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V J Ferrans

Publications and source records attributed to V J Ferrans.

At least 91 records · Page 5Linked to original sources

Comparison of the structural changes induced by doxorubicin and mitoxantrone in the heart, kidney and intestine and characterization of the Fe(III)-mitoxantrone complex.

Histologic, nick end labeling for apoptosis and electron microscopic studies were made of the heart, kidney and small intestine in spontaneously hypertensive rats (SHR) treated for 12 weeks with doxorubicin (1 mg/kg/week), mitoxantrone (0.5 or 0.25 mg/kg/week) or saline (controls). Semiquantitative scoring showed that the severity of the cardiac lesions produced by doxorubicin was comparable to that resulting from 0.5 mg/kg mitoxantrone, but greater than that induced by 0.25 mg/kg mitoxantrone (to which it is therapeutically equivalent). The nephropathy and the intestinal toxicity produced by doxorubicin were also more severe than those resulting from either dose of mitoxantrone. Apoptosis of cardiac myocytes was not induced by either drug, but involved cardiac dendritic cells in SHR given doxorubicin. Apoptosis in renal tubular epithelium was comparable in SHR given doxorubicin and the higher dose of mitoxantrone. Doxorubicin induced more frequent apoptosis in intestinal epithelium than did the higher dose of mitoxantrone. We also show that mitoxantrone and iron(III) form a strong 2:1 complex, in which the drug may be acting as a tridentate ligand. This complex, like the iron(III)-doxorubicin complex, may be capable of redox cycling and producing reactive oxygen intermediates (ROI) that damage tissue. Decreased formation of ROI by mitoxantrone may account for its reduced cardiotoxicity compared to that of doxorubicin.

Animals↗

Comparison of the protective effects against chronic doxorubicin cardiotoxicity and the rates of iron (III) displacement reactions of ICRF-187 and other bisdiketopiperazines.

Histologic and biochemical studies were carried out to compare the protective activity of various bisdiketopiperazines against the cardiac and renal toxicity induced by doxorubicin in spontaneously hypertensive rats (SHR), a well-established animal model of this disorder, with: (1) the rates of hydrolysis of these agents to form the iron-chelating derivatives (which are considered to cause a decrease in the formation of reactive oxygen intermediates) and (2) the ability of these derivatives to bind iron. SHR were given 12 weekly injections of doxorubicin, 1 mg/kg i.v. either alone or 30 min after the administration of ICRF-154, ICRF-187, ICRF-192, ICRF-197, ICRF-198, ICRF-239 and ADR-559. Semiquantitative grading of the severity of the resulting cardiac and renal lesions showed that ICRF-187, ICRF-154 and ADR-559 were the most protective, whereas ICRF-197 and ICRF-239 provided intermediate degrees of protection, and ICRF-192 and ICRF-198 were not protective. Quantitative measurements in vitro revealed only relatively small differences in the rates of opening of the two diketopiperazine rings of the various agents to form the corresponding iron-chelating diacid diamide derivatives, and in the ability of these various derivatives to remove iron from the iron-doxorubicin complex. Such differences showed no relationship with cardioprotective activity. Some bisdiketopiperazines (including ICRF-154 and ICRF-187) with cardioprotective activity also are inhibitors of DNA topoisomerase II; however, the significance of this relationship remains uncertain, since ADR-925, the open-ring derivative of ICRF-187, does not inhibit DNA topoisomerase II.

Animals↗

Immunohistochemical study of matrix metalloproteinases (MMPs) and their tissue inhibitors (TIMPs) in pulmonary lymphangioleiomyomatosis (LAM).

