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F Haddad

Publications and source records attributed to F Haddad.

At least 19 recordsLinked to original sources

Transcriptional regulation of IGF-I expression in skeletal muscle.

The present study investigated the role of transcription in the regulation of insulin-like growth factor (IGF)-I expression in skeletal muscle. RT-PCR was used to determine endogenous expression of IGF-I pre-mRNA and mRNA in control (Con) and functionally overloaded (FO) rat plantaris. The transcriptional activities of five different-length IGF-I promoter fragments controlling transcription of a firefly luciferase (FLuc) reporter gene were tested in vitro by transfection of myoblasts or in vivo during FO by direct gene transfer into the plantaris. Increased endogenous IGF-I gene transcription during 7 days of plantaris FO was evidenced by an approximately 140-160% increase (P < 0.0001) in IGF-I pre-mRNA (a transcriptional marker). IGF-I mRNA expression also increased by approximately 90% (P < 0.0001), and it was correlated (R = 0.93; P < 0.0001) with the pre-mRNA increases. The three longest IGF-I exon 1 promoters induced reporter gene expression in proliferating C2C12 and L6E9 myoblasts. In differentiated L6E9 myotubes, promoter activity increased approximately two- to threefold over myoblasts. Overexpression of calcineurin and MyoD increased the activity of the -852/+192 promoter in C2C12 myotubes by approximately 5- and approximately 18-fold, respectively. However, FO did not induce these exogenous promoter fragments. Nevertheless, the present findings are consistent with the hypothesis that the IGF-I gene is transcriptionally regulated during muscle hypertrophy in vivo as evidenced by the induction of the endogenous IGF-I pre-mRNA during plantaris FO. The exon 1 promoter region of the IGF-I gene is sufficient to direct inducible expression in vitro; however, an in vivo response to FO may require elements outside the -852/+346 region of the exon 1 IGF-I promoter or features inherent to the endogenous IGF-I gene.

Animals↗

Atrophy responses to muscle inactivity. I. Cellular markers of protein deficits.

The goal of this study was to use the model of spinal cord isolation (SI), which blocks nearly all neuromuscular activity while leaving the motoneuron muscle-fiber connections intact, to characterize the cellular processes linked to marked muscle atrophy. Rats randomly assigned to normal control and SI groups were studied at 0, 2, 4, 8, and 15 days after SI surgery. The slow soleus muscle atrophied by approximately 50%, with the greatest degree of loss occurring during the first 8 days. Throughout the SI duration, muscle protein concentration was maintained at the control level, whereas myofibrillar protein concentration steadily decreased between 4 and 15 days of SI, and this was associated with a 50% decrease in myosin heavy chain (MHC) normalized to total protein. Actin relative to the total protein was maintained at the control level. Marked reductions occurred in total RNA and DNA content and in total MHC and actin mRNA expressed relative to 18S ribosomal RNA. These findings suggest that two key factors contributing to the muscle atrophy in the SI model are 1). a reduction in ribosomal RNA that is consistent with a reduction in protein translational capacity, and 2). insufficient mRNA substrate for translating key sarcomeric proteins comprising the myofibril fraction, such as MHC and actin. In addition, the marked selective depletion of MHC protein in the muscles of SI rats suggests that this protein is more vulnerable to inactivity than actin protein. This selective MHC loss could be a major contributor for the previously reported loss in the functional integrity of SI muscles. Collectively, these data are consistent with the involvement of pretranslational and translational processes in muscle atrophy due to SI.

Actins↗

Atrophy responses to muscle inactivity. II. Molecular markers of protein deficits.

We examined the expression of several molecular markers of protein balance in response to skeletal muscle atrophy induced by spinal cord isolation (SI; i.e., a complete transection of the spinal cord at both a midthoracic and a high sacral level plus complete deafferentation between the two transection sites). This treatment nearly eliminates neuromuscular activity (activation and loading) of the hindlimb muscles while maintaining neuromuscular connectivity. SI was associated with a reduced transcriptional activity (via pre-mRNA analyses) of myosin heavy chain (MHC) and actin. In addition, there was an increased gene expression of enzyme systems impacting protein degradation (calpain-1; plus enzymes associated with polyubquitination processes) that could further contribute to the protein deficits in the SI muscles via degradative pathways. IGF-I receptor and binding protein-5 mRNA expression was induced throughout the 15-day period of SI, whereas IGF-I mRNA was induced at 8 and 15 days. These responses occurred in the absence of an upregulation of translational regulatory proteins (p70 S6 kinase; eukaryotic 4E binding protein 1) to compensate for the decreased protein translational capacity. These data collectively demonstrate that 1). the molecular changes accompanying SI-induced muscle atrophy are not necessarily the reverse of those occurring during muscle hypertrophy, and 2). the rapid and marked atrophy that defines this model of muscle inactivity is likely the result of multifactorial processes affecting transcription, translation, and protein degradation.

Actins↗

Transcriptional regulation of the type I myosin heavy chain gene in denervated rat soleus.

Denervation (DEN) of rat soleus is associated with a decreased expression of slow type I myosin heavy chain (MHC) and an increased expression of the faster MHC isoforms. The molecular mechanisms behind these shifts remain unclear. We first investigated endogenous transcriptional activity of the type I MHC gene in normal and denervated soleus muscles via pre-mRNA analysis. Our results suggest that the type I MHC gene is regulated via transcriptional processes in the denervated soleus. Deletion and mutational analysis of the rat type I MHC promoter was then used to identify cis elements or regions of the promoter involved in this response. DEN significantly decreased in vivo activity of the -3,500, -2,500, -914, -408, -299, and -215 bp type I MHC promoters, relative to the alpha-skeletal actin promoter. In contrast, normalized -171 promoter activity was unchanged. Mutation of the betae3 element (-214/-190) in the -215 promoter and deletion of this element (-171 promoter) blunted type I downregulation with DEN. In contrast, betae3 mutation in the -408 promoters was not effective in attenuating the DEN response, suggesting the existence of additional DEN-responsive sites between -408 and -215. Western blotting and gel mobility supershift assays demonstrated decreased expression and DNA binding of transcription enhancer factor 1 (TEF-1) with DEN, suggesting that this decrease may contribute to type I MHC downregulation in denervated muscle.

Animals↗

[Comparison of nicardipine and isradipine in hypertension following coronary artery bypass graft].

OBJECTIVE: Compare the efficacy of isradipine to that of nicardipine for the control of arterial hypertension following coronary artery bypass graft (CABG). STUDY DESIGN: Clinical prospective, randomised study. MATERIAL AND METHODS: 40 patients ASA II or III, mean age 66 +/- 8 years, scheduled for elective CABG were included. If the mean arterial pressure (MAP) was > or = 100 mmHg within the first six post operative hours, the patients were included and randomly attributed to either one of the 2 groups: Gr I (n = 20) received nicardipine, Gr II (n = 20) received isradipine in bolus then in continuous perfusion. HR, MAP, MPAP, CVP, PCWP, CI, SVRI, PVRI and SVI were recorded at: T0 before administration of drugs, T1 = 2 min after the first bolus. T2 when MAP reached 85 +/- 5 mmHg. T3, T4, T5, T6, T7 and T8 at 5, 10, 30, 60, 90 and 120 min after the continuous perfusion. T9 before stopping the perfusion. RESULTS: No significant changes in HR, CVP, PCWP, MPAP or PVRI at any time in both groups. Significant increase in CI at T2 in both groups. Reduction of MAP at T2 was more important (-27%) in Gr I compared to that in Gr II (-22%). This was mainly due to a significant decrease in SVRI. CONCLUSION: Isradipine is effective in the treatment of arterial hypertension following CABG. However there is not any significant beneficial effect of isradipine over nicardipine.

Aged↗

[Bilateral ilioinguinal nerve block for ambulatory varicocele surgery].

OBJECTIVE: The aim of this study was to evaluate the effectiveness of bilateral ilioinguinal-iliohypogastric nerve blocks for pain relief following ambulatory bilateral varicocelectomy. STUDY DESIGN: Prospective and randomised. PATIENTS AND METHODS: Sixty adult men scheduled for bilateral varicocelectomy were included in this prospective study. All patients had a standardised general anesthesia. After surgical procedures, patients were randomized into two groups: patients in group I received a bilateral ilioinguinal nerve block with 15 ml x 2 of 0.25% bupivacaine; patients in group II received subcutaneously 1 mg kg-1 of tramadol. Visual analogue pain scores at rest and during mobilisation were recorded at 5 min and 1, 3, 5 postoperative hours. The side effects of analgesia and amounts of rescue analgesics were recorded. RESULTS: Pain scores at rest and during mobilisation, the incidence of postoperative nausea and vomiting and additional analgesics requirement were significantly reduced in group I. There was no complication. CONCLUSION: Ilioinguinal nerve block is effective in controlling pain after bilateral varicocelectomy in ambulatory surgery.

Adult↗

Accuracy of radial arterial pressure measurement during surgery under controlled hypotension.

BACKGROUND: Radial arterial pressure underestimates the pressure in the aorta in several clinical situations. A central-to-radial pressure gradient was attributed to intense vasodilation. The aim of this study was to evaluate the accuracy of radial pressure monitoring during controlled hypotension achieved with profound arterial vasodilation. METHODS: Ten patients with ASA physical status I and II undergoing maxillofacial surgery under general anesthesia were enrolled in this prospective study. Radial and femoral arteries were cannulated and connected to a pressure monitoring system. Controlled hypotension was achieved with an infusion of nicardipine titrated to maintain MAP between 50 and 60 mmHg. Simultaneous radial and femoral systolic, mean and diastolic arterial pressures were recorded before, during and after controlled hypotension. Results were expressed as mean +/- SD. Concomitant radial and femoral pressures were compared by a paired Student's test, P < 0.05 being significant. RESULTS: In all, 150 sets of arterial pressures measurement were obtained. There were no statistically significant differences between radial and femoral arterial pressures measured before, during or after controlled hypotension. CONCLUSION: Radial arterial pressure is an accurate measure of central arterial pressure during controlled hypotension achieved with arterial vasodilation.

Adult↗

Detection and characterization of mechanisms of action of aneugenic chemicals.

A comprehensive evaluation of the genotoxic potential of chemicals requires the assessment of the ability to induce gene mutations and structural chromosome (clastogenic activity) and numerical chromosome (aneugenic activity) aberrations. Aneuploidy is a major cause of human reproductive failure and an important contributor to cancer and it is therefore important that any increase in its frequency due to chemical exposures should be recognized and controlled. The in vitro binucleate cell micronucleus assay provides a powerful tool to determine the ability of a chemical to induce chromosome damage. The application of an anti-kinetochore antibody to micronuclei allows their classification into kinetochore-positive and kinetochore-negative, indicating their origin by aneugenic or clastogenic mechanisms, respectively. The availability of chromosome-specific centromere probes allows the analysis of the segregation of chromosomes into the daughter nuclei of binucleate cells to evaluate chromosome non-disjunction. Quantitative relationships between the two major causes of aneuploidy, chromosome loss and non-disjunction, can be determined. The mechanisms leading to chromosome loss and non-disjunction can be investigated by the analysis of morphological and structural changes in the cell division apparatus by the application of specific stains and antibodies for various cell division components. We illustrate such analyses by the demonstration of the interaction of the monomer bisphenol-A with the centrosome of the mitotic spindle and the folic acid antagonist pyrimethamine with the centromeres of chromosomes. Both types of modifications lead to the induction of aneuploidy in exposed cells. Our studies also implicate the products of the p53 and XPD genes in the regulation of the fidelity of chromosome segregation at mitosis.

Aneuploidy↗

Sentinel lymph node micrometastasis and other histologic factors that predict outcome in patients with thicker melanomas.

BACKGROUND: In patients with melanoma, lymph node staging information is obtainable by the surgical techniques of lymphatic mapping and sentinel lymph node (SLN) biopsy. Although no survival benefit has been proven for the procedure, the staging information is useful in identifying patients who may benefit from further surgery or adjuvant therapy. Currently, however, it is not being recommended for patients with thick melanomas (> 3-4 mm). The risk of hematogenous dissemination is considered too great in these patients. Recent studies indicate, however, that a surprising number of patients with thick melanomas become long-term survivors, and the lymph node status may be predictive. None of the conventional microscopic features used to gauge prognosis in patients with melanoma have proven helpful in distinguishing the survivors with thick melanoma from those who will die of their disease. OBJECTIVE: Our purpose was to evaluate the influence of SLN histology and other microscopic parameters on survival of patients with thick melanomas. METHODS: A computerized patient database at the Cutaneous Oncology Clinic at H. Lee Moffitt Cancer Center was accessed to obtain records on patients with melanomas thicker than 3.0 mm (AJCC T3b). A retrospective analysis was conducted with attention paid to histologic variables, sentinel node status, and survival. Survival curves were constructed with the Kaplan-Meier method, and a Cox-Mantel rank testing was used to establish statistical significance. RESULTS: Between 1991 and 1999, 201 patients were diagnosed with melanoma thicker than 3.0 mm, and 180 were alive at an average follow-up of 51 months. Of these, 166 were alive without disease. The mean overall and disease-free survival rates were 78% and 66%, respectively. There was a statistically significant difference in disease-free survival (3-year) between SLN-positive and SLN-negative patients (37% vs 73%, respectively; P =.02). The overall survival (3-year) for the SLN-positive patients was less than the node-negative patients (70% vs 82%), but it was not statistically significant (P =.08). The disease-free survival for patients with ulcerated lesions was less than for nonulcerated lesions (77% vs 93%, P =.05). None of the other histologic parameters studied, including Breslow thickness, Clark level, mitotic rate, or regression, had an influence on the overall or disease-free survival in this group of patients with thick tumors. CONCLUSIONS: The results indicate that the SLN node status is predictive of disease-free survival for patients with thick melanomas. A surprising number of patients in the study were free of disease after prolonged follow-up. None of the histologic features of the primary tumor were helpful in predicting outcome, except for ulceration. SLN biopsy appears to be justified for prognostic purposes in patients with thick melanomas.

Disease-Free Survival↗

In vivo regulation of the beta-myosin heavy chain gene in hypertensive rodent heart.

The main goal of this study was to examine the transcriptional activity of different-length beta-myosin heavy chain (beta-MHC) promoters in the hypertensive rodent heart using the direct gene transfer approach. A hypertensive state was induced by abdominal aortic constriction (AbCon) sufficient to elevate mean arterial pressure by approximately 45% relative to control. Results show that beta-MHC promoter activity of all tested wild-type constructs, i.e., -3500, -408, -299, -215, -171, and -71 bp, was significantly increased in AbCon hearts. In the normal control hearts, expression of the -71-bp construct was comparable to that of the promoterless vector, but its induction by AbCon was comparable to that of the other constructs. Additional results, based on mutation analysis and DNA gel mobility shift assays targeting betae1, betae2, GATA, and betae3 elements, show that these previously defined cis-elements in the proximal promoter are indeed involved in maintaining basal promoter activity; however, none of these elements, either individually or collectively, appear to be major players in mediating the hypertension response of the beta-MHC gene. Collectively, these results indicate that three separate regions on the beta-MHC promoter are involved in the induction of the gene in response to hypertension: 1) a distal region between -408 and -3500 bp, 2) a proximal region between -299 and -215 bp, and 3) a basal region within -71 bp of the transcription start site. Future research needs to further characterize these responsive regions to more fully delineate beta-MHC transcriptional regulation in response to pressure overload.

Animals↗

Effects of different activity and inactivity paradigms on myosin heavy chain gene expression in striated muscle.

The goal of this mini-review is to summarize findings concerning the role that different models of muscular activity and inactivity play in altering gene expression of the myosin heavy chain (MHC) family of motor proteins in mammalian cardiac and skeletal muscle. This was done in the context of examining parallel findings concerning the role that thyroid hormone (T(3), 3,5,3'-triiodothyronine) plays in MHC expression. Findings show that both cardiac and skeletal muscles of experimental animals are initially undifferentiated at birth and then undergo a marked level of growth and differentiation in attaining the adult MHC phenotype in a T(3)/activity level-dependent fashion. Cardiac MHC expression in small mammals is highly sensitive to thyroid deficiency, diabetes, energy deprivation, and hypertension; each of these interventions induces upregulation of the beta-MHC isoform, which functions to economize circulatory function in the face of altered energy demand. In skeletal muscle, hyperthyroidism, as well as interventions that unload or reduce the weight-bearing activity of the muscle, causes slow to fast MHC conversions. Fast to slow conversions, however, are seen under hypothyroidism or when the muscles either become chronically overloaded or subjected to intermittent loading as occurs during resistance training and endurance exercise. The regulation of MHC gene expression by T(3) or mechanical stimuli appears to be strongly regulated by transcriptional events, based on recent findings on transgenic models and animals transfected with promoter-reporter constructs. However, the mechanisms by which T(3) and mechanical stimuli exert their control on transcriptional processes appear to be different. Additional findings show that individual skeletal muscle fibers have the genetic machinery to express simultaneously all of the adult MHCs, e.g., slow type I and fast IIa, IIx, and IIb, in unique combinations under certain experimental conditions. This degree of heterogeneity among the individual fibers would ensure a large functional diversity in performing complex movement patterns. Future studies must now focus on 1) the signaling pathways and the underlying mechanisms governing the transcriptional/translational machinery that control this marked degree of plasticity and 2) the morphological organization and functional implications of the muscle fiber's capacity to express such a diversity of motor proteins.

Animals↗

The treatment of scoliosis in muscular dystrophy using modified Luque and Harrington-Luque instrumentation.

We have treated 101 patients with scoliosis secondary to muscular dystrophy over a 13-year period; 64 had Duchenne's muscular dystrophy, 33 spinal muscular atrophy and four congenital muscular dystrophy. The patients underwent a modified Luque (87) or Harrington-Luque instrumentation (14) combined with a limited Moe fusion in all except 27 cases. A mean of 13 levels was instrumented. The mean preoperative sitting Cobb angle was 84 degrees (10 to 150) and the mean postoperative angle 40 degrees (52% correction). Most patients (96%) were able to discard their braces and there was a high level of patient satisfaction (89.6%). Less correction was seen for severe curves, and there was a greater recurrence of postoperative pelvic tilt in those patients not instrumented to the sacrum. Although the incidence of minor or temporary complications was high, these occurred chiefly in the early high-risk patients with very severe curves and considerable pre-existing immobility.

Adolescent↗

Leishmanial antigens in the diagnosis of active lesions and ancient scars of American tegumentary leishmaniasis patients.

Cutaneous biopsies (n = 94) obtained from 88 patients with American tegumentary leishmaniasis were studied by conventional and immunohistochemical techniques. Specimens were distributed as active lesions of cutaneous leishmaniasis (n = 53) (Group I), cicatricial lesions of cutaneous leishmaniasis (n = 35) (Group II) and suggestive scars of healed mucosal leishmaniasis patients (n = 6) (Group III). In addition, active cutaneous lesions of other etiology (n = 24) (Group C1) and cutaneous scars not related to leishmaniasis (n = 10) (Group C2) were also included in the protocol. Amastigotes in Group I biopsies were detected by routine histopathological exam (30.2%), imprint (28.2%), culture (43.4%), immunofluorescence (41.4%) and immunoperoxidase (58.5%) techniques; and by the five methods together (79.3%). In Group II, 5.7% of cultures were positive. Leishmanial antigen was also seen in the cytoplasm of macrophages and giant cells (cellular pattern), vessel walls (vascular pattern) and dermal nerves (neural pattern). Positive reaction was detected in 49 (92.5%), 20 (57%) and 4 (67%) biopsies of Groups I, II and III, respectively. Antigen persistency in cicatricial tissue may be related to immunoprotection or, on the contrary, to the development of late lesions. We suggest that the cellular, vascular and neural patterns could be applied in the immunodiagnosis of active and cicatricial lesions in which leishmaniasis is suspected.

Adult↗

In vitro and in vivo extrapolations of genotoxin exposures: consideration of factors which influence dose-response thresholds.

The concept of a threshold of activity of a genotoxic agent is primarily based upon considerations of protective mechanisms and multiple cellular targets, which require inactivation before a toxic response is produced. In this paper, we have considered and evaluated the influences of compound metabolism, DNA lesion formation, mutation induction and sequence content, aneuploidy induction and the influence of repair enzymes upon genetic endpoints produced by both DNA reactive chemicals and by those chemicals which modify non-DNA cellular targets. Thresholds of activity have been evaluated by critical analysis of the published literature and original data analysing both the role of sequence context upon point mutation induction and DNA repair mechanisms upon the sensitivity of cultured cells to the induction of aneuploidy. In the case of DNA reactive chemicals, the presence of a threshold of chemical activity will be dependent upon cellular activities such as those of the Phase II enzymes reducing the activity of chemicals before lesion formation takes place and/or those of the DNA repair enzymes which reduce the proportion of DNA lesions which are processed into DNA sequence changes. Under such conditions, a given exposure of a DNA reactive chemical does not produce a linear or semi-linear increase in DNA lesions or in mutation frequency. However, even when these protective mechanisms are overwhelmed by the high exposures of genotoxic chemicals the biological effects of a genotoxin may be influenced by the sequence context of the gene under consideration. Here, we demonstrate that point mutations are detected at relatively higher frequencies in the non-coding introns compared with the coding exons. Many of the base changes detected in the exons do not produce amino acid changes in the proteins coded for by the genes being monitored for mutation induction. Both sequence context and the types of base changes induced may provide a "buffering" effect reducing the biological consequences of mutation induction. Spindle damaging chemicals, such as colcemid and vinblastine, induce aneuploidy by modifying the numbers of spindle fibres which regulate the segregation of chromosomes during mitosis and meiosis. The redundancy of spindle fibres in the dividing mammalian cell leads to the prediction that only chemical exposures which damage most, if not all, of the fibres will lead to the induction of polyploidy and/or aneuploidy. Such predicted thresholds of chemical activity can be observed when both chromosome loss and non-disjunction are measured in wild type cultures. However, we observed a substantial increase in sensitivity to aneugenic chemicals when measurements were made in primary cell cultures derived from xerodoma pigmentosum and trichothiodystrophy patients. Further studies are necessary to evaluate the consequences of the genetic background of tester strains upon the nature of the dose-response curve of aneugenic chemicals.

1,2-Dimethylhydrazine↗

Clinical relevance of molecular staging for melanoma: comparison of RT-PCR and immunohistochemistry staining in sentinel lymph nodes of patients with melanoma.

OBJECTIVE: To determine the clinical significance of a molecular assay based on the reverse transcriptase polymerase chain reaction (RT-PCR) for the presence of micrometastatic melanoma cells in sentinel lymph nodes (SLNs). SUMMARY BACKGROUND DATA: Routine histologic examination of lymph nodes often underestimates the presence of micrometastatic disease. The authors have previously shown that an RT-PCR assay designed to detect melanocyte-specific expression of the tyrosinase gene could be used to define a population of patients at higher risk for both recurrence and death compared with routine hematoxylin and eosin (H&E) histology. In this study, the authors used the tyrosinase RT-PCR assay in a patient population examined by a more detailed histologic analysis, including S-100 immunohistochemistry. METHODS: Patients underwent lymphatic mapping and SLN biopsy. SLN specimens were bivalved, and half of each specimen was serially sectioned and examined by routine H&E histology and S-100 immunohistochemistry. The other half of each specimen was analyzed by a nested RT-PCR assay. RESULTS: Hematoxylin and eosin histology detected metastatic disease in 36 (16%) of the 233 patients tested. S-100 immunohistochemistry detected micrometastatic disease in another 16 patients, and 114 (63%) of 181 patients with histology-negative nodes had positive findings on RT-PCR. There were significant differences between PCR-positive and PCR-negative patient groups in Breslow thickness, Clark level, and the presence of ulceration of the primary tumor, factors that have been shown to correlate with recurrence and survival. CONCLUSIONS: These results suggest that RT-PCR can increase the sensitivity of detection of metastatic melanoma cells in SLNs over the current standard methods, including H&E histology and S-100 immunohistochemistry. Further long-term follow-up is needed to detect actual differences in recurrence and overall survival.

Adult↗