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Biomedical subjects

A Mansouri

Publications and source records attributed to A Mansouri.

At least 55 records · Page 3Linked to original sources

Hepatotoxicity due to mitochondrial dysfunction.

Mitochondria are involved in fatty acid beta-oxidation, the tricarboxylic acid cycle, and oxidative phosphorylation, which provide most of the cell energy. Mitochondria are also the main source of reactive oxygen species in the cell and are involved in cell demise through opening of the mitochondrial permeability transition pore. It was therefore to be expected that mitochondrial dysfunction could be a major mechanism of drug-induced liver disease. Microvesicular steatosis (which may cause liver failure, coma, and death) is the consequence of severe impairment of mitochondrial beta-oxidation. Endogenous compounds (such as cytokines or female sex hormones) or xenobiotics (including toxins such as ethanol and drugs such as aspirin, valproic acid, ibuprofen, or zidovudine) can inhibit beta-oxidation directly or through a primary effect on the mitochondrial genome or the respiratory chain itself. In some patients, infections and cytokines, or inborn errors of beta-oxidation enzymes or the mitochondrial genome, may favor the appearance of drug-induced microvesicular steatosis. Nonalcoholic steatohepatitis may develop under conditions causing prolonged, microvesicular, and/or macrovacuolar steatosis. In this condition, chronic impairment of mitochondrial beta-oxidation (causing steatosis) and the respiratory chain (increasing the production of ROS) lead to lipid peroxidation, which, in turn, may cause the diverse lesions of steatohepatitis, namely, necrosis, inflammation, Mallory's bodies, and fibrosis. Finally, mitochondria are involved in several forms of drug-induced cytolytic hepatitis, through inhibition or uncoupling of respiration or through a drug-induced or reactive metabolite-induced mitochondrial permeability transition. The latter effect commits hepatocytes to either apoptosis or necrosis, depending on the number of organelles that have undergone the permeability transition.

Animals↗

Plasma membrane receptor for beta-lactoglobulin and retinol-binding protein in murine hybridomas.

The aim of the present work was to study the binding of [125I]-BLGA (beta-lactoglobulin variant A) to the plasma membrane fraction of hybrid cells. This binding increased as a function of time with on-rate and off-rate constant at 4.47 +/- 0.18 x 10(6) M-1 min-1 and 0.17 +/- 0.07 min-1, respectively (n = 3). The saturation study showed a single binding site type corresponding to a Kd at 8.26 +/- 2.98 nM and 14.02 +/- 2.61 x 10(12) sites per mg of the plasma membrane protein (n = 3). Competitive of binding BLGA was observed with BLGA, complexed with retinol and also with RBP (retinol-binding protein). Gel filtration of [125I]-BLGA incubated with Triton X-100 solubilized membrane showed the formation of a ligand-receptor complex. Cross-linking of the tracer to plasma membrane showed a complex with a M(r) at 69 kDa, suggesting a receptor M(r) of 51 kDa, as seen by autoradiography of SDS-PAGE.

Animals↗

Relative effects of prolactin excess and estrogen deficiency on bone in rats.

Humans with prolactinoma are at risk for osteoporosis. The relative contributions of hyperprolactinemia-induced hypogonadism and the prolactin (PRL) excess per se have been unclear from clinical studies. To determine the effects of PRL excess, two models of chronic hyperprolactinemia were used. In one, mild hyperprolactinemia was produced in rats bearing extra anterior pituitary glands under the kidney capsule. Severe hyperprolactinemia was produced by subcutaneously transplanting the PRL-secreting MMQ tumor into other rats. To control for estrogen deficiency, the rats were ovariectomized. In some experiments, estrogen replacement was provided. Urinary calcium excretion was increased in hyperprolactinemic rats compared with controls, regardless of severity of PRL excess and estrogen status. This suggested that PRL excess itself had some effect on calcium balance. More importantly, however, the spinal bone mineral density (BMD; measured by dual-energy x-ray densitometry) of mildly hyperprolactinemic ovariectomized rats was the same as control ovariectomized rats. Similarly, tibial dry weight and ash weight were affected by the estrogen status, but not by the severe PRL excess of the tumor-implanted rats. Thus, despite the evidence for an increase in urinary calcium excretion in hyperprolactinemic rats, estrogen deficiency is much more important in determining bone mineral. Therefore, the present data indicate that the osteoporosis of hyperprolactinemia is likely due to PRL-induced hypogonadism, rather than a direct effect of PRL on calcium homeostatis.

Animals↗

Pax3 and Pax7 are expressed in commissural neurons and restrict ventral neuronal identity in the spinal cord.

Pax3 and Pax7 are transcription factors sharing high sequence identity and overlapping patterns of expression in particular in the dorsal spinal cord. Analysis of Pax3 and Pax7 double mutant mice demonstrates that both genes share redundant functions to restrict ventral neuronal identity in the spinal cord. In their absence, the En1 expression domain is expanded dorsally but that of Evx1 is not affected. In addition, Pax3 and Pax7 are expressed in commissural neurons and double mutant embryos exhibit highly reduced ventral commissure. Our findings reveal two distinct regulatory pathways for spinal cord neurogenesis, only one of which is dependent on Pax3/7 and 6.

Animals↗

Follicular cells of the thyroid gland require Pax8 gene function.

The thyroid gland develops from two distinct embryonic lineages: follicular cells (which produce thyroxine) and parafollicular C-cells (which produce calcitonin) are of endodermal and neural crest origin, respectively. Little is known about the molecular mechanisms governing the generation of these different cell types. Mice lacking the transcription factor Ttf1 lack both cell types and thus are unable to develop a thyroid gland. By analysis of Pax8-/- mice, we demonstrate that Pax8 is required for the formation of the follicular cells in the thyroid. We present evidence that Pax8 is necessary for providing cues for the differentiation of competent endoderm primordia into thyroxin-producing follicular cells.

Animals↗

The role of Pax3 and Pax7 in development and cancer.

Pax genes consist of a family of transcription factors that are essentially required for the genesis of a variety of tissues and organs. Pax3 and Pax7 are specifically expressed in the dorsal neural tube and the developing somite. Loss-of-function mutations of Pax3 in Splotch mice and in Waardenburg syndrome in man revealed that Pax3 is necessary for the proper formation of caudal neural crest derivatives and for the migration of myoblasts into the limb. Mice with a mutated Pax7 gene suffer from defects in cephalic neural crest derivatives only and indicate that both genes may functionally share some redundancy. Gain-of-function mutations creating fusion proteins consisting of PAX3 or PAX7 and another transcription factor of the forkhead family (FKHR) are associated with alveolar rhabdomyosarcomas. The analyses of Pax3 and Pax7 function in normal development indicate that Pax3 (possibly also Pax7) triggers neoplastic development by maintaining cells in a deregulated undifferentiated and proliferative state in alveolar rhabdomyosarcomas.

Animals↗

NADH-methemoglobin reductase (cytochrome b5 reductase) levels in two groups of American blacks and whites.

BACKGROUND: Sickle cell trait, glucose-6-phosphate dehydrogenase (G6PD) deficiency and alpha-thalassemia trait are common genetic abnormalities among the American Black population. Under oxidative stress, the presence of any of these conditions would predispose the hemoglobin (Hb) to oxidation resulting in accelerated methemoglobin (metHb) formation. It was hypothesized that red cells phenotypic for these genetic variants should have more or different levels of metHb reductase (cytochrome b5 reductase) activity. METHODS: To test this hypothesis, we measured the red cell metHb reductase activity in 558 male subjects (316 Blacks and 242 Whites), by the procedure described by Beutler. All Black patients also had G6PD spot test and Hb electrophoresis. In addition, all patients had a complete blood count (CBC). If the hematocrit was < 35% a reticulocyte count was also done. Patients with corrected reticulocyte (retic count X hematocrit/45) index over 2% were excluded regardless of other findings. RESULTS: The results showed that Blacks had different metHb reductase activity levels than Whites (mean = 3.19 vs 2.89 IU/gHb, respectively with p = 0.03). However, the differences in metHb reductase activities in patients with sickle cell trait, G6PD deficiency, and low MCV < 80 micron3 (presumptively having alpha-thalassemia) in small subgroups did not reach statistical significance (p = 0.2), although, all 3 groups were comprised of small numbers. CONCLUSIONS: It is concluded that American Blacks have significantly different metHb reductase activity. The different metHb reductase activity in Blacks seems to be unrelated to the presence of G6PD deficiency, sickle cell trait, or alpha-thalassemia and it may be the result of genetic polymorphism. However, our study samples do not exactly represent the cross-sections of the Black and White populations. In addition, all patients were male in this study. Therefore, this study should be confirmed using larger and more population-representative samples. The clinical significance of this problem is not clear at this time.

Adult↗

[Paratesticular malignant mesothelioma. Presentation of a case].

We report a case of malignant mesothelioma of tunica vaginalis in a 65-year-old man. The clinical course was marked by local relapse and distant metastases. Based on a review of the literature, the authors discuss the clinical, epidemiological and therapeutic aspects.

Aged↗

Retinol free and retinol complexed beta-lactoglobulin binding sites in bovine germ cells.

A high affinity specific binding site for bovine beta-lactoglobulin (BLG) was identified in bovine germ cell plasma membrane enriched fractions. Binding was found to be reversible and pH-dependent with maximum binding occurring at pH 5. The on-rate and off-rate constants were 2.26 +/- 0.8 x 10(5) M(-1) min(-1) (n = 3) and 0.016 +/- 0.004 min(-1) (n = 3), respectively. Scatchard analysis showed a single class of binding sites, with 12.38 +/- 4.62 x 10(12) sites per mg of membrane protein (n = 3) and a dissociation constant (K(D)) estimated at 26.43 +/- 2.68 nM. There was inhibition of iodinated-BLG (variant A) (125I-BLGA) binding to germ cell plasma membrane enriched fractions in the presence of unlabelled BLG variant A, BLG variant B, retinol complexed BLGA and human retinol-binding protein. Inhibition was observed neither with BSA nor with lactoferrin. 125I-BLGA incubated with a Triton X-100 solubilized plasma membrane fraction formed a high molecular mass complex in Superose 12B gel filtration. This receptor complex disappeared in the presence of unlabelled BLGA and in the presence of 10 mM EDTA. The results suggest that germ cell plasma membrane may contain a receptor which is capable of binding either retinol free or retinol complexed BLGA.

Animals↗

Pax6 is required for differentiation of glucagon-producing alpha-cells in mouse pancreas.

The functional unit of the endocrine pancreas is the islet of Langerhans. Islets are nested within the exocrine tissue of the pancreas and are composed of alpha-, beta-, delta- and gamma-cells. beta-Cells produce insulin and form the core of the islet, whereas alpha-, delta- and gamma-cells are arranged at the periphery of the islet and secrete glucagon, somatostatin and a pancreatic polypeptide, respectively. Little is known about the molecular and genetic factors regulating the lineage of the different endocrine cells. Pancreas development is known to be abolished in Pdx1-mutant mice and Pax4 mutants lack insulin-producing beta-cells. Here we show that the paired-box gene Pax6 is expressed during the early stages of pancreatic development and in mature endocrine cells. The pancreas of Pax6 homozygous mutant mice lack glucagon-producing cells, suggesting that Pax6 is essential for the differentiation of alpha-cells. As mice lacking Pax4 and Pax6 fail to develop any mature endocrine cells, we conclude that both Pax genes are required for endocrine fate in the pancreas.

Animals↗

Nasal and pharyngeal abnormalities caused by the mouse goosecoid gene mutation.

The Goosecoid (gsc) gene is a homeobox-containing gene expressed first in the gastrula, and later during organogenesis in development. The gsc gene transcript is found in the first and second branchial arches, frontonasal mass in its late phase of expression. We have previously shown that targeted mutation of the mouse gsc gene leads to neonatal death and craniofacial defects. In this study, we performed histological studies on craniofacial phenotypes in order to elucidate the processes underlying the neonatal death of gsc mutant mice. We found that gsc mutant mice have aplastic nasal cavities and lack the Sinus Paranasalis. We also showed that secretory olfactory glands in the basal layers are aplastic. This is suggested to be essential defects for olfaction. gsc mutant mice also show several pharyngeal phenotypes, including defects in the pharyngeal muscles and the pharyngeal mucosa. It is therefore suggested that mutant mice develop lethal gastro-intestinal phenotypes caused by defects in breathing and sucking of milk as a consequence of these craniofacial disorders. These results should help elucidating the molecular genetic programs essential to the neonatal development of mammals.