To evaluate the role of matrix metalloproteinases (MMPs) and their specific tissue inhibitors (TIMPs) in the pathogenesis of the structural damage and cystic lesions found in pulmonary lymphangioleiomyomatosis (LAM), immunohistochemical studies were made of the localization of MMP-1, MMP-2, MMP-3, MMP-9, TIMP-1, TIMP-2, HMB-45, and type IV collagen in sections of lung biopsy specimens from four patients with this disorder. These studies showed increased immunoreactivity compared with that in normal bronchiolar and vascular smooth muscle cells, of MMP-2 and, to a lesser extent, MMP-9 and MMP-1 in the LAM cells. MMP-2 was also localized in some elastic fibers and in the basement membranes of LAM cells and overlying epithelial cells. The basement membranes in both of these sites often showed colocalization of MMP-2 and type IV collagen. Some epithelial basement membranes showing this colocalization were disrupted. These changes were not accompanied by increased immunoreactivity for TIMPs. Taken together with previous observations showing structural damage to elastic fibers and collagen fibrils, and with the absence of demonstrable neutrophil or pancreatic types of elastase, these findings suggest that MMP-2 and MMP-9 (both of which can degrade elastin as well as collagens) are responsible for the connective tissue destruction and cyst formation in LAM.

Adult↗

Tyrosine and phenylalanine restriction induces G0/G1 cell cycle arrest in murine melanoma in vitro and in vivo.

Tyr-Phe and Met limitation in vitro inhibited cell proliferation and proliferating cell nuclear antigen (PCNA) expression to a greater extent than serum limitation. Tyr-Phe and serum limitation arrested cells in the G0/G1 phase; Met limitation blocked cells in the G0/G1 and S phases. Tyr-Phe limitation progressively decreased cyclin D1 expression to 30% of control within four days and did not affect expression of cyclin D3 or cyclin-dependent kinase (CDK2, CDK4, and CDK5) expression, Met limitation decreased cyclin D3 expression to 25% of control and CDK2 expression to 32% of control by Day 4 and did not affect expression of cyclin D1, CDK4, and CDK5. Serum limitation inhibited cyclin D1 and cyclin D3 expression to 24% of control after four days and did not effect CDK expression. Expression of two CDK inhibitors, p21WAF1/Cip1 and p27Kip1, was not changed by amino acid or serum limitation. Dietary restriction of Tyr-Phe in mice bearing subcutaneous B16BL6 melanoma tumors decreased tumor growth rate compared with mice fed a normal diet. Tumors from Tyr-Phe-restricted mice exhibited decreased PCNA expression, G0/G1 phase cell cycle arrest, and reduced cyclin D1 expression. These data indicate that decreased tumor growth in vivo associated with dietary restriction of Tyr and Phe is cell cycle specific.

Animals↗

Clearance of mucus from endotracheal tubes during intratracheal pulmonary ventilation.

BACKGROUND: Intratracheal pulmonary ventilation (ITPV) is a form of tracheal gas insufflation in which all gas emerges in a cephalad direction from the tip of a reverse-thrust catheter positioned within an endotracheal tube. In vitro experiments have shown that this rapid gas flow, with 5 ml/h of normal saline added to the gas flow, continuously removes tracheal secretions from within the endotracheal tube. The authors evaluated its effectiveness to remove mucus in long-term studies in sheep. METHODS: Fourteen healthy sheep were tracheally intubated and ventilated for 3 days with ITPV or with volume-controlled ventilation. Measurements were made of the total amount of secretions within the endotracheal tubes (weight gain), the protein content within the endotracheal tubes, and the increase in resistance to constant air flow. The structure of the airways was examined grossly and histologically. Three additional sheep were ventilated for 24 h with ITPV, and Evans Blue dye was added to the saline to assess the distribution of the infused saline. RESULTS: There was significantly less mucus in endotracheal tubes of sheep ventilated with ITPV than with conventional ventilation, as shown by minimal weight gain (0.70 +/- 0.14 g vs. 2.44 +/- 0.81 g; P < 0.001), lower protein content (14.09 +/- 10.79 mg vs. 294.99 +/- 153.06 mg; P < 0.001), and lower resistance to constant air flow (6.15 +/- 0.54 cm H2O x 1(-1) x s(-1) vs. 15.34 +/- 5.28 cm H2O x 1(-1) x s(-1); P < 0.001). Results of gross and histological examinations of the tracheas of animals in both groups were similar, and the tracheas were well preserved. More than 95% of the instilled saline was recovered during ITPV. Only traces of Evans Blue dye were found near the tip of the endotracheal tubes. CONCLUSION: Intratracheal pulmonary ventilation makes it possible to keep the endotracheal tubes of sheep ventilated for 3 days free of mucus without suctioning.

