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A risk assessment for lead in birds.

Ecotoxicologists and ecologists have examined the effects of pollutants on individuals and populations largely in terms of one or only a few effects. Yet the recent trend toward a holistic approach to ecological risk assessment suggests that a rigorous paradigm should be applied to toxicants, from hazard identification to risk characterization. Recent discussions have recognized that an up-front problem formulation phase is more critical in ecological risk assessment than it is for human health risk assessment. In this article a modified environmental health risk assessment paradigm is used to examine the risk of lead to birds. This risk analysis is largely conceptual, based on laboratory and field data, and incorporates information currently available. The model expands the hazard identification phase to create a target identification phase that includes the identification of receptors, endpoints, relationships, spatial and temporal scales, and indicators. The target identification phase is unique to the particular hazard, species, population, or community being examined. Lead can cause mortality, or can indirectly affect populations through effects on the food base, avian behavior, reproductive success, and recruitment. Lead can (1) decrease the abundance and availability of prey, (2) bioaccumulate in prey causing increased lead toxicosis in predators, or (3) increase prey availability by interfering with its hiding or escape behavior. Moreover, lower abundance of prey can lead to starvation or nutrient deficiencies, which amplify the absorption and retention of lead. Lead also causes decreases in clutch and egg size, mortality of embryos and nestlings, depression of growth, and deficits in behavior that affect survival. Lead decreases migratory behavior, and increases vulnerability to cold stress, hunters, and other predators. Research needs for evaluating the risk of lead in birds include obtaining data on (1) metal dynamics within various tissues as a function of dose and time since initial exposure, (2) low-level effects on embryos, (3) effects on chicks following fledging and in the period prior to recruitment, (4) effects on adult foraging skills and reproductive behavior, and (5) the relationship between effects from exposure in the laboratory and those from exposure in the wild. This latter point is extremely important, particularly if wild birds have other means of ridding the body of lead not available or less apparent to laboratory birds.

Animals↗

Co-expression of estrogen and thyroid hormone receptors in individual hypothalamic neurons.

Estrogen receptors (ER) and thyroid hormone receptors (TR) are members of the nuclear receptor family of transcription factors that induce or repress the expression of target genes. Previous behavioral studies in female rodents have demonstrated that thyroid hormones can antagonize the effects of estrogen in the central nervous system (CNS), particularly by attenuating estrogen's ability to facilitate reproductive behaviors. Additional molecular studies have suggested a mechanism for this antagonism by showing that ligand-activated ER alpha and TRs have the potential to interact in their transcriptional controls. Although the expression patterns of ER alpha and TRs in the rodent brain appear to overlap in behaviorally relevant areas, it remained to be determined whether these two classes of proteins coexist in vivo at the level of single neurons. To address this possibility, we employed a highly sensitive double-label in situ hybridization technique using digoxigenin and (35)S-labeled cRNA probes to analyze, in detail, the expression of ER alpha mRNA with TR alpha 1 and TR alpha 2 mRNAs in the same neurons of the ovariectomized (OVX) adult mouse brain. Our results demonstrate that a large majority of the ER alpha-positive neurons also expresses TR alpha 1 and TR alpha 2 mRNAs. Quantitative examination of the cellular expression in the ventromedial and arcuate nuclei of the hypothalamus (VMH and Arc) showed that 81.5% and 80.5% of the neurons endowed with ER alpha mRNA also contain TR alpha 1 and TR alpha 2 mRNAs, respectively. In the amygdala, more than 60.5% and 67% of ER alpha-positive cells also contain TR alpha 1 and TR alpha 2 mRNAs, respectively. These findings provide the first anatomical evidence that ER and TR can be found in the same neurons, including hypothalamic neurons. This coexpression of ER alpha and TR provides the cellular basis for a new level of neuronal integration in a brain region where estrogens control female reproductive behaviors.

Amygdala↗

Ejaculatory abnormalities in mice with targeted disruption of the gene for heme oxygenase-2.

Nitric oxide (NO) is well established as a neurotransmitter in the central and peripheral nervous systems. More recently, another gas, carbon monoxide (CO) has also been implicated in neurotransmission. In the nervous system CO is formed by a subtype of heme oxygenase (HO) designated HO2. HO2 is localized to discrete neuronal populations in the brain resembling localizations of soluble guanylyl cyclase, which is activated by CO. CO may also function in the peripheral autonomic nervous system, in conjunction with NO. The majority of ganglia in the myenteric plexus possess both HO2 and neuronal NO synthase (NOS). Defects in myenteric plexus neurotransmission occur both in mice with targeted deletion of genes for HO2 and neuronal NOS. HO2 also occurs in other autonomic ganglia including the petrosal, superior cervical and nodose ganglia. Neuronal NOS is localized to neurons regulating male reproductive behavior, such as penile erection, and NOS inhibitors prevent erection. Because of the other parallels between NO and CO, we speculated that CO may play a role in male reproductive behavior. In the present study we describe HO2 localization in neuronal structures regulating copulatory reflexes. Reflex activity of the bulbospongiosus muscle, which mediates ejaculation and ejaculatory behavior, is markedly diminished in mice with targeted deletion of the gene for HO2 (HO2-).

