor production by tumor vascular endothelial cells that initiates thrombogenic cascades, which may play a role in determining tumor sensitivity to TNF. We demonstrate here that constitutive overexpression of EMAPII in a TNF-resistant human melanoma line by retroviral-mediated transfer of EMAPII cDNA renders the tumor sensitive to the effects of systemic TNF in vivo, but not in vitro. This interaction between tumors and their associated neovasculature provides an explanation for the focal effects of TNF on tumors and possibly for the variable sensitivity of tumors to bioactive agents.

Animals↗

Management of symptomatic malignant melanoma of the gastrointestinal tract.

BACKGROUND: Melanoma metastatic to the gastrointestinal (GI) tract is asymptomatic or presents with pain, bleeding, or obstruction. To determine whether surgery influences outcomes, we reviewed our experience with this patient population. METHODS: Medical records of patients with metastatic melanoma to the GI tract were reviewed. Patients were divided into four groups, i.e., complete resection, partial debulking, unresectable, or unexplored. Analysis was performed using the Kaplan-Meier method. RESULTS: Fifty patients with melanoma metastatic to the GI tract were identified (40 men and 10 women; mean age, 44 years). Presenting symptoms included pain (62%), bleeding (28%), and obstruction (18%). Diagnosis was confirmed using contrast studies (38%), endoscopy (20%), or computed tomography (30%). Thirty-six patients (61%) underwent a total of 39 operations. Seventeen patients underwent complete resection, whereas 14 underwent partial debulking. Five patients had unresectable lesions, and 14 patients did not undergo exploration because of medical contraindications. The operative mortality rate was 2.5% (1 of 39). The mean survival times for the unexplored and unresected groups were similar (4.1 months). Patients who underwent partial resection exhibited a longer mean survival time (8.9 months) than did patients in the unresected group (P < .001). The complete-resection group demonstrated a mean survival time of 23.5 months, which was significantly longer than that for patients who underwent less than complete resection (P < .0001). CONCLUSIONS: Metastatic melanoma to the GI tract can result in significant morbidity and death. Surgical resection can be performed safely. Patients for whom all sites of disease are completely resected experience significant improvements in survival times, compared with patients who undergo less than complete resection. For selected patients, surgical treatment of metastatic melanoma involving the GI tract is appropriate therapy.

Adult↗