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M Segal

Publications and source records attributed to M Segal.

At least 37 records · Page 2Linked to original sources

Monthly docetaxel and weekly gemcitabine in metastatic breast cancer: a phase II trial.

BACKGROUND: Docetaxel and gemcitabine are active against breast cancer. The purpose of this phase II study was to evaluate the efficacy and safety of monthly docetaxel combined with weekly gemcitabine in patients with chemotherapy-pretreated metastatic breast cancer. PATIENTS AND METHODS: Thirty-nine patients were enrolled, of whom thirty had received prior chemotherapy in the adjuvant setting, seven for metastatic disease, and two for both, including prior anthracycline in 33 patients. Treatment was gemcitabine 800 mg/m2 days 1, 8, 15 and docetaxel 100 mg/M2 on day 1, with cycles repeated every four weeks. RESULTS: Response rate was 79% (95% confidence interval (CI): 63%-91%), with 2 complete and 29 partial responses. Twenty-five of the responders remained progression-free for more than six months. Median survival was 24.5 months. Delivered dose intensity of gemcitabine was lower than expected (63% of planned). The predominant hematologic toxicity was grade 4 neutropenia in 36 patients, complicated by fever in three patients. With the exception of asthenia, severe non-hematological toxicities were infrequent. CONCLUSIONS: Monthly docetaxel, combined with weekly gemcitabine, has significant but manageable hematologic toxicity. Despite frequent dose adjustments, this doublet is very active in metastatic breast cancer, producing a high proportion of durable responses associated with favorable survival.

Adult↗

Mec1p regulates Pds1p levels in S phase: complex coordination of DNA replication and mitosis.

Genetic evidence suggests that the securin Pds1p is the target of a late-S-phase checkpoint control. Here we show that Pds1p becomes essential once two-thirds of the genome has been replicated and that the coupling of the completion of genome replication with mitosis relies on the regulation of Pds1p levels. Mec1p is needed to maintain Pds1p levels under S-phase checkpoint conditions. In contrast, Rad53p and Chk1p, needed for the stabilization of Pds1p in the context of the G2 DNA-damage checkpoint pathway, are dispensable. Thus, the Pds1p-dependent late-S-phase checkpoint pathway couples replication with mitosis but is mechanistically distinct from the G2 DNA-damage checkpoint. Finally, we show that the inhibition of spindle elongation in early S phase, controlled by the Mec1p/Rad53p branch, is not regulated via Pds1p/Esp1p. This can mechanistically explain the need for branched S-phase checkpoint controls.

Cell Cycle Proteins↗

Neurotrophins act at presynaptic terminals to activate synapses among cultured hippocampal neurons.

We have recently demonstrated that embryonic E16 hippocampal neurons grown in cultures are unable to form fast synaptic connections unless treated with BDNF or NT-3. This experimental system offers an opportunity to define the roles of neurotrophins in processes leading to formation of functional synaptic connections. We have used ultrastructural and electrophysiological methods to explore the cellular locations underlying neurotrophin action on synaptic maturation. The rate of spontaneous miniature excitatory postsynaptic currents (mEPSCs) evoked by hyperosmotic stimulation was 7-16-fold higher in neurotrophin-treated cells than in controls. In addition, the potent neurotransmitter-releasing drug alpha-latrotoxin was virtually ineffective in the control cells while it stimulated synaptic events in neurotrophin-treated cells. Likewise, the membrane-bound dye FM1-43 was taken up by terminals in neurotrophin-treated cultures five-fold more than in controls. Both the total number and the number of docked synaptic vesicles were increased by neurotrophin treatment. Activation of synaptic responses by neurotrophins occurred even when postsynaptic glutamate receptors and action potential discharges were pharmacologically blocked. These results are consistent with a presynaptic locus of action of neurotrophins to increase synaptic vesicle density which is critical for rapid synaptic transmission. They also suggest that neurotrophins can activate synapses in the absence of pre- and postsynaptic neuronal activity.

2-Amino-5-phosphonovalerate↗

Relationship between airway inflammation, hyperresponsiveness, and obstruction in asthma.