Animals↗

The indeterminate phase of Chagas' disease: ultrastructural characterization of cardiac changes in the canine model.

The indeterminate phase of Chagas' disease is defined as the prolonged period of clinically silent infection that follows the phase of acute primary infection with Trypanosoma cruzi. The dog is the only experimental animal model in which the indeterminate phase progresses to the late phase of severe, chronic myocarditis. This report describes the cardiac histologic and ultrastructural findings in dogs that survived the acute phase of infection with T. cruzi, becoming clinically and electrocardiographically normal for up to 3.5 years, while maintaining positive serologic test results during this period of time. Most of the myocardium appeared morphologically normal; however, small foci of mild, chronic myocarditis were present, with interstitial edema, mild fibrosis, and infiltration by lymphocytes, macrophages, and plasma cells. No microvascular lesions and no areas of close contact between immune effector cells and endothelial cells or cardiac myocytes were present. These findings were in sharp contrast to those observed in the canine model during the acute infection with T. cruzi. In this model, acute myocyte damage and lesions in the microcirculation, including fibrin microthrombi, were associated with close contacts between immune effector cells and myocytes or endothelial cells. Focally inflamed interstitial tissue showed increased deposition of amorphous and collagenous extracellular matrix as well as evidence of breakdown of collagen. The features of the inflammatory cells in the indeterminate phase of Chagas' disease were interpreted as indicating a self-limited cycle of focal inflammatory changes, with modulation and suppression of cell-mediated immune responses. Thus, we consider the indeterminate phase of Chagas' disease to be a stage of host-parasite equilibrium rather than a process of progressive damage.

Animals↗

Immunohistochemical study of matrix metalloproteinases and their tissue inhibitors in pulmonary Langerhans' cell granulomatosis.

OBJECTIVE: To evaluate the role of matrix metalloproteinases (MMPs) and their tissue inhibitors (TIMPs) in the pathogenesis of the lesions of pulmonary Langerhans' cell granulomatosis. DESIGN: Immunohistochemical and confocal microscopic studies were made of lung biopsy specimens from five patients with pulmonary Langerhans' cell granulomatosis. RESULTS: The reactivity of Langerhans' cells was moderate to intense for MMP-2, weaker for MMP-9, and faint for TIMP-1 and TIMP-2. Type IV collagen colocalized with MMP-2 in areas of damage to epithelial basement membranes, a finding that emphasizes the potential importance of this enzyme in the pathogenesis of the destructive lesions of pulmonary Langerhans' cell granulomatosis. In the more advanced fibrotic lesions, TIMP-2 colocalized with basement membranes and with fibrillar collagen, suggesting that it contributes to the permanence of the fibrosis. CONCLUSION: These results indicate an important role for MMPs and TIMPs in pulmonary Langerhans' cell granulomatosis.

Adult↗

Pathogenesis and prevention of doxorubicin cardiomyopathy.

A review is presented of the various types of cardiotoxicity associated with the clinical use of doxorubicin, a highly effective antineoplastic agent of the anthracycline family. Acute toxicity is related to rapid intravenous administration of the drug and is manifested by vasodilatation, hypotension and cardiac arrhythmias. Subacute toxicity is very uncommon. It develops early in the course of therapy and is characterized by myocarditis and pericarditis. Chronic toxicity is the most common form of doxorubicin-induced cardiac toxicity. It is manifested by chronic dilated cardiomyopathy, which develops late in the course of therapy or shortly after its termination. Morphologic changes are characteristic and consist of myofibrillar loss and cytoplasmic vacuolization (which is due to dilatation of the sarcoplasmic reticulum) of the myocytes. The damaging effects of reactive oxygen species, generated by the interaction of doxorubicin with iron, play a critically important role in the pathogenesis of the chronic cardiotoxicity. Other factors related to this toxicity include inhibition of DNA topoisomerase II, stimulation of certain immune responses and a diversity of other biochemical effects on various cellular organelles. Doxorubicin induces apoptosis in a variety of cell types, but not in cardiac myocytes. The chronic cardiotoxicity of doxorubicin is significantly attenuated by chelation of iron by ICRF-187 (dexrazoxane). A greatly delayed type of doxorubicin cardiotoxicity has been recently found to occur in survivors of childhood cancers who were treated with doxorubicin without any immediate adverse effects, but develop chronic cardiomyopathy at periods of time ranging up to 15 years later. The pathogenesis of this type of toxicity remains to be determined.

