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House-dust mites and associated environmental conditions in Danish homes.

The concentration of house-dust mites (Dermatophagoides pteronyssinus) was investigated in 96 Danish homes with one or more members suffering from asthma. The air-exchange rates, humidity, and temperature were measured in all the homes. A positive correlation was found between indoor air humidity and mite concentration (P < 0.01), and an inverse correlation (P = 0.027) between house-dust mite concentration and indoor air-exchange was found. Homes of mite-allergic persons had a higher concentration of house-dust mites than did those of the non-mite-allergic group. House-dust mite concentration was above the proposed limit of 10 mites/0.1 g dust in 76% of the homes of persons allergic to mites and in 48% of the homes of nonsensitive persons. The high proportion of homes infested with house-dust mites suggests an increased prevalence of house-dust mites in Danish homes. The results support the concept that reduced ventilation in homes involves a risk of increased house-dust mite exposure.

Animals↗

Mattresses as a winter refuge for house-dust mite populations.

House-dust mites are a major source of allergens. Beds are often heavily infested. It is conceivable that, during the winter period in temperate climates, the ambient indoor air is too dry for their survival, but that mites can still survive in beds where the humidity is raised when the bed is occupied. To investigate whether house-dust mites can take advantage of daily episodes with elevated humidity to restore water balance, we exposed mites to spells of high humidity (90% relative humidity [RH]), lasting 0, 1.5, 3, 6, or 12 h, once every day, while the humidity was low (10% RH) during the rest of the time. Survival was markedly promoted when only 1.5 h of moist air per day was given. Three hours of moist air per day allowed the mites to reproduce. The same average humidity but at a constant level would have been lethal to the mites. Thus, average humidity can be misleading as an indicator of mite survival conditions. Measurements of relative humidity were made inside the foam core of a mattress and underneath the ticking. The rise of humidity occurring when the bed was occupied was often insufficient for the mites, because the temperature rose at the same time. At higher temperatures, mites required a higher relative humidity, abolishing the effect of the simultaneous rise in absolute humidity. Thus, it seems quite possible to regulate house-dust mite numbers also in beds by reducing the water content of the ambient air. The rules governing changes in temperature and humidity inside a bed may be simple enough to allow assessment of house-dust mite living conditions by measurements in the ambient air.

Animals↗

Guanine, mite, and cockroach allergens in Costa Rican homes.

Previous studies of schoolchildren in Costa Rica have shown an asthma prevalence of 23% and a high level of sensitization, particularly to mite allergens. As a continuation of these studies, some 400 dust samples were collected from various places in Costa Rica, and parts of these were analyzed for specific mite and cockroach allergens, as well as for the number of mites and amount of guanine. Guanine was quantified by a diazo, as well as an HPLC method, which were found to be highly correlated. The concentrations of guanine by the diazo method, Der p 1, Der f 1, and the number of mites were higher in bed dust than in bedroom floor dust, and it was possible to quantify mite allergens and guanine in almost all bed-dust samples. The mean levels were 2-3 times higher than the proposed risk level for elicitation of symptoms in mite-sensitive asthmatics. Bed and bedroom floor dust contained more guanine and mite allergen in humid (> 2000 mm rain) than in drier places (P < 0.05), but the number of mites in bed and bedroom floor dust was higher in less humid places (P = 0.01). The guanine content in bedroom floor dust was higher in areas with a temperate climate than in areas with a warmer climate (P < 0.001, Bartlett's chi square [BCS]), as was the number of mites (P < 0.01, Kruskal-Wallis [KW], 0.04, BCS) and the Der p 1 concentration (P = 0.01, BCS; P = 0.02, KW). The Der f 1 concentration in bedroom floor dust was higher in a warmer than in a temperate climate (P < 0.001, BCS). More guanine and mites were found in urban than in rural bed dust (P = 0.03, KW). Dust samples from the metropolitan area (temperate climate) of Costa Rica contained higher levels of guanine (P < 0.01) and Der p 1 (P = 0.07) than the coastal areas, but very little Der f 1. In these samples, guanine and Der p 1 allergen were closely related, and 2 micrograms of the allergen was equivalent to 0.49 mg of guanine. Two-thirds of bed and floor samples collected on cotton filters contained Bla g 2 allergen at mean levels of 1.6 and 2.1 units/g dust, respectively. Cockroach allergen was, however, absent in all bed samples from the metropolitan area, but did occur in very high concentrations in the coastal bed dust samples collected with tighter polyester filters. In conclusion, the concentration of guanine and Der p 1 was very high in the bed dust of Costa Rican homes. Some factors, such as humidity, small houses for large families, and type of bedding, probably favored the heavy mite infestation, which is probably related to the widespread occurrence of bronchial asthma in this country.

Allergens↗

Correlation of estimated and actual northern fowl mite populations with the evolution of specific antibody to a low molecular weight polypeptide in the sera of infested hens.