BACKGROUND: Although the role of eosinophils in airway inflammation in chronic asthma has been extensively studied, a role for neutrophils has not been well characterized. Furthermore, prior studies have not systematically sought or controlled for factors that might confound the relationship between cellular markers of inflammation and physiologic measures of airway function. OBJECTIVE: The purpose of this study was to determine whether eosinophilic and neutrophilic inflammation independently contribute to abnormalities of airway function in asthma. METHODS: Multivariate analysis of data collected during screening and enrollment of 205 asthmatic adults for clinical trials was conducted to examine the relationships between cellular inflammation in induced sputum and FEV(1) and methacholine responsiveness (PC(20)) while confounding factors were controlled for. RESULTS: We found that age, sex, ethnicity, and use of inhaled corticosteroids were important confounding factors of the relationship between cellular inflammation and airway function. When these factors were controlled for, multivariate analysis showed that eosinophil percentage in induced sputum is independently associated with lower FEV(1) and lower PC(20) (P = .005 and P = .005, respectively). In the same models, increased sputum neutrophil percentage is independently associated with lower FEV(1) (P = .038) but not with PC(20) (P = .49). CONCLUSIONS: These results suggest that both eosinophilic inflammation and neutrophilic inflammation independently contribute to abnormalities of FEV(1) in asthma. Therapies directed specifically at control of neutrophilic inflammation might be useful in improving airway caliber in patients with chronic asthma.

Adult↗

Dosage suppressors of pds1 implicate ubiquitin-associated domains in checkpoint control.

In budding yeast, anaphase initiation is controlled by ubiquitin-dependent degradation of Pds1p. Analysis of pds1 mutants implicated Pds1p in the DNA damage, spindle assembly, and S-phase checkpoints. Though some components of these pathways are known, others remain to be identified. Moreover, the essential function of Pds1p, independent of its role in checkpoint control, has not been elucidated. To identify loci that genetically interact with PDS1, we screened for dosage suppressors of a temperature-sensitive pds1 allele, pds1-128, defective for checkpoint control at the permissive temperature and essential for viability at 37 degrees C. Genetic and functional interactions of two suppressors are described. RAD23 and DDI1 suppress the temperature and hydroxyurea, but not radiation or nocodazole, sensitivity of pds1-128. rad23 and ddi1 mutants are partially defective in S-phase checkpoint control but are proficient in DNA damage and spindle assembly checkpoints. Therefore, Rad23p and Ddi1p participate in a subset of Pds1p-dependent cell cycle controls. Both Rad23p and Ddi1p contain ubiquitin-associated (UBA) domains which are required for dosage suppression of pds1-128. UBA domains are found in several proteins involved in ubiquitin-dependent proteolysis, though no function has been assigned to them. Deletion of the UBA domains of Rad23p and Ddi1p renders cells defective in S-phase checkpoint control, implicating UBA domains in checkpoint signaling. Since Pds1p destruction, and thus checkpoint regulation of mitosis, depends on ubiquitin-dependent proteolysis, we propose that the UBA domains functionally interact with the ubiquitin system to control Pds1p degradation in response to checkpoint activation.

Amino Acid Sequence↗

Quantitative analysis of MR images in asphyxiated neonates: correlation with neurodevelopmental outcome.

BACKGROUND AND PURPOSE: MR imaging has been shown to be of prognostic significance in the evaluation of asphyxiated neonates. The purpose of this project was to determine whether the use of intensity ratios in key regions of the brain might better detect regions of injured brain and thus improve the correlation of imaging findings with 12-month neurodevelopmental outcome. METHODS: Prospectively acquired MR studies of 53 asphyxiated neonates were reviewed retrospectively. Signal intensities from standard T1- and T2-weighted images of seven major brain regions that are affected in asphyxia were measured. Intensity ratios were calculated by dividing the signal intensity of each brain region by the signal intensity of the ocular vitreous. The intensity ratios were then correlated with 12-month neurodevelopmental outcome. These results were compared with correlations determined by a qualitative scoring system. RESULTS: The only significant statistical correlation between the intensity ratios and 12-month neurodevelopmental outcome were those of anterior watershed injury with the Mental Development Index of the Bayley Scales of Infant Development II. The qualitative measurements showed a strong correlation with many outcome parameters. CONCLUSION: Standard qualitative assessment is more predictive of neurodevelopmental outcome than is quantitative analysis. This finding most likely reflects the inability of the quantitative assessment of intensity ratios to compensate for the day-to-day evolution of signal intensity of the injured neonatal brain. Anterior watershed injury may be predictive of abnormal cognitive outcome; examination of these patients at age 30 months will be important to determine the accuracy of this observation.

Asphyxia Neonatorum↗

Brain and CSF entry of the novel non-nucleoside reverse transcriptase inhibitor, GW420867X.