Antibiotics, Antineoplastic↗

Reactive oxygen species are downstream mediators of p53-dependent apoptosis.

Reactive oxygen species (ROS) have been implicated as potential modulators of apoptosis. Conversely, experiments under hypoxic conditions have suggested that apoptosis could occur in the absence of ROS. We sought to determine whether a central modulator of apoptosis, p53, regulates the levels of intracellular ROS and whether a rise in ROS levels is required for the induction of p53-dependent apoptosis. We transiently overexpressed wild-type p53, using adenoviral gene transfer, and identified cell types that were sensitive or resistant to p53-mediated apoptosis. Cells sensitive to p53-mediated apoptosis produced ROS concomitantly with p53 overexpression, whereas cells resistant to p53 failed to produce ROS. In sensitive cells, both ROS production and apoptosis were inhibited by antioxidant treatment. These results suggest that p53 acts to regulate the intracellular redox state and induces apoptosis by a pathway that is dependent on ROS production.

Adenoviruses, Human↗

Regulation of reactive-oxygen-species generation in fibroblasts by Rac1.

In a variety of non-phagocytic cell types, there is a marked increase in intracellular levels of reactive oxygen species (ROS), including superoxide and H2O2, after ligand stimulation. We demonstrate that in NIH 3T3 cells transient expression of constitutively activated forms of the small GTP-binding proteins Ras or Rac1 leads to a significant increase in intracellular ROS. An increase in intracellular ROS is also demonstrated after growth factor [platelet-derived growth factor (PDGF) or epidermal growth factor (EGF)] or cytokine [tumour necrosis factor-alpha (TNF-alpha) or interleukin (IL)-1 beta] stimulation of NIH 3T3 cells. Expression of a dominant negative allele of Rac1 inhibits the rise in ROS seen after Ras expression or after stimulation by either growth factors or cytokines. These results provide the first demonstration of the pathway by which ligand stimulation of ROS occurs in non-phagocytic cells and suggest that the family of Ras-related small GTP-binding proteins may function as regulators of the intracellular redox state.

3T3 Cells↗

Age dependence of the cardiac lesions induced by minoxidil in the rat.

To evaluate the age- and dose-dependence of the cardiotoxicity induced by minoxidil, histologic studies were made of the hearts of 3-, 6-, 15- and 24-month-old Sprague Dawley rats treated with either 10, 50 or 250 mg/kg of the drug p.o. daily for two consecutive days. The 10 mg/kg dose of minoxidil induced myocyte necrosis in each of the 24-month-old rats but only in one other animal (6-month-old). The 50 mg/kg dose produced necrosis in all the 15- and 24-month-old rats, but in only one of the other animals (6-month-old), while the 250 mg/kg dose induced necrosis in animals of all ages. Inflammation was present in all minoxidil-treated animals, but at each dose level it was most severe in the oldest rats. Interstitial hemorrhages were observed at all dose levels, but increased in frequency and severity with the dose of minoxidil, and at each dose level they were more severe in the oldest animals. Vascular lesions consisting of arteriolar damage and calcification were observed only in the 24-month-old animals. Thus, these data demonstrate that the cardiac lesions induced by minoxidil are more frequent and severe in older than in younger rats.

Aging↗

Simultaneous assessment of bioprosthetic heart valve biomechanical properties and collagen crimp length.

A new morphologic method is described for the simultaneous quantitation of porcine aortic valve collagen crimp length and the assessment of biomechanical properties. This method utilizes the simultaneous real-time video recording of collagen crimp morphology and acquisition of crimp length data through the combination of polarized light microscopy and morphometry. We felt that the development of this method was warranted, due to the fundamental role played by collagen in porcine aortic valve performance. The development of this method involved the design and fabrication of a uniaxial microtensile stage, suitable for mounting on a standard microscope stage. The validation of our test method was accomplished by a comparison of untreated and glutaraldehydetreated porcine aortic valve leaflet tissue, because the biomechanical and morphologic characteristics of the native and fixed aortic valve have been extensively studied. The method described in this communication enables the collection of morphologic and biomechanical data from a single tissue specimen, eliminating the need for independent studies of multiple specimens. Furthermore, this method obviates the need for making assumptions, which may be difficult to verify, concerning the homogeneity of different test specimens with respect to their morphology and corresponding mechanical response to different experimental conditions.

Animals↗

Apoptosis and DNA fragmentation in the bulbus cordis of the developing rat heart.

Histologic, ultrastructural and nick end labeling studies were made of the process of apoptosis in the bulbus cordis of rat embryos. Apoptosis was observed between the 14th and 16th days of gestational age, at which time the bulbus cordis undergoes extensive remodeling. Three types of mesenchymal cells were identified in this region: cells undergoing apoptosis, cells engaging in the phagocytic removal of apoptotic cells, and cells not involved in either of these two processes. Fragmentation of DNA, demonstrated by nick end labeling, was found only in the apoptotic cells. The combined use of morphologic and labeling techniques is extremely useful in the evaluation of the contribution of apoptosis to cardiac morphogenesis.

Animals↗

Doxorubicin-induced apoptosis in spontaneously hypertensive rats: differential effects in heart, kidney and intestine, and inhibition by ICRF-187.

The occurrence of apoptosis in heart, kidney and small intestine was investigated in spontaneously hypertensive rats (SHR) treated with doxorubicin (1 mg/kg/week for 6, 9 and 12 weeks) with and without pretreatment with the iron chelator ICRF-187 [(+)1.2-bis(3.5-dioxopiperazinyl-l-yl)propane] (25 mg/kg, i.p., given 30 min before doxorubicin). Animals receiving either ICRF-187 alone or saline were used as controls. Cells undergoing apoptosis were identified ultrastructurally and by staining using the nick-end labeling method. The results obtained by counting cells with positive nick-end labeling showed that, when given in cumulative doses of 9 and 12 (but not 6) mg/kg, doxorubicin induced significant toxicity in the heart, kidneys and intestine in association with apoptosis in epithelial cells of the intestinal mucosa and renal tubules but not in cardiac myocytes. At these doses nick end labeling in the heart was confined to occasional endothelial cells, interstitial dendritic cells and macrophages. The frequency of doxorubicin-induced apoptosis in renal and intestinal epithelial cells was decreased by pretreatment of the SHR with ICRF-187. Our data support the concept that the chronic cardiomyopathy induced by doxorubicin is not mediated by apoptosis of the cardiac myocytes.

Animals↗

Biochemical and morphological characterization of carbon tetrachloride-induced lung fibrosis in rats.

The short-term and long-term lung CCl4 injuries in rats were studied by i.p. CCl4 for 2 or 5 weeks, respectively, and the lung injury in the third progression group receiving i.p. CCl4 for 2 weeks followed by 3 weeks without. Acute haemorrhagic interstitial pneumonia resulted from short-term injury; chronic interstitial pneumonia from long term injury, and residua of injury or advanced chronic interstitial pneumonia in the progression group. All groups also exhibited features for diffuse alveolar damage. Connective tissue stains revealed both interstitial and intra-alveolar fibrosis in short-term injury. Hydroxyproline content and the activities of prolyl hydroxylase and galactosylhydroxylysyl glucosultransferase were elevated. This suggests an early onset of pulmonary fibrosis. Immunohistochemistry revealed the interstitial accumulation of BM proteins. In contrast, increased type III pN-collagen could also be found in the intra-alveolar spaces. The degrees of both interstitial and intra-alveolar fibrosis, BM proteins and type III pN-collagen, and also hydroxyproline content were greater in long-term injury, while the progression group showed on average fewer fibrotic changes than did the long-term injury group, but more than the short-term injury pointing to persistence or progression of the changes. Additionally, intra-alveolar crystallized haemoglobin was found following short-term injury. We conclude that CCl4-induced lung injury is an useful experimental model to study pulmonary fibrosis. The mechanism of CCl4 lung injury is not known but free radical-mediated lipid peroxidation is suggested.

Animals↗

Histological characteristics of the healing process of frozen skin allograft used in the treatment of burns.

