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Biomedical subjects

L Rappaport

Publications and source records attributed to L Rappaport.

At least 73 records · Page 4Linked to original sources

[Remission of left ventricular hypertrophy of hypertensive origin. Experimental data].

Left ventricular hypertrophy is an adaptation of the cardiac fibre to the imposed mechanical overload. This adaptation is quantitative; increased numbers of contractile units with decreased wall stress. Qualitative changes in genomic expression allow the hypertrophied cardiac fibre to develop a normal active tension at the expense of its maximal shortening velocity. These changes are preceded by the temporary expression of proto-oncogenes, of genes of the proteins of thermal shock and by reorganisation of the cytoskeleton, all possible candidates of the regulation of the gene expression in cardiac hypertrophy. In the long-term, the hypertrophy becomes harmful: inadequate subendocardial vascular development; the lowering of the Vmax is beneficial at cellular level but eventually affects cardiac output; ventricular compliance decreases with the development of fibrosis; changes in calcium metabolism are arrhythmogenic. Modifying, prolonging and improving the natural process of adaptation is clearly the first therapeutic objective in order to decrease the hypertension and cause the hypertrophy to regress. Propranolol acts by reducing the cardiac work load. However, betablockers have the disadvantage of increasing the relative density of the subendocardial collagen. Rilmenidine decreases the quantity and density of the collagen. Vasodilators and diuretics induce regression of the myocytic hypertrophy by lowering the threshold of adaptation of these cells, but they have no effect on collagen synthesis. Angiotensin converting enzyme inhibitors which have been shown to be beneficial in controlling hypertension, induce a decrease in the hypertrophy of the myocytes and reduce fibrosis.

Cardiomegaly↗

Effects of theophylline on behavior and learning in children with asthma.

This study examined the potential side effects of theophylline on behavior, attention, memory, and fine motor function in children with asthma. Seventeen children of normal intelligence who were intermittent theophylline users were recruited. Each was not taking medication at the initiation of the study. During the study, each child took the study medication (Theo-Dur tablets, 14 to 16 mg/kg per day or their usual dose, whichever was higher, or placebo) divided every 12 hours for 3 1/2 days (seven doses). A double-blind crossover design was employed such that each subject was randomly assigned to a group receiving theophylline/placebo or placebo/theophylline. After the first period, subjects were tested on a neuropsychological battery designed to assess cognitive performance, while the children, parents, and teachers filled out questionnaires concerning behavior and attention. The same procedure was repeated two weeks later (period 2) under the opposite drug condition. Data were analyzed by means of an analysis of variance, with time (period 1 vs period 2 [performance]) as a repeated measure and medication group as a between-subjects factor. Dependent variables consisted of 27 measures of performance, behavior, and attention. Only one of the 27 analyses revealed a significant group by time interaction. This analysis suggested a significant improvement in memory while taking theophylline; however, a different form of the same test showed no effect. Children and parents also completed a side-effects scale under both drug conditions. When the children were taking theophylline, parents and children noted that the children had more stomachaches and children noted more "shaking hands." The following observations suggest that the failure to find significant behavioral side effects while taking theophylline is not due to the relatively small sample size: (1) Almost all of the analyses fell far short of statistical significance, with findings indicating no trends toward poor performance while taking medication. (2) Correlations between the theophylline level and change in performance clustered around zero, with positive and negative values occurring with about equal frequency. (3) Neither parents nor children could accurately guess the child's medication condition. Thus, although there have been numerous reports on the behavioral side effects of theophylline, such reactions were not revealed in this study.

Asthma↗

Signal and adaptational changes in gene expression during cardiac overload.