(S)-2-ethyl-7-fluoro-3-oxo-3, 4-dihydro-2H-quinoxaline-carboxylic acid isopropylester (GW420867X) inhibits HIV-1 reverse transcriptase and could be used for the treatment of HIV infection. This study quantified the movement of [14C]GW420867X into the CNS by means of a guinea-pig brain perfusion technique. Results indicated that [14C]GW420867X can enter the brain (Kin: 38.4+/-7.7 microl min(-1) g(-1)) and cerebrospinal fluid (CSF; Kin: 1.2+/-0.1 microl min(-1) g(-1)). Self-inhibition studies also suggested the presence of a saturable transport system for [14C]GW420867X at the blood-brain barrier (BBB). Thus [14C]GW420867X can enter the brain via the BBB and, compared with the blood-CSF barrier, this route is the predominant pathway for the brain entry of this drug. This would suggest that GW420867X is a promising drug for the treatment of HIV infection within the brain.

Animals↗

Coordinated spindle assembly and orientation requires Clb5p-dependent kinase in budding yeast.

The orientation of the mitotic spindle along a polarity axis is critical in asymmetric cell divisions. In the budding yeast, Saccharomyces cerevisiae, loss of the S-phase B-type cyclin Clb5p under conditions of limited cyclin-dependent kinase activity (cdc28-4 clb5Delta cells) causes a spindle positioning defect that results in an undivided nucleus entering the bud. Based on time-lapse digital imaging microscopy of microtubules labeled with green fluorescent protein fusions to either tubulin or dynein, we observed that the asymmetric behavior of the spindle pole bodies during spindle assembly was lost in the cdc28-4 clb5Delta cells. As soon as a spindle formed, both poles were equally likely to interact with the bud cell cortex. Persistent dynamic interactions with the bud ultimately led to spindle translocation across the bud neck. Thus, the mutant failed to assign one spindle pole body the task of organizing astral microtubules towards the mother cell. Our data suggest that Clb5p-associated kinase is required to confer mother-bound behavior to one pole in order to establish correct spindle polarity. In contrast, B-type cyclins, Clb3p and Clb4p, though partially redundant with Clb5p for an early role in spindle morphogenesis, preferentially promote spindle assembly.

CDC28 Protein Kinase, S cerevisiae↗

Structure-function relations in dendritic spines: is size important?

The recent use of novel high-resolution imaging methods of living neurons in vitro has led to a change in the view of the dendritic spine, from a stable, long-term memory storage device to that of a dynamic structure, which can undergo fast morphological changes over periods of hours and even minutes. While the functional significance of these changes in spine dimensions is still obscure, we have obtained evidence to indicate that the length of the spine has a critical role in determining the degree of interaction between the spine head and the parent dendrite, such that longer spines are more independent of the parent dendrite than the short ones. We have now studied the role of intracellular calcium stores in determining the magnitude and time course of spine responses to a calcium surge evoked in response to glutamate, which causes an influx of calcium, and the results indicate that spine morphology has an important role in determining the involvement of the stores in calcium responses. Since spines can change their length over a rather short time, these results indicate that changes in spine length serve to fine-tune the interaction between the spine head and the parent dendrite on a continuous basis.

Calcium↗

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Journal Article↗

The efficacy of oral deferiprone in acute iron poisoning.

Due to its high cost and need for parenteral administration, the standard iron chelator deferoxamine is not used in many individuals with acute and chronic iron poisoning worldwide. Deferiprone is the first oral iron chelator to be shown to be effective in chronically iron overloaded thalassemia patients. Its efficacy, by oral administration, in acute iron poisoning has not been tested. Our objective was to determine whether orally administered deferiprone can reduce the mortality of rats following acute, toxic, oral doses of iron. Rats were administered 612 mg/kg elemental iron orally, corresponding to LD50 in the species tested. Two other groups received the same oral dose of iron followed by oral deferiprone: 800 mg/kg and 800 mg/kg, followed by another dose of 800 mg/kg 2 hours later. Coadministration of 800 mg/kg deferiprone with the iron decreased mortality from 30% to 6.6% after 2 hours (P = .02), from 40% to 16.6% after 12 hours (P = .04), and from 53.3% to 20% after 24 hours (P = 0.007). Mortality was also significantly decreased among animals coadministrated 2 repeated doses of deferiprone of 800 mg/kg with iron, to 0%, 9%, and 18%, and 2, 12, and 24 hours postdrug administration, respectively (P = .04, .05, .04, respectively). Histologically, there was a dose-dependent decrease in iron accumulation in the gastrointestinal tract. Orally administered deferiprone can decrease morbidity and mortality caused by acute iron overdose in rats. Oral deferiprone holds promise in the treatment of iron poisoning in humans.

Acute Disease↗

Dendritic spines shaped by synaptic activity.

