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Life cycle and reproduction of house-dust mites: environmental factors influencing mite populations.

An understanding of the life cycle of house-dust mites, as well as environmental factors influencing mite populations, can be exploited in mite control. The most important limiting factor for house-dust-mite populations is air humidity. House-dust mites osmoregulate through the cuticle and therefore require a high ambient air humidity to prevent excessive water loss. In addition, the supracoxal glands actively take up ambient water vapour, and the protonynph stage of the life cycle is resistant to desiccation. Larger house-dust-mite populations are found when the absolute indoor air humidity is above 7 g/kg (45% relative humidity at 20 degrees C). Consequently, ventilation by air-conditioning systems is being developed as a means of control. A number of other aspects of the domestic environment are also being manipulated in an integrated approach to render the habitat less suitable for mites. The potential exists for developing models for house-dust mite populations, environmental characteristics, and the effects of various approaches to control.

Animals↗

A life-cycle comparison of several auxiliary blowing agents used for the manufacture of rigid polyurethane foam.

In a commitment to zero ozone depletion, the United Nations and the U.S. Environmental Protection Agency (EPA) have called for the phase-out of the manufacture and import of hydrochlorofluorocarbons (HCFCs), used as auxiliary blowing agents (ABAs) in the manufacture of polyurethane foams. As a result, more environmentally benign alternative ABAs are being sought by the foam-blowing industry. This study examined the life cycle of HCFC-22, hydrofluorocarbon-134a (HFC-134a), and cyclopentane, which are currently used or considered as potential alternative ABAs in the manufacture of rigid polyurethane foams that serve as insulation in a model North American refrigerator. The raw material extraction/refining, manufacturing, use, and disposal stages of the life cycle of each ABA were considered, and their resulting relative impacts on ozone depletion and global warming were compared. The manufacturing, use, and disposal stages were determined to affect ozone depletion and global warming to the largest extent, emphasizing the need for a greater focus on pollution prevention opportunities in these stages. The HFC-134a life cycle yields no impact on ozone depletion and a significantly decreased global warming impact compared with its predecessor, HCFC-22, and a tradeoff of slightly higher global warming impact and fewer added safety concerns compared with its more flammable counterpart, cyclopentane.

Construction Materials↗

The life cycle of Anisakis simplex in the Norwegian Deep (northern North Sea).

Copepoda (Calanus finmarchicus n = 1,722, Paraeuchaeta norvegica n = 1,955), Hyperiidae (n = 3,019), Euphausiacea (Meganyctiphanes norvegica n = 4,780), and the fishes Maurolicus muelleri (n = 500) and Pollachius virens (n = 33) were collected in the Norwegian Deep (northern North Sea) during summer 2001 to examine the importance of pelagic invertebrates and vertebrates as hosts of Anisakis simplex and their roles in the transfer of this nematode to its final hosts (Cetaceans). Third stage larvae (L3) of A. simplex were found in P. norvegica, M. muelleri and P. virens. The prevalence of A. simplex in dissected P. norvegica was 0.26%, with an intensity of 1. Prevalences in M. muelleri and P. virens were 49.6% and 100.0%, with mean intensities of 1.1-2.6 (total fish length >or=6.0-7.2) and 193.6, respectively. All specimens of C. finmarchicus and M. norvegica examined were free of anisakid nematode species and no other parasites were detected. P. norvegica, which harboured the third stage larvae, is the obligatory first intermediate host of A. simplex in the investigated area. Though there was no apparent development of larvae in M. muelleri, this fish can be considered as the obligatory second intermediate host of A. simplex in the Norwegian Deep. However, it is unlikely that the larva from P. norvegica can be successfully transmitted into the cetacean or pinniped final hosts, where they reach the adult stage. An additional growth phase and a second intermediate host is the next phase in the life cycle. Larger predators such as P. virens serve as paratenic hosts, accumulating the already infective stage from M. muelleri. The oceanic life cycle of A. simplex in the Norwegian Deep is very different in terms of hosts and proposed life cycle patterns of A. simplex from other regions, involving only a few intermediate hosts. In contrast to earlier suggestions, euphausiids have no importance at all for the successful transmission of A. simplex in the Norwegian Deep. This demonstrates that this nematode is able to select definite host species depending on the locality, apparently having a very low level of host specificity. This could explain the wide range of different hosts that have been recorded for this species, and can be seen as the reason for the success of this parasite in reaching its marine mammal final hosts in an oceanic environment.

Animals↗

Focusing pharmacoeconomic activities: reimbursement or the drug life cycle?