Chronic cardiac overload stimulates various quantitative and qualitative mechanisms of adaptation, some of them being species-specific. The signals responsible for these changes in gene expression are still speculative, nevertheless early modifications of the microtubular network have been reported. Soon after overload an increased expression of various genes coding for regulatory proteins has also been observed, this includes various oncogenes and the genes of several heat-shock proteins. Hypertrophy only, is non species-specific and is adaptational because it both multiples the number of contractile units and it lowers wall stress. The slowing of the shortening velocity allows the heart to produce normal tension, at a lower cost, and has different biological explanations depending on the species. In small rodent ventricles, the main but probably not the unique, determinant of this physiological parameter is an isomyosin shift from a high ATPase activity form V1 to a low activity form V3, discovered in our laboratory in 1979. This shift has a transcriptional origin and also occurs in atria in every mammalian including humans; nevertheless it has not been evidenced in the ventricles of humans, dog, cat or guinea-pig. In these species it is necessary to take into account other mechanisms, namely those involved intracellular calcium movements. The number of total, and possibly active, calcium channels is normal in rat overloaded heart suggesting that their synthesis is activated commensurate to the development of hypertrophy. The situation is more complex for other sarcolemma proteins such as the beta-adrenergic system and the Na+, K(+)-ATPase. For the latter there is presently some evidence that an isoenzymatic shift is likely to occur, at least in rats.

Adaptation, Physiological↗

The school-age child: putting it all together.

The school-age period offers many opportunities to the pediatrician for creative, interesting evaluations and interventions. Many problems are not apparent in bold colors but rather in muted pastels. Often we are aware of an at-risk status, but let it ride because there are other more acute concerns going on with children in infancy and adolescence. Awareness of the consolidation of growth, the coordination of cognitive and other functions and the establishment of self-awareness and self-esteem during this period should help pediatricians focus their efforts on ensuring that the children's physical, cognitive, and psychological foundations are built firmly and maintained solidly. Far from being a period of "latency," school age is a critical era in the development of children, and pediatricians have a responsibility to participate actively in that development.

Child↗

Atrial natriuretic factor gene expression in rat ventricle during experimental hypertension.

Activation of atrial natriuretic factor (ANF) gene expression has been reported in the rat ventricle in several models of hemodynamic overload, including hypertension. However, nothing is known about the potential trigger(s) and the time course of this activation during the development of hypertension. We measured aortic blood pressure, left ventricular hypertrophy (LVH), and left ventricular ANF mRNA concentration (LV ANF mRNA) in a first group of rats (study A) killed at 5 and 18 h and 2, 4, 6, 9, 15, and 30 days after suprarenal coarctation of the abdominal aorta. Coarctation induced a progressive rise in aortic blood pressure and left ventricular mass. We observed a biphasic accumulation of ANF mRNA in the left ventricle with a peak at day 4 averaging 20 times the control value long before stable hypertension and hypertrophy were achieved, followed by a decrease until day 9. This decrease was followed by a new rise, which stabilized around 10 times the control value seen during stable hypertension and hypertrophy. In a second group of rats killed at days 4 and 30 (study B), we determined, in addition to the previous parameters, left ventricular end-diastolic pressure (LVEDP), plasma renin (PRC), and plasma ANF concentrations. LVEDP and PRC were markedly increased at day 4, but at day 30, during stable hypertension and hypertrophy, these parameters returned to control values, whereas plasma ANF was increased. Using immunocytochemistry, we looked in a third group of rats (study C) for the presence of the immunoreactive peptide at days 4 and 30.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Nonsynchronous accumulation of alpha-skeletal actin and beta-myosin heavy chain mRNAs during early stages of pressure-overload--induced cardiac hypertrophy demonstrated by in situ hybridization.

The development of cardiac hypertrophy secondary to pressure overload is accompanied by isoformic changes of contractile proteins such as myosin and actin. 35S-Labeled complementary RNA (cRNA) probes and in situ hybridization procedures were used for analysis of the regional distribution of newly formed transcripts from alpha-skeletal actin (alpha-sk-actin) and beta-myosin heavy chain (beta-MHC) genes during the early stages of pressure overload. The study was performed in 25-day-old rats submitted to a thoracic aortic stenosis and killed after surgery at times ranging from 4 hours to 3 days. Neither alpha-sk-actin nor beta-MHC messenger RNA (mRNA) was detected in the hearts of normal and sham-operated animals. However, alpha-sk-actin mRNA accumulated throughout the entire left ventricle as early as 4 hours after aortic stenosis, and by 12 hours was also detected in the left atrium. In contrast, beta-MHC mRNA was hardly detectable before day 1, and by days 2-3 was mainly restricted to the inner part of the left ventricle and around the coronary arteries. The absence of spatial and temporal coordination in the accumulation of alpha-sk-actin and beta-MHC mRNAs indicates that different signals and/or regulatory mechanisms are implicated in the induction of the two genes in response to hemodynamic overload.

Actins↗

A review of the renin-angiotensin system in the normal heart.

This review describes the vascular and cardiac tissue renin-angiotensin system (RAS), a so-called autocrine hormonal system as opposed to the circulating endocrine system. The existence of this autocrine system is suggested by the persistence of elevated concentrations of angiotensin II (Ang II) following binephrectomy. There is considerable evidence to support the concept of an autocrine RAS, but the functional aspects of such a system remain controversial: (a) Cultured endothelial cells from blood vessels can, for example, synthesize renin, but angiotensinogen messenger RNA (mRNA) is only present in perivascular adipocytes. (b) In the myocardium, there are obviously problems raised depending on the animal species considered: only rats apparently lack ventricular RAS, but tissue RAS is present in their atrial and conducting tissue system. In other species such as rabbit, the situation is quite different. In addition to the inotropic effect of Ang II, it has recently been demonstrated that this substance may determine the expression of the cardiac genome (oncogenes).

Animals↗

Recurrent abdominal pain: theories and pragmatics.

Although recurrent abdominal pain is a common complaint occurring in approximately 15% of school-age children, 90% of these children do not appear to have disease process that explains the pain. On the other hand, serious and life-threatening pediatric illnesses can present with recurrent abdominal pain as their only symptoms. This article proposes a clinical approach designed to identify those children with active disease processes, and presents a review of the current models proposed to explain the other 90% of children with recurrent abdominal pain. The objective of this review is to help pediatricians to minimize the morbidity associated with and the trauma caused by the evaluation of this common symptom in childhood.

Abdomen↗

School functioning and disease severity in boys with hemophilia.

There have been few recent studies investigating the scholastic progress of children with hemophilia. The advent of PL94-142, which ensures an appropriate educational program based on a child's specific learning disabilities, and home Factor VIII therapy, which increases the hemophiliac's school attendance and sense of freedom and control, might have had a positive impact on the academic performance of these patients. We investigated past and current educational functioning of 26 boys with hemophilia, using both parental and teacher reports. Twenty-two of these children were administered reading and math achievement tests. Results indicate that school absenteeism is a continuing problem for these children, with the average hemophiliac missing 18 school days in an academic year (median = 11 school days missed); one child had missed 77% of the year. Although these boys had normal intelligence and made average grades in school, six of the 22 tested performed more than two grade levels below expectations in reading and 10 performed greater than two grade levels below expectations in math. School underachievement did not necessarily correlate with disease severity (as indicated by serum factor level), school absenteeism, or grade point average. Although eight parents indicated that their children had past or current school problems, and teachers reported that greater than 50% of the group received special tutoring or classes for learning disabled students, six out of 22 (27%) performed below expectations in either math or reading and yet had no current individual educational remediation plan.(ABSTRACT TRUNCATED AT 250 WORDS)

Absenteeism↗

Phenylephrine, vasopressin and angiotensin II as determinants of proto-oncogene and heat-shock protein gene expression in adult rat heart and aorta.

The expression of two oncogenes (conc) c-myc and c-fos, coding for nuclear proteins which play a regulatory role in growth and differentiation, and of two genes coding for two heat shock proteins (HSP) 68 (molecular weight 68,000) and 70 (molecular weight 70,000), which have a protective function during stress, have been investigated by Northern blot analysis of the total RNA, extracted from adult rat ventricle and aorta. (1) The two onc transcripts are absent from these tissues but their expression can be enhanced by a pretreatment with cycloheximide. (2) The HSP70 is, in part, constitutive, while HSP68 is not; both are thermo-inducible in an isolated coronary perfused rat heart. (3) The four messenger RNA (mRNA) are expressed in both ventricles and aorta, 1 or 2 hours after i.p. injection of 6 mg/kg phenylephrine or 12 IU/kg of vasopressin. (4) They are also induced by a continuous or discontinuous injection of angiotensin II (7.5 micrograms/kg per min) for 1-2 h, but only in the aorta. The lack of ventricular response to angiotensin II in rat ventricles has been attributed to the lack of angiotensin II receptors in this tissue. This indicates that, in addition to mechanical factors, circulating hormones which have in common the use of the phosphoinositol pathway, may activate the expression of genes coding for regulatory proteins. This may play a role in the genesis of both ventricular and aortic hypertrophy.

Angiotensin II↗

Storage of phosphorylated desmin in a familial myopathy.

The quantity and the electrophoretic characteristics of desmin were analyzed in a familial skeletal muscle disorder, characterized by the intra-sarcoplasmic accumulation of an electron-dense granulo-filamentous material facing the Z-lines and reacting strongly with polyclonal anti-desmin antibodies. The analysis was performed on biopsies from the deltoid muscles of 4 patients, members of 2 families. In the 4 biopsies, an increase in the relative amount of desmin compared to that of actin or insoluble proteins (3 fold) and in the number of isovariants (6 instead of 3) was observed. The isovariants of desmin were similar to those described in Purkinje fibres of the heart as a phosphorylated form of the protein [(1987) Eur. J. Cell Biol. 44, 68-78]. Therefore, post-translational events could affect both the polymerization and the amount of desmin filaments in this autosomal dominant familial myopathy.

Adult↗

Striated muscle overload.

In response to increasing demand, cardiac muscle develops several adaptational mechanisms. Gene expression is modified: the heart hypertrophies and its structure changes in order to improve the efficiency of the contraction. The sarcomere modifications are both species and tissue specific. An isoenzymic shift of myosin from the high ATPase activity form V1 to the slow activity form V3 occurs in all conditions where V1 is initially predominant, i.e. rat (and also rabbit) ventricles and the atria of other species, including humans. The isoenzymic shift was not observed in conditions where V3 is predominant, as in human (and also cat and pig) ventricles. Similar changes are observed in skeletal muscle suggesting that the primary determinant of these modifications is not dependent on the innervation but only on the mechanical activity.

Adult↗

Synthesis of stress proteins in rat cardiac myocytes 2-4 days after imposition of hemodynamic overload.

Isolated adult myocytes incubated with [35S]methionine were used to study the expression of proteins in the rat heart during the first 2 wk after either pressure or volume overload. In both models an early (2-4 d) and transient expression of three major stress proteins (heat shock protein [HSP] HSP 70, HSP 68, and HSP 58) was observed together with an increased synthesis of putative ribosomal proteins. Only traces of 35S-labeled HSPs were detected in controls and sham-operated animals. The three stress proteins were identified by their migration in two-dimensional gels, by comigration with HSPs, which had been induced in myocytes by incubation at 41 degrees C and immunoblot analysis using antisera directed against the 70-kD protein. Immunohistochemical staining of HSP 70 in rod-shaped myocytes and detection by immunoblot showed that HSP 70 was equally present and distributed in both sham-operated and overloaded hearts, and provided no evidence for a subpopulation of myocytes acutely involved in the increased expression of HSP 70. It is suggested that the transient expression of HSPs that occurs during the early adaptation of the myocardial cells to overload could confer some degree of protection to the actively growing myocytes.

Animals↗

Characterization of a cytosolic triiodothyronine binding protein in atrium and ventricle of rat heart with different sensitivity toward thyroid hormone levels.

Cytosolic T3-binding protein (CTBP) has been identified in both the ventricle and atrium of adult rat hearts. Its biochemical characteristics and concentration have been determined in the two tissues as a function of thyroid hormone level. In both tissues association and dissociation constants were, respectively, k+1 = 1.3 x 10(8) M-1/min and k-1 = 0.025 min-1. Scatchard analysis of T3 equilibrium binding data revealed a single class of binding sites (Ka = 3.8 x 10(8) M-1). The maximal binding capacity (MBC) was 1400 fmol/mg protein in the ventricle and 730 fmol/mg protein in the atrium. The apparent mol wt of CTBP, determined by gel filtration, was 63.000. Among the thyroid hormone analogs tested in ventricular cytosol, D-T3 had the highest affinity, followed by L-T3, L-T4, 3,3',5-triiodothyroacetic acid, and rT3. These characteristics were very similar to those previously described for rat brain, and dog and rat liver and kidney CTBP. In hypothyroid rats MBC was only increased in the atrium (50-100%); after a single injection of T4 (2 micrograms/10 g BW 3 or 18 h before death) values returned to normal in the atrium and declined in the ventricle (-35%). During postnatal development, the highest MBC value (2000 fmol T3/mg protein) was observed in atria on day 10, i.e. when the serum T4 level was still low, and in the ventricle on day 30 (4000 fmol T3/mg protein) when the serum T4 level was at its highest. Binding affinities were similar in the two tissues at all ages studied. It was twice as high in both these tissues during the first week of development than in adulthood. These results favor a thyroid hormone down-regulation of the binding capacity of CTBP that would be more sensitive to the hormone in the atrium than in the ventricle.

Aging↗

Neurodevelopmental readiness for adolescence: studies of an assessment instrument for 9- to 14-year-old children.

The Pediatric Examination of Educational Readiness at Middle Childhood (PEERAMID) is a neurodevelopmental examination for 9- to 14-year-old children. The examination was designed largely for use by developmental-behavioral pediatricians as a way of assessing certain critical developmental functions, including attention, memory, language, and motor coordination in children with school problems. Preliminary field testing of the PEERAMID was carried out in one community, and subsequently a revised version was standardized on randomly selected subjects from three communities near Boston, Massachusetts, and on groups of children from those towns said to be having significant problems at school. Additionally, the examination was used for the evaluation of 106 consecutive patients referred to the School Function Program at The Children's Hospital in Boston. Statistically significant performance differences discriminated between children with normal academic performance and those with school problems in the community as well as in the referral setting. It was discovered that children with school problems tended to have clusters of dysfunction, whereas normally achieving youngsters more often harbored no developmental dysfunctions or perhaps one or two areas of difficulty. It is believed that the PEERAMID can be a useful instrument in serving as part of a pediatric contribution to a multidisciplinary assessment in children in this age group.

Adolescent↗

Phytochrome Regulation of the Response to Exogenous Gibberellins by Epicotyls of Vigna sinensis.

The elongation rate of cowpea epicotyls from whole cowpea (Vigna sinensis) seedlings and derooted and debladed plants (explants) increased after the main light period (8-hour duration) was extended with either continuous low intensity tungsten light or brief (5 minutes) far-red (FR) irradiation. This end-of-day FR effect was reversed by red (R) irradiation suggesting the involvement of phytochrome. These results confirm and extend those obtained previously with other species. Localization studies indicate the epicotyl to be the site of the photoreceptor. Treatment of cowpea seedlings with paclobutrazol, a gibberellin (GA) biosynthetic inhibitor, abolished the FR promoted epicotyl elongation, indicating a role for GAs in this process. There was no significant difference in epicotyl elongation rates of R plus FR irradiated explants treated with GA(1) or GA(20) and R irradiated explants treated with GA(1). However, R irradiation inhibited subsequent epicotyl elongation of GA(20) treated explants. Moreover, the observation, using GC-MS, that GA(1) and GA(20) are native GAs in cowpea lends support to the concept that phytochrome may control the conversion of endogenous GA(20) to GA(1) in cowpea.

Journal Article↗

In Vitro Gibberellin A(1) Binding in Zea mays L.

The first and second leaf sheaths of Zea mays L. cv Golden Jubilee were extracted and the extract centrifuged at 100,000g to yield a supernatant or cytosol fraction. Binding of [(3)H]gibberellin A(1) (GA(1)) to a soluble macromolecular component present in the cytosol was demonstrated at 4 degrees C by Sephadex G-200 chromatography. The binding component was of high molecular weight (HMW) and greater than 500 kilodaltons. The HMW component was shown to be a protein and the (3)H-activity bound to this protein was largely [(3)H]GA(1) and not a metabolite. Binding was pH sensitive but only a small percentage (20%) appeared to be exchangeable on addition of unlabeled GA(1). Both biologically active and inactive GAs and non-GAs were able to inhibit GA(1) binding. [(3)H]GA(1) binding to an intermediate molecular weight (IMW) fraction (40-100 kilodaltons) was also detected, provided cytosol was first desalted using Sephadex G-200 chromatography. Gel filtration studies suggest that the HMW binding component is an aggregate derived from the IMW fraction. The HMW binding fraction can be separated into two components using anion exchange chromatography.

Journal Article↗