Combined transplantation of skin autograft and allograft was used for the treatment of severe burns. The allografts were obtained from cadavers and were pretreated with 15 per cent glycerol for 2 h at 4 degrees C then frozen at -80 degrees C until used. Patches of autografts were placed over the burns and were covered by a stretched mesh of allografts. Biopsy samples of transplanted skin were obtained from 5 days to 4 weeks after grafting. Sections were examined by histological and immunohistochemical strainings. At 4 days, the epidermal-dermal junction of allografted skin was separated due to migration of epithelial cells derived from autograft epidermis or from skin appendages of recipient dermis. At 2 weeks, dermal fibroblasts and capillaries proliferated in autografts. At 3 weeks, the dermal components of the allograft were covered by epithelial cells from recipient tissue and were invaded by fibroblasts and capillaries. At 4 weeks, allografted skin was replaced by granulation tissue, which mediated the adhesion of the grafts to the underlying tissue. Skin allografts with a freeze-thawing pretreatment provide an appropriate matrix for the epithelial relining and for the growth of granulation tissue in burned skin.

Adult↗

New ultrathin-walled endotracheal tube with a novel laryngeal seal design. Long-term evaluation in sheep.

BACKGROUND: A new endotracheal tube (ETT) was fabricated and tested in sheep. It had no tracheal cuff; airway seal was achieved at the level of the glottis through a no-pressure seal made of "gills"; the laryngeal portion was oval-shaped; and the wall thickness was reduced to 0.2 mm. METHODS: Sheep were tracheally intubated either with a standard tube or with the new tube, and their lungs were mechanically ventilated for 1 or 3 days. Air leak was recorded at different peak inspiratory pressures (PIPs). Liquid seepage into the trachea was assessed using an indicator dye. Tracheolaryngeal lesions were scored grossly and histologically. RESULTS: There was no air leak up to 40 cmH2O of PIP, in either group, in short- and long-term studies. Methylene blue leaked across the cuff in two sheep with standard ETTs. No dye leaked across the gills with the new ETTs. In the new ETT group, the trachea appeared better preserved, grossly and histologically, than in the standard ETT group at both 1 and 3 days (P < 0.05). At day 1, the larynx and vocal cords appeared grossly less injured in the new ETT group (P < 0.05), whereas there was no difference at day 3. Histology did not show significant difference on vocal cords, epiglottis, and larynx between the two groups at any time. CONCLUSIONS: The novel, no-pressure seal design of the new ETT is highly effective in preventing air leak and aspiration. It causes no significant tracheal injury.

Animals↗

rac1 regulates a cytokine-stimulated, redox-dependent pathway necessary for NF-kappaB activation.

The signal transduction pathway leading to the activation of the transcription factor NF-kappaB remains incompletely characterized. We demonstrate that in HeLa cells, transient expression of a constitutively active mutant of the small GTP-binding protein rac1 (V12rac1) leads to a significant increase in NF-kappaB transcriptional activity. In addition, expression of a dominant-negative rac1 mutant (N17rac1) inhibits basal and interleukin 1beta-stimulated NF-kappaB activity. Gel shift analysis using nuclear extract prepared from HeLa cells infected with a recombinant adenovirus encoding N17rac1 (Ad.N17racl) showed reduced levels of cytokine-stimulated DNA binding to a consensus NF-kappaB binding site. We demonstrate that rac proteins function downstream of ras proteins in the activation of NF-kappaB. In addition, V12rac1 stimulation of NF-kappaB activity is shown to be independent of the ability of rac proteins to activate the family of c-jun amino-terminal kinases. In an effort to further explore how rac proteins might regulate NF-kappaB activity, we demonstrate that expression of V12rac1 in HeLa cells or stimulation with cytokine results in a significant increase in intracellular reactive oxygen species (ROS). Treatment of cells with either of two chemically unrelated antioxidants inhibits the rise in ROS that occurs following V12rac1 expression as well as the ability of V12rac1 to stimulate NF-kappaB activity. These results suggest that in HeLa cells, rac1 regulates intracellular ROS production and that rac proteins function as part of a redox-dependent signal transduction pathway leading to NF-kappaB activation.

Cytokines↗