Animals↗

An alpha-E-catenin gene trap mutation defines its function in preimplantation development.

Catenins are proteins associated with the cytoplasmic domain of cadherins, a family of transmembrane cell adhesion molecules. The cadherin-catenin adhesion system is involved in morphogenesis during development and in the maintenance of the integrity of different tissue types. Using a gene trap strategy, we have isolated a mouse mutation for the gene encoding the alpha-E-catenin. This form of the alpha-catenin appears frequently coexpressed with E-cadherin in epithelial cell types. The mutation obtained eliminates the carboxyl-terminal third of the protein but nevertheless provokes a complete loss-of-function phenotype. Homozygous mutants show disruption of the trophoblast epithelium (the first differentiated embryonic tissue), and development is consequently blocked at the blastocyst stage. This phenotype parallels the defects observed in E-cadherin mutant embryos. Our results show the requirement of the alpha-E-catenin carboxy terminus for its function and represent evidence of the role of the alpha-E-catenin in vivo, identifying this molecule as the natural partner of the E-cadherin in trophoblast epithelium.

Animals↗

Paired-related murine homeobox gene expressed in the developing sclerotome, kidney, and nervous system.

We isolated a murine homeobox containing gene, Uncx4.1. The homeodomain sequence exhibits 88% identity to the unc-4 protein at the amino acid level. In situ hybridization analysis revealed that Uncx4.1 is expressed in the paraxial mesoderm, in the developing kidney, and central nervous system. The most intriguing expression domain is the somite, where it is confined to the caudal part of the newly formed somite and subsequently restricted to the caudal domain of the developing sclerotome. In the central nervous system, Uncx4.1 is detected in the developing spinal cord, hindbrain, mesencephalon, and telencephalon. The temporal and spatial expression pattern suggests that Uncx4.1 may play an important role in kidney development and in the differentiation of the sclerotome and the nervous system.

Amino Acid Sequence↗

Multiple hepatic mitochondrial DNA deletions suggest premature oxidative aging in alcoholic patients.

BACKGROUND/AIMS: A 4977-base pair deletion has been detected in the hepatic mitochondrial DNA of alcoholic patients with microvesicular steatosis, a lesion ascribed to impaired mitochondrial beta-oxidation. However, only a single deletion had been looked for in this previous study, and it could not be determined whether the deletion was preexisting or acquired. Alcohol abuse increases the formation of reactive oxygen species in hepatic mitochondria. If this effect accelerates the oxidative aging of mitochondrial DNA, several other mutations would be expected. METHODS: The mtDNA region extending from nucleotide 8167 to nucleotide 14246 was screened for the presence of large mitochondrial DNA deletions in 58 alcoholic patients and 67 age-matched non-alcoholic controls. Hepatic DNA was subjected to polymerase chain reactions that amplified non-deleted and deleted mitochondrial DNA, respectively, and the boundaries of the mitochondrial DNA deletions were sequenced. RESULTS: Only 3% of the non-alcoholic controls carried a mitochondrial DNA deletion, whereas 24% of all alcoholic patients and 85% of the 13 alcoholic patients with microvesicular steatosis exhibited either single or multiple 4977, 5385, 5039 and 5556-base pair mitochondrial DNA deletions. No deletion(s) were observed, however, in 13 patients with microvesicular steatosis due to other causes. CONCLUSIONS: Diverse mitochondrial DNA rearrangements are observed in alcoholic patients with microvesicular steatosis. We suggest that alcohol abuse leads to premature oxidative aging of mitochondrial DNA. Hypothetically, oxidative damage to mitochondrial constituents (DNA, proteins and lipids) may favor microvesicular fat deposition.

Adult↗

Premature oxidative aging of hepatic mitochondrial DNA in Wilson's disease.

BACKGROUND & AIMS: Aging is associated with and may be caused by acquired somatic mutations of the mitochondrial genome. In Wilson's disease, inherited mutations of a nuclear gene encoding a copper transporter cause accumulation of copper in the liver, particularly within mitochondria. Because copper has prooxidant properties and the mitochondrial genome is particularly susceptible to oxidative damage, we hypothesized that Wilson's disease may cause premature oxidative aging of mitochondrial DNA. METHODS: Hepatic DNA was screened for large mitochondrial DNA deletion(s) in 16 patients with Wilson's disease and 67 control subjects. Deleted mitochondrial DNA copies were amplified by polymerase chain reaction and were sequenced. RESULTS: Although 15 of the 16 patients with Wilson's disease were 30 years old or younger, 8 of them (50%), including the 6 patients with cirrhosis (100%), had diverse mitochondrial DNA deletions, whereas only 2 controls (3%), aged 39 and 45 years, showed a mitochondrial DNA deletion. CONCLUSIONS: Wilson's disease is associated with frequent, diverse, and early deletions of mitochondrial DNA. Accumulation of prooxidant copper within hepatic mitochondria may cause this premature oxidative aging of mitochondrial DNA. Thus, inherited mutations of a nuclear gene may cause somatic mutations of the mitochondrial genome in this condition.

Adolescent↗

Fkh5-deficient mice show dysgenesis in the caudal midbrain and hypothalamic mammillary body.

The murine winged helix gene Fkh5 is specifically expressed in the developing central nervous system (CNS). Early embryonic Fkh5 expression is restricted to the mammiliary body region of the caudal hypothalamus, midbrain, hindbrain and spinal cord. Postnatally, signals persist in specific nuclei of the mammillary body and in the midbrain. We generated Fkh5 deficient mice by homologous recombination to assess its in vivo function. At birth, Fkh5-deficient mice are viable and indistinguishable from wild-type and Fkh5 heterozygous littermates. However, about one third die within the first two days and another fifth before weaning. Surviving Fkh5-deficient mice become growth retarded within the first week and remain smaller throughout their whole life span. Fkh5-deficient females on 129Sv x C57BL/6 genetic background are fertile, but do not nurture their pups. More detailed analysis of Fkh5-deficient brains reveals distinct alterations in the CNS. In the midbrain, mutant mice exhibit reduced inferior colliculi and an overgrown anterior cerebellum. Furthermore, the hypothalamic mammillary body of Fkh5-deficient brains lacks the medial mammillary nucleus. These results suggest that Fkh5 plays a major role during CNS development.

Animals↗

[Non Hodgkin's malignant lymphoma of the uterine cervix. Apropos of a case].

The authors report a case of a 61-year-old woman presenting a primary cervical non Hodgkin's lymphoma, FIGO stage IIIA and Ann Arbor stage IE. The patient was successfully treated by combination of multiple drug therapy and pelvic external radiation therapy. Twenty-eight months later, the patient is in good general health and complete remission.

Antineoplastic Combined Chemotherapy Protocols↗

[Is fetal fibronectin a valid test predictive of premature labor?].

This study sought to determine the value of oncofetal fibronectin as predictor of preterm delivery in patients presenting with preterm labor. Patients admitted for preterm labor with intact membrane between 24 and 34 weeks gestation were included. A dacron swab applied to the external os for 10 seconds. The fetal fibronectin is detected bill a biologic membrane test. 90 patients were included. 25 (28%) had positive fetal fibronectin, and 13 (52%) had preterm delivery (specificity and positive value 81% and 52% respectively). Among 65 (72%) with negative fetal fibronectin, only 12 (18%) had preterm delivery (sensitivity 81% and negative predictive value 81%: p < 0.001). Median interval between sampling and delivery was 5 days in the positive compared to 23 in the false negative group. The presence of fetal fibronectin in the cervico-vaginal mucus strongly suggest an eminent delivery within few days after sampling. The sensitivity of the test is the 62% and still more interesting the negative predictive value is 86% (p < 0.001). The fetal fibronectin is a useful test to help the obstetrician discriminating true from false labor in patients with high risk preterm delivery. A negative test is very reassuring according to its high negative predictive value. Allowing to avoid unuseful tocolyse and long hospital.

Adult↗