The purpose of this paper is to consider the role of pharmacoeconomic activities in the drug life cycle and not just as activities to support reimbursement applications and market entry. These activities are important in establishing the value case for a drug product to both internal and external audiences. Unless these activities are fully integrated into establishing the business case for a product from the pre-phase I period of drug discovery, manufacturers run the risk of establishing a unit price for the product and claims for cost-effectiveness which are inconsistent with achieving reimbursement. Importantly, manufacturers need to consider at an early stage the evidentiary and analytical needs for product evaluation under formulary submission guidelines (AMCP; NICE) and the integration of pharmacoeconomic activities over the life cycle. These activities include justifying assumptions for business opportunity assessments and an early commitment to developing a mock reimbursement submission at post-phase II. The integration of pharmacoeconomic activities in the drug cycle is not only an antidote to excessive clinical optimism but also provides the basis for an effective assessment of the likely performance of new products in the health-care market place at a price and formulary position acceptable both to the manufacturer and the reimburser.

Australia↗

The life cycle of SARS coronavirus in Vero E6 cells.

The aim of the study was to establish the life cycle of severe acute respiratory syndrome-associated coronavirus (SARS CoV) in host cells and determine the pathogenesis of SARS. Vero E6 cells (African green monkey kidney cells) were inoculated with SARS coronavirus for 3, 7, 24, 48, and 72 hr, respectively, and were observed under electron microscope. It was found that the SARS coronavirus entered the cells through membrane fusion instead of endocytosis, and then the nucleocapsids assembled in the RER and matured by budding into the smooth vesicles, which were derived from the Golgi apparatus. The smooth vesicles fused with the cell membrane, and the mature particles were released. A special phenomenon was that some virus-like particles appeared in the nucleus. We propose a scheme of the life cycle of SARS coronavirus and discuss the mechanism of its replication in Vero E6 cells.

Animals↗

Laboratory studies on the life cycle of Amblyomma marmoreum (Acari: Ixodidae) on two different hosts.

A comparative study was made of the life cycle of the tortoise tick, Amblyomma marmoreum Koch, on tortoises and guinea pigs under laboratory conditions. At 25 degrees C and 85% RH with natural day length, duration of off-host stages (preoviposition, oviposition, incubation, and premolt) was similar for ticks fed on both hosts. Delay in preoviposition (up to 90 d) was observed in some gravid females. Larvae, nymphs, and adults had longer feeding periods on tortoises than on guinea pigs. Adult females fed on tortoises had greater engorgement wieght and ovipositional capacity than ticks fed on guinea pigs. It is suggested that the shortened feeding period of immature stages on mammalian hosts together with the occurrence of morphogenic diapause may be more important than previously recognized in determining whether the life cycle of A. marmoreum is completed in 1 or 2 yr under natural conditions.

Animals↗

[Rodents trichomonads: morphology, life cycle and several ecologic features (Polymastigina)].

Some morphological and cytochemical methods were applied to the study of the life cycle of Trichomonas parasitizing the intestine of various rodents. The comparative study of trophonts morphology showed that the only species of the genus Trichomonas--T. muris inhabits the intestine of mice, rats, field-voles, hamsters and susliks. The life cycle of T. muris includes three morphologically different stages: trophonts, pseudocysts and cysts. The pseudocysts and cysts are the infectious stages of T. muris. All rodents ingest them together with their food. The cysts of T. muris can survive for a long time (6 months and more) in the environment under the conditions of various temperature and humidity.

Animals↗

Fluctuating hydrating and dehydrating relative humidities effects on the life cycle of Dermatophagoides farinae (Acari: Pyroglyphidae).

Reducing relative humidity to < 50% in homes is recommended as one means of reducing dust mite populations in the homes of those who suffer allergies to house dust mites. Because of some activities in the home (e.g., bathing, cooking, opening windows), it may not be possible to keep relative humidity constantly < 50%. We determined how the fluctuating daily regimes of hydrating (75%) and dehydrating (35%) relative humidities affected the development of Dermatophagoides farinae Hughes. The life cycle was completed (egg to adults) when mites were given regimes of 24 h at 75% RH, 8 h at 75% and 16 h at 35% RH, 6 h at 75% and 18 h at 35% RH, and 4 h at 75% and 20 h at 35% RH. The time required to complete development was inversely related to the amount of moist air given daily. Development took 58.3 +/- 1.44, 64.7 +/- 1.87, and 82.4 +/- 2.39 d for 8, 6, and 4 h of moist air daily, respectively. In comparison, the life cycle was completed in 41.1 +/- 0.50 d when development occurred at a constant 75% RH. Egg incubation time was significantly longer for fluctuating ambient relative humidity compared to a continuous 75 or 35% RH. Of the emerging larvae 53.8, 72.7, 62.7, and 85.0% completed the life cycle when given 4, 6, 8, and 24 h 75% RH daily and 35% RH for the remainder of the day. This study revealed that D. farinae can complete development when given only short periods of moist air daily but the rate of development is much slower than development at a constant 75% RH. Therefore, reducing ambient relative humidity does reduce the rate of development of mite populations and the accumulation of dust mite allergen.

Animals↗

Life cycle of connexins: regulation of connexin synthesis and degradation.

Gap-junction-forming connexins (Cx) exhibit a complex life cycle which is regulated at various levels. First, the promoter regions and binding of transcription factors to them control the transcription of the connexin genes. Translation of Cx-mRNA seems to be enabled by internal ribosome entry site elements allowing translation even under stress conditions. The newly synthetized Cx protein (monomeric) is transferred to the Golgi apparatus, oligomerized, transferred to the plasma membrane and incorporated into gap junction plaques. Two principal pathways for degradation of Cx could be defined: (a) lysosomal and (b) proteasomal degradation, including phosphorylation and ubiquitination as well as the internalization of complete gap junction channels as annular gap junctions doomed to degradation. In the present article, the various steps of the life cycle of cardiac connexins and its regulation are reviewed.

Alternative Splicing↗

Fipronil effects on estuarine copepod (Amphiascus tenuiremis) development, fertility, and reproduction: a rapid life-cycle assay in 96-well microplate format.

Fipronil is a novel gamma-aminobutyric acid receptor-specific phenylpyrazole insecticide commonly used near estuarine environments for rice production, turf-grass management, and residential insect control. In this study, we evaluated the acute, developmental, and reproductive toxicity of fipronil to the estuarine harpacticoid copepod Amphiascus tenuiremis. Fipronil was highly toxic to A. tenuiremis (adult 96-h median lethal concentration [LC50] = 6.8 microg/L) and was more toxic to male copepods (96-h LC50 = 3.5 microg/L) than to nongravid female copepods (96-h LC50 = 13.0 microg/L). By using a newly developed 96-well microplate-based life-cycle toxicity test, we successfully reared single individuals of A. tenuiremis to adulthood in 200-microl microwells and concurrently assessed developmental and reproductive effects (after paired virginal matings) of environmentally relevant aqueous fipronil concentrations (0.16, 0.22, and 0.42 microg/L measured). Throughout the entire life cycle, copepod survival in all treatments was >90%. However, fipronil at 0.22 microg/L and higher significantly delayed male and female development from stage 1 copepodite to adult by approximately 2 d. More importantly, fipronil significantly halted female egg extrusion by 71% in the 0.22-microg/L fipronil treatment, and nearly eliminated reproduction (94% failure) in the 0.42-microg/L fipronil treatment. A three-generation Leslie matrix-based population growth model of fipronil reproductive and life-cycle impacts predicted a 62% decline in population size of A. tenuiremis relative to controls at only 0.16 microg/L.

Animals↗

Family size, household production, and life cycle saving.

"Changing family size and labour-leisure choice are introduced into a life cycle model. Saving corresponds with empirical observation in some ways better, and in others worse, as a result. Changing family size reduces aggregate saving and generates substantial dissaving at peak size, indicating that bequests, uncertainty, and liquidity constraints should also be modelled. However, the age profile of consumption is humped, and labour-leisure choice produces a drop in consumption on retirement, both corresponding well with observation." (SUMMARY IN FRE)

Economics↗

Identification of life cycle stages of the nematode Echinocephalus overstreeti by allozyme electrophoresis.

Data presented in this study highlight the potential of allozyme electrophoresis in providing unequivocal genetic evidence for the identification of life cycle stages, particularly where species have complex life cycles. Adults of the nematode Echinocephalus overstreeti parasitize the elasmobranch Heterodontus portusjacksoni. The putative larval form which is morphologically dissimilar is found in two species of marine molluscs, Chlamys bifrons and Pecten albus. Electrophoretic analysis indicated that the adult and larval forms shared alleles at all of the 34 enzyme loci established. Furthermore, there were no fixed allelic differences between larval forms from different mollusc species.

Alleles↗

Fixation and regression in the family life cycle.

In spite of the obvious fact that families differ significantly depending upon their current stage of the life cycle, most of the family therapy literature focuses on intervening in ongoing family interaction without specific attention to the dimension of family development. Family sociologists, on the other hand, while not dealing with modifying family functioning, have provided more detailed tools with which to understand variations in family functioning based on stages of family development. Our work with families in acute distress suggests the need to increase the specificity with which our assessments and interventions are tailored, by incorporating the family developmental view. This paper explores the utility of the family developmental view using the concepts of fixation and regression in the family life cycle. These concepts were found to be relatively refined and quite pragmatic assessment devices that assist therapists in specifying developmental issues of the family. Case examples of actual families in crisis are presented in order to demonstrate the utility of these conceptual tools.

Adaptation, Psychological↗

Inequalities in women's health in England and Wales: mortality among married women according to social circumstances, employment characteristics and life-cycle stage.

"Data obtained from follow-up of the Office of Population Censuses and Surveys Longitudinal Study 1971 Census sample have been used to look at women's mortality differentials at ages 15-59 in England and Wales....In this paper we focus on married women and use age of youngest child as a measure of life-cycle stage. We relate this to whether the woman was a housewife, or was in full or part-time paid employment, so as to examine how these affect differences in mortality by social class. We find that socio-economic mortality differences persist irrespective of life-cycle stage.... Housewives married to men in manual occupations experienced death rates over one and a half times as high as those married to men in non-manual occupations. For women in employment the differences by husbands' social class are of a lesser magnitude.... Differences in the mortality of those in full and part-time work depend on the woman's own social class and are greater for non-manual than manual classes." (SUMMARY IN FRE AND ITA)

Demography↗

Benzoquinones in stages of the life-cycle of the cestode Spirometra mansonoides.

Ubiquinone-10 and rhodoquinone-10 were detected in stages of the life-cycle of a pseudophyllidean cestode, Spirometra mansonoides, by chromatographic, UV spectrophotometric, proton nuclear magnetic resonance spectrometric and electron impact mass spectrometric methods. Ubiquinone-10 was identified in 1-day-old eggs and coracidia, and rhodoquinone-10 in coracidia, plerocercoids and adult tapeworms. Tentative identification were also made of ubiquinone-10 in procercoids and rhodoquinone-10 in 10-day-old eggs. The roles of benzoquinones in helminth aerobic and anaerobic metabolism are discussed in relation to their distribution in stages of the S. mansonoides life-cycle.

Animals↗

Life cycle assessment in the environmental impact evaluation of urban development--a case study of land readjustment project, Hyogo District, Japan.

In this paper, the Life Cycle of Urban Development was firstly analyzed, and the phases of Life Cycle Assessment applied to Urban Development (ULCA) were described. As a case study, ULCA was applied in the environmental impact assessment of the land readjustment project of Hyogo District of Saga, Japan. In addition, mitigation proposals for reducing CO(2) were also presented and the relevant environmental effects were simulated.

Carbon Dioxide↗

Life-cycle differentiation in Trypanosoma brucei: molecules and mutants.

Differentiation between bloodstream and tsetse midgut procyclic forms during the life cycle of the African trypanosome is an attractive model for the analysis of stage-regulated events. In particular, this transformation occurs synchronously, there are well-defined markers for stage-regulated processes and cell lines with specific defects in differentiation have been identified. This combination of tools, combined with the developing Trypanosoma brucei genome database is allowing its underlying controls to be investigated at the molecular and cytological levels. This paper examines some recent discoveries that illuminate some of the key events during trypanosome life-cycle progression.

Animals↗

The life cycle of Ceratomyxa shasta, a myxosporean parasite of salmonids, requires a freshwater polychaete as an alternate host.

The actinosporean life stage of Ceratomyxa shasta, a myxozoan parasite of salmonids, and the annelid worm that serves as its alternate host were identified in laboratory transmission experiments and their roles were confirmed using molecular techniques. Infection by the parasite occurred in susceptible fish that were either exposed to or force fed the freshwater polychaete, Manayunkia speciosa, infected with the actinosporean. These observations were confirmed using the polymerase chain reaction with primers designed from the C. shasta 18S rDNA sequence. DNA was amplified from polychaetes harboring the actinosporean that caused infection in the fish but not from uninfected polychaetes. Amplified DNA from an infected polychaete was sequenced and its homology with the 18S rDNA sequence of C. shasta spores verified the proposed life cycle. Ultrastructural examination of the actinosporean in the polychaete showed developmental stages in the epidermis rather than within the intestinal epithelium as described for other myxozoans. The methods described will be useful in identifying alternate hosts and morphologically diverse life stages in the complex life cycles of other myxosporea and in understanding the relationships between these parasites and their hosts.

Animals↗