Animals↗

Effects of the organophosphorus pesticide fenitrothion on behavior and reproduction in zebra finches.

Activity was significantly altered in zebra finch pairs orally dosed with fenitrothion insecticide at rates of 1.04 and 3.80 mg/kg. Both the level and the dirunal pattern of activity were affected. Recovery of normal activity required 1-2 days, depending on the dosage administered. Fenitrothion had only a slight effect on reproduction when parents were dosed at the egg-laying stage of the breeding cycle. The implications of these results for the interpretation of field monitoring studies are discussed.

Analysis of Variance↗

[Feeding behavior and reproduction of Stenophthalmus wagneri Tifl., 1928 (Stenophthalmidae, Siphonaptera) under experimental conditions].

Under laboratory conditions at 20 to 21 degrees C young imagos of C. wagneri proceed quickly to feeding and reproduction. They suck blood about three times a day and females oviposit three times, each laying consisting of three eggs. When placed in a refrigirator at 2 to 5 degrees some young individuals lay eggs, while others do not start oviposition up to 5 months (observation period). Fleas, which already laid eggs under laboratory conditions, being transferred into a refrigerator decrease the degree of their attachment to the host and feeding frequency (up to one time a day). Oogenesis of females is inhibited and most of them cease egg laying.

Age Factors↗

Estrogen and endogenous opioids regulate CCK in reproductive circuits.

This review focuses on the interaction of estrogen with the cholecystokinin (CCK) and endogenous opioid peptide systems in the medial preoptic nucleus, and how these interactions result in alterations of a stereotypic female reproductive behavior--lordosis. The medial preoptic nucleus is an integral part of a circuit controlling lordosis that extends from the limbic system through the hypothalamus. Estrogen alters the integration of sensory information in the circuit that results in the display of sexually receptive behavior. Estrogen determines the activity of CCK and endogenous opioid peptide systems through regulation of expression, release and interaction with specific receptors. Studies of each system individually have indicated that they are pivotal to the expression of lordosis. Recent studies demonstrate an estrogen-dependent interaction between endogenous opioid and CCK systems that control reproductive behavior.

Animals↗

[Effect of p-chlorophenylalanine on rat reproduction under different conditions of lighting (author's transl)].

Reproduction in female rats kept on artificial cycles of light/darkness, continuous lighting and continuous darkness, has been studied. Three weekly doses of p-chlorophenylalanine (p-CPA), 100 mg/kg, were given to half of the rats in each group during the two preconditioning months before copulation. An evaluation has been made of the insemination, fecundation, number of embryos, ovarian cycle and level of 5-HT in the hypothalamus. The administration of p-CPA had an inhibitory effect on the reproductive behavior, especially pronounced in rats kept under continuous lighting and under continuous darkness. The difference in 5-TH levels were greater among the groups kept on cycles of light/darkness without treatment and with p-CPA (0.05 greater than P greater than 0.01). The importance of 5-HT in the mechanisms of reproductive behavior is emphasized.

Animals↗

Preoptic projections to Barrington's nucleus and the pericoerulear region: architecture and terminal organization.

The medial preoptic area (MPO), a sexually dimorphic region, plays a pivotal role in neuroendocrine function and reproductive behavior. We recently reported that MPO projects heavily to the midbrain periaqueductal gray (PAG). We also noted that MPO projects to the dorsolateral pontine tegmentum. Here we identified the cells of origin of the MPO-->tegmental projection and delineated the terminal organization of MPO projections to Barrington's nucleus, locus coeruleus (LC), and the rostromedial pericoerulear region (pLCrm). Correlative cyto- and chemoarchitectonic studies were done to define better the nuclear groups of the dorsolateral pontine tegmentum. Retrograde tracing revealed that MPO neurons projecting to the dorsolateral pontine tegmentum are preferentially distributed in distinct subregions of MPO, including the sexually dimorphic medial preoptic nucleus (MPN). Anterograde tracing with wheat germ agglutinin-horseradish peroxidase or Phaseolus vulgaris leucoagglutinin demonstrated considerable target specificity in projections from MPO to the dorsolateral pontine tegmentum. Barrington's nucleus receives a dense focal input along its entire rostrocaudal axis. In addition, pLCrm is heavily targeted by MPO inputs; pLCrm contains a concentrated plexus of extranuclear dendrites of LC neurons. The lateral dorsal tegmental (LDT) nucleus and LC proper receive only sparse input from MPO. MPO projections to Barrington's nucleus could regulate micturition reflexes during reproductive behavior. The MPO-->pLCrm projection could influence noradrenergic LC neurons in relation to reproductive and/or gonadal steroid function. Given the strong established connections from olfactory structures to MPO, it is possible that the MPO-->LC pathway provides an anatomical substrate for olfactory modulation of arousal.

Animals↗

Endocrine changes associated with spawning behavior in male kokanee salmon (Oncorhynchus nerka) and the effects of anosmia.

This study examines the relationship between social status, behavioral activity, and hormone levels through the spawning cycle in male kokanee salmon (Oncorhynchus nerka). Shortly after arrival at the spawning grounds, male kokanee undergo dramatic changes in morphological and physiological condition: there is an increase in body depth, a bright silvery appearance is replaced by an intense red coloration, and spermiation commences. Males become associated with nesting females which they defend against other males. The androgens, testosterone and 11-ketotestosterone, decline slowly over the spawning period from high levels observed in the silvery males; gonadotropin (GtH II) and 17 alpha, 20 beta-dihydroxy-4-pregnen-3-one increase as males approach final maturation. Androgen and GtH levels in males placed in pens with females over the spawning bed were higher than those in males penned without females. Among males competing for females, amounts of milt and plasma concentrations of GtH were higher in those males that were successful in gaining access to nesting females. A marked reduction in milt and plasma hormones following cauterization of the olfactory nares indicates that olfactory stimuli play a role in mediating endocrine and spermiation responses to the nesting females. Anosmic males were less vigorous and persistent in their courtship, suggesting that, either a female pheromone and/or high levels of hormone are necessary to maintain full reproductive behavior in male kokanee. The role of socially induced hormone changes in modulating reproductive behavior is discussed.

Animals↗

Premature delivery and subsequent reproduction.

To examine the relationship between premature delivery and subsequent reproductive behavior, we attempted to trace 100 mothers four years after the birth of a surviving preterm or term infant. Seventy mothers were successfully traced. Maternal age, ethnicity, gravidity, parity, religion, and socioeconomic status, and the sex, birthweight, gestational age, mode of delivery, and hospital days of the index infant were jointly related to three outcome measures: occurrence of subsequent pregnancy, and, among those who again became pregnant, pregnancy interval and number of subsequent children. Among women who had one or more subsequent births during the follow-up period, those whose index infants were of lower gestational age had fewer subsequent births (r = 0.602, df = 32, p less than 0.011). No other variables, including cesarean birth, were significantly related to later reproductive behavior. These findings indicate that the birth of a premature infant may have a significant effect of decreasing or delaying subsequent reproduction. Through confirmatory studies are needed, awareness of this relationship may help obstetric perinatologists and neonatologists sensitively discuss plans for contraception and further childbearing with women who have experienced the stress of the birth of a premature infant.

Black or African American↗

Effects of alpha-methyl-para-tyrosine on monoamine levels in the Japanese quail: sex differences and testosterone effects.

Experiments were performed to obtain more information on the regulation by steroids of catecholaminergic systems in the brain of Japanese quail. Dose-response and time-response experiments were first performed to determine optimal conditions for measuring turnover in the quail brain. The norepinephrine and dopamine turnover were then estimated in microdissected brain nuclei of birds that were either sexually mature or gonadectomized or gonadectomized and treated with testosterone. Two major facts that bear direct relationship with the control of masculine reproductive behavior were demonstrated. On one hand, the dopamine turnover in the medial preoptic nucleus, a sexually dimorphic brain structure which is critically implicated in the control of copulatory behavior was much higher in male than in female quail irrespective of the hormonal condition of the birds. On the other hand, norepinephrine concentrations appeared to be higher in several nuclei of the female brain by comparison with males. These sex differences might represent part of the causal factors that underlie the sex dimorphism in reproductive behavior in quail.

Analysis of Variance↗

Localization of galanin and its binding sites in the quail brain.

Avian galanin was first isolated from the chicken intestine, and subsequently we isolated the same peptide from the quail oviduct. Galanin is known to be a multifunctional peptide in the neuroendocrine system in mammals, while little information is available for the galanin action in the central nervous system in birds. In the present study, therefore, we examined the presence and the localization of galanin and its binding sites in the quail brain. The binding of [125I]iodo-avian galanin to brain tissues specifically inhibited as a function of the concentrations of unlabeled avian galanin. In all of the observed brain regions, the number of galanin-binding sites when compared on the basis of unit weight was maximal in the interbrain including the preoptic and hypothalamic regions and minimal in the cerebellum. The Scatchard plot analysis of the galanin binding to the interbrain revealed that the apparent equilibrium constant of dissociation (Kd) was 0.281 (95% confidence interval, 0.234-0.351) nM, suggesting the presence of a single class of high-affinity binding sites. Although galanin-like immunoreactivity was found in several restricted regions throughout the brain, the most intense immunoreaction was present in the diencephalic region. Abundant immunoreactive cell bodies and/or fibers were localized in several preoptic and hypothalamic nuclei, i.e., the nucleus preopticus medialis (POM), the nucleus paraventricularis (PVN), the nucleus periventricularis hypothalami (PHN) and the nucleus infundibuli (IN), that are known to be involved in the control of reproductive behaviors as well as the pituitary hormone secretion. A substantial number of immunoreactive cell bodies and/or fibers was further observed within the septal nuclei in the telencephalon and several mesencephalic nuclei including the nucleus intercollicularis (ICo) involved in the control of vocalizations. These results suggest that avian galanin may act as an important factor to modulate the some reproductive behaviors and/or the pituitary hormone secretion in the bird.

Amino Acid Sequence↗

Circulating gonadal steroid hormones regulate estrogen receptor mRNA in the male rat forebrain.

In male rats, the conversion of testosterone to estrogen via aromatization is a critical step in a number of androgen-mediated functions, especially reproductive behavior. Within the central nervous system (CNS), locally formed estrogen binds to its cognate estrogen receptor protein. Little is known about what factors regulate the expression of estrogen receptors in the male rat CNS. This study examined whether circulating male gonadal steroid hormones have a role in the regulation of estrogen receptor mRNA in brain regions critical for the expression of male reproductive behavior. Male rats were gonadectomized or sham operated, and 3 days later were sacrificed. Their brains were fixed by perfusion, frozen, and sectioned. Tissue sections were hybridized to an 35S-labeled 850 base cDNA probe, complementary primarily to the steroid binding domain of the estrogen receptor mRNA. Following post-hybridization washes, slides were dipped in photographic emulsion and exposed for 2 weeks. Estrogen receptor mRNA-containing neurons were observed in all brain regions previously shown by steroid hormone autoradiography to concentrate estrogen. Gonadectomy did not alter the number of estrogen receptor mRNA-producing neurons, but did produce a two-fold increase in the relative amount of estrogen receptor mRNA per cell in the medial preoptic nucleus, periventricular preoptic area, and bed nucleus of the stria terminalis. This study shows that circulating gonadal steroids down-regulate steady state levels of estrogen receptor mRNA within specific brain regions, and thereby have the potential to regulate the sensitivity of particular target regions in the CNS to estrogen.

Animals↗

Sexual behaviors and reproductive health outcomes: associations with wife abuse in India.

CONTEXT: Wife abuse has been associated with a variety of health concerns. Associations between abuse and reproductive health in India are not well known. OBJECTIVE: To examine relationships between men's reports of wife abuse and reproductive health issues in northern India. DESIGN: Structured face-to-face interviews were conducted as part of the male reproductive health supplement of the PERFORM System of Indicators Survey, a systematic multistage survey conducted in 1995-1996. SETTING: The northern state of Uttar Pradesh, one of the least developed states in India. PARTICIPANTS: A total of 6632 married men aged 15 to 65 years who lived with their wives and completed all survey questions for the study variables reported here. MAIN MEASURES: Physically and sexually abusive behaviors toward wives, sexual activities outside marriage, sexually transmitted disease (STD) symptoms, contraception use, unplanned pregnancies, and sociodemographic characteristics. RESULTS: Fifty-four percent of men reported not abusing their wives, while 17% reported physically but not sexually abusing their wives, 22% reported sexual abuse without physical force, and 7% reported sexual abuse with physical force. Abuse was more common among men who had extramarital sex (for sexual abuse using force: odds ratio [OR], 6.22; 95% confidence interval [CI], 3.98-9.72). Similarly, men who had STD symptoms were more likely to abuse their wives (with current symptoms: OR, 2.43; 95% CI, 1.73-3.42). Unplanned pregnancies were significantly more common among wives of abusive men, especially sexually abusive men who used force (OR, 2.62; 95% CI, 1.91-3.60). CONCLUSIONS: Wife abuse appears to be fairly common in northern India. Our findings that abusive men were more likely to engage in extramarital sex and have STD symptoms suggest that these men may be acquiring STDs from their extramarital relationships, thereby placing their wives at risk for STD acquisition, sometimes via sexual abuse. These abusive sexual behaviors also may result in an elevated rate of unplanned pregnancies.

Adolescent↗