A recent series of exciting observations, using novel high-resolution time-lapse imaging of living cells, has provoked a major shift in our understanding of the dendritic spine, from a stable storage site of long-term memory to a dynamic structure that undergoes rapid morphological variations. Through these recent observations, the molecular mechanisms underlying spine plasticity are beginning to emerge. A common mechanism involving changes in intracellular Ca(2+) concentration may control both the formation/elongation and the pruning/retraction of spines. Spine motility may be instrumental in the formation of synapses, may contribute to the anchoring/removing of glutamate receptors at spine heads, and may control the efficacy of existing synapses.

Animals↗

Legal considerations in group practices and physician management.

Physicians are restructuring their practices in response to competition, managed care, and federal and state laws and regulations restricting their practice of medicine. Many physicians have formed group practices with the hope of selling this practice in the future. For physicians to profit from ancillary services, the group practice must meet federal and state requirements. If physicians choose to sell the group practice to a physician practice management company, careful review and negotiation of the purchase agreements are necessary to prevent complications if the arrangement is unsuccessful.

Group Practice↗

Synovial chondromatosis: the possible role of FGF 9 and FGF receptor 3 in its pathology.

Primary synovial chondromatosis (PSC) is a rare disorder of the synovium typified by cartilaginous nodule formation within the synovial membrane. Fibroblast growth factor receptor 3 (FGFR3) is a recently described specific marker of mesenchymal precartilaginous stem cells. Expression patterns of FGFR3 and its specific ligand, fibroblast growth factor 9 (FGF 9), were evaluated both in situ and in cell cultures. Histologically, cells at the periphery of the cartilage nodules express FGFR3 and PCNA (proliferating cell nuclear antigen). Elevated levels of FGF 9, its specific ligand, have been found in synovial fluids of patients with synovial chondromatosis. Synoviocytes but not chondrocytes from affected patients express FGF9 in culture. This pattern is absent in normal synovium and cartilage. Downregulation of FGF9 may provide a possible nonoperative therapy for PSC.

Cartilage, Articular↗

Inflammatory fibroid polyp and Helicobacter pylori. Aetiology or coincidence?

OBJECTIVE: To evaluate our incidence of inflammatory fibroid polyps, compare our experience with that of others, and to analyze the possible pathophysiological and aetiological factors. DESIGN: Retrospective review. SETTING: Teaching hospital. MATERIAL: All histopathological slides of the gastrointestinal tract. MAIN OUTCOME MEASURES: Incidence and treatment in our Medical Center and elsewhere. RESULTS: We could find only one case of inflammatory fibroid polyp, an estimated incidence of 1/4000. Between 1987-1996 only 331 were reported elsewhere, most of which (293, 88.5%), were located in the stomach. CONCLUSION: Primary mucosal damage can expose the stroma to several irritants (chemical, mechanical and biological), that may subsequently cause inflammatory fibroid polyps in certain people.

Amoxicillin↗

Bud6 directs sequential microtubule interactions with the bud tip and bud neck during spindle morphogenesis in Saccharomyces cerevisiae.

In budding yeast, spindle polarity relies on a precise temporal program of cytoplasmic microtubule-cortex interactions throughout spindle assembly. Loss of Clb5-dependent kinase activity under conditions of attenuated Cdc28 function disrupts this program, resulting in diploid-specific lethality. Here we show that polarity loss is tolerated by haploids due to a more prominent contribution of microtubule-neck interactions to spindle orientation inherent to haploids. These differences are mediated by the relative partition of Bud6 between the bud tip and bud neck, distinguishing haploids from diploids. Bud6 localizes initially to the bud tip and accumulates at the neck concomitant with spindle assembly. bud6Delta mutant phenotypes are consistent with Bud6's role as a cortical cue for cytoplasmic microtubule capture. Moreover, mutations that affect Bud6 localization and partitioning disrupt the sequential program of microtubule-cortex interactions accordingly. These data support a model whereby Bud6 sequentially cues microtubule capture events at the bud tip followed by capture events at the bud neck, necessary for correct spindle morphogenesis and polarity.

CDC28 Protein Kinase, S cerevisiae↗

FMRP involvement in formation of synapses among cultured hippocampal neurons.

Fragile-X, the main cause of inherited human mental retardation is associated with the absence of a recently identified fragile-X mental retardation protein (FMRP). Mice in which this protein is lacking due to a knockout (KO) mutation are reported to express altered dendritic spines on their cortical neurons compared with wild type (WT) controls. We have used tissue-cultured neurons to examine differences in morphology and synaptic connectivity between WT and FMRP-deficient mice. Hippocampal neurons taken from KO mice and grown in culture for 3 weeks have shorter dendrites and fewer dendritic spines than their WT counterparts. Also, KO cells tend to express fewer functional synaptic connections, which develop more slowly and produce smaller excitatory synaptic currents than WT controls. These observations may have important implications for the understanding of mental retardation associated with the absence of FMRP.

Animals↗