In order to demonstrate the population dynamics of the northern fowl mite (NFM), Ornithonyssus sylviarum (Canestrini and Fanzago), and to characterize the chicken's immune response to the mites, White Leghorn hens were infested with mites. Visual estimates revealed populations peaked on Wk 5, 4, and 3 after being infested with 10, 50, or about 2,000 mites, respectively. Individual feathers pulled from the vent area of hens 4 wk (28 days) after the hens were infested with either 10 or 50 mites had means of 7,513 and 7,009 mites, respectively. Estimated mean total populations of NFM on these same hens were 182,000 and 258,000, respectively. In two replications, actual counts of viable NFM following infestation with 50 mites increased ca. 10-fold by the 2nd wk after infestations were established in the feathers and then another two-fold during the 3rd wk. Populations in the 4th wk were about one-third of levels observed during the 3rd wk and continued to decline rapidly. Western blot analyses demonstrated the appearance of a mite-specific antibody in sera of White Leghorn hens that was approximately proportional in time of appearance and intensity to estimated NFM populations. Detection of mite-specific antibodies in the hens' sera continued through 12 wk of the study even though mite populations declined after 3 to 6 wk. The rapid increase and then decline of NFM following infestation in previously uninfested chickens and the fact that the immune response persisted strongly suggests that the population decline was due to an immune response. Therefore control of the mite population by a vaccine may be possible.

Animals↗

Diarrhea and acaroid mites: a clinical study.

AIM: To explore the characteristics of diarrhea caused by acaroid mites. METHODS: Acaroid mites in fresh stools of 241 patients with diarrhea were separated by flotation in saturated saline. Meanwhile, skin prick test, total IgE and mite-specific IgE were detected in all patients. RESULTS: The total positive rate of mites in stool samples of the patients was 17.01 % (41/241), the positive rates of mites in male and female patients were 15.86 % (23/145) and 18.75 % (18/96), respectively, without significant difference (P>0.05). The percentage of skin prick test as "+++", "++", "+", "+/-" and "-" was 9.13 % (22/241), 7.47 % (18/241), 5.81 % (14/241), 4.98 % (12/241) and 72.61 % (175/241), respectively. The serum levels of total IgE, mite-specific IgE in patients with and without mites in stool samples were (165.72+/-78.55) IU/ml, (132.44+/-26.80) IU/ml and (145.22+/-82.47) IU/ml, (67.35+/-45.28) IU/ml, respectively, with significant difference (P<0.01). The positive rate of mites in stool samples in staffs working in traditional Chinese medicine storehouses or rice storehouses (experimental group) was 26.74 % (23/86), which was significantly higher than that (11.61 %, 18/155) in people engaged in other professions (chi(2)=8.97, P<0.01). CONCLUSION: Acaroid mites cause diarrhea and increase serum levels of total IgE and mite-specific IgE of patients, and the prevalence of diarrhea caused by acaroid mites is associated with occupations rather than the gender of patients.

Acari↗

Sensitization to different mite species in German farmers: in vitro analyses.

Allergic airway diseases are often caused by house dust mites (HDM) and storage mites (SM), respectively, and we were recently able to demonstrate that symptomatic German farmers are frequently sensitized to different mite species. The present study aimed to obtain information on the protein and immunobiochemical characteristics of the extracts of the following mites: Dermatophagoides pteronyssinus, Dermatophagoides farinae, Acarus siro, Acarus farris, Lepidoglyphus destructor, Tyrophagus putrescentiae, Blomia tjibodas, Blomia topicalis, Blomia kulagini, Glycyphagus domesticus, Thyreophagus entomophagus, and Cheyletus eruditus. Specific IgE determinations were performed with EAST. The protein patterns of the mite extracts were studied by SDS-PAGE estimating the weighted-average molecular weights of the proteins. Using the Western blot technique, we determined the allergen pattern in several mite extracts. The allergens in each extract were classified in terms of the frequency of sensitization as major, intermediate, and minor allergens using allergograms. As already reported, a positive EAST to at least one mite was measured in 31/86 patients, and most sera were positive with several mite species. The majority of the mite extracts exhibited a very complex protein pattern according to SDS-PAGE. An allergen was found in Western blots of nearly all species equivalent to a molecular weight of 14 to 15 kD. This was, in our opinion, the first time that this particular allergen was detected in Blomia tjibodas and Glycyphagus domesticus. In conclusion, using EAST we were able to show that 36% of the German farmers tested were sensitized to SM. All mite extracts showed a complex protein pattern in the molecular weight range -95 kD to -10 kD. A common allergen band in the region of -14 to -15 kD was found in the majority of the mites studied, and it can be assumed that this corresponds with the group 2 allergen.

Adult↗

[Mites in house dust and human allergoses].

The literary data on the study of the house-dust mites during the period from 1864 till 1983 are given. The methods of the house dust samples collection in flats and the methods of the house-dust mites isolation from the house dust are evaluated. The house-dust mites fauna including more than 130 species is described. The synantropic mites-pyroglyphides are the main part of the fauna, the stored products mites and predatory cheyletid and gamasid mites occur regularly. The rest part of the fauna consists of the different mites got into house by chance. The literary data on the influence of temperature and relative humidity on the development and growth of the mite population are given. The house-dust mites feeding and digestion processes bearing relation to the formation of the mite allergen are reviewed. The original data complete the literary data on the fauna and distribution of the house-dust mites in Moscow.

Allergens↗

Storage mites as a cause of bronchial asthma in Denmark.

From October 1982 to July 1983, 133 consecutive patients complaining of allergic symptoms were prick-tested with three storage mites (Acarus siro, Lepidoglyphus destructor, Tyrophagus putrescentiae) and two housedust mites (Dermatophagoides pteronyssinus and Dermatophagoides farinae). A total of 60 patients (45%) had a positive prick-test for one or more of the storage mites. A mutual positive correlation was found between the prick-test results for the two house-dust mites as well as for the three storage mites. No significant correlation was found between house-dust mites and storage mites. Four cases of allergy to storage mites are presented. The diagnosis of storage mite allergy was based on the clinical history, prick-test, bronchial provocation test and the finding of storage mites in the environment of the patient. Our study suggests that allergies to storage mites could be rather frequent in the Danish population.

Adult↗

A study of the ecology of the house dust mite in dwelling houses.

The habitat of dust mites in dwelling houses in Japan was studied to determine the relation between mites in dust and mite allergy. Dust mites increased in the summer and decreased in the winter. Mite propagation was influenced by the temperature and relative humidity. Mites were found in higher concentrations in dust from concrete houses than that from wooden houses. Carpet dust contained numerous mites and tatami, sofas and bed mattresses were also habitats of mites. Mites existed universally in all samples of dust examined. Sensitization to mite allergen depends mainly on the atopic diathesis of patients and not on the mite count.

Animals↗

[Occurrence of housedust mites in dwellings. Relation to ventilation and humidity].

The concentration of house-dust mites (Der. spp.) was investigated in 96 Danish dwellings and bedroom air-exchange rates, humidity and temperature was measured contemporaneously in all the dwellings. A positive correlation was found between indoor air humidity and mite concentration, and an inverse correlation was found between house-dust mite concentration and indoor air-exchange. Dwellings of mite-allergic persons had a higher concentration of house-dust mites compared with those of the non-mite-allergic group. House-dust mite concentration was above the proposed limit in 76% of the homes of mite allergic persons and in 48% of the homes of non-sensitive persons. The high proportion of dwellings infested with house-dust mites, when compared with previous measurements, suggests an increased prevalence of house-dust mites in Danish dwellings. The results support the concept that reduced ventilation in dwellings involves a risk of increased house-dust mite exposure.

Air Pollution, Indoor↗

Infection of Psoroptes mites with the fungus Metarhizium anisopliae.

The astigmatid mite, Psoroptes ovis (Hering) (Acari: Psoroptidae), is an obligatory ectoparasite that causes psoroptic mange in a range of domesticated animals, particularly sheep, where the clinical disease is known as sheep scab. A series of laboratory assays were used to assess the use of the fungus, Metarhizium anisopliae (Metchnikoff) (Deuteromycotina: Hyphomycetes) as a biocontrol agent for P. ovis derived from rabbits (syn. P. cuniculi). The immersion of mites in a suspension of conidia of M. anisopliae resulted in the acquisition of fatal infections. The number of mites which developed infections increased significantly with the increasing concentration of the conidial suspension to which they were exposed; 77% of mites developed infections when exposed to the highest concentration used (1 x 10(8) conidia ml(-1)). Controls developed no fungal infections. Mites allowed simply to walk across a surface which had been treated with a suspension of conidia also acquired fungal infections; the number infected was again related to the concentration of conidia present. After contact for 24 h with a surface treated with 1 x 10(8) conidia ml(-1), 73% of the mites became infected. To determine whether dead infected mites could act as sources of infection, infected cadavers were placed in chambers with live uninfected mites. The uninfected mites acquired fatal infections from the cadavers; a higher ratio of infected cadavers to uninfected mites resulted in greater transmission of infection. The time after death of the infected cadaver was also an important factor influencing the number infected, 5-day-old cadavers were the most infective and 18-day-old cadavers the least infective. The results indicate that M. anisopliae is a good candidate control agent for Psoroptes mites.

Animals↗

Wheat curl mite (Acari: Eriophyidae) dispersal and its relationship with kernel red streaking in maize.

Wheat curl mites, Aceria tosichella Keifer, dispersing from wheat (Triticum spp.) to nearby corn (Zea mays L.) fields play a role in the development of kernel red streaking in corn. These studies were undertaken to verify the relationship of wheat curl mite to kernel red streaking, to determine whether wheat is the main source of curl mites dispersing into corn and to determine whether planting corn in temporal or spatial isolation of wheat is a valid management strategy. These studies were conducted on farm fields using sticky traps to monitor mites, followed by sampling mature grain for kernel streaking in southwestern Ontario from 1999 to 2002. The dominant source mites were winter wheat. Mite dispersal occurred during the first 3 wk of winter wheat maturation after the wheat had reached Zadoks stage 87. Mite dispersal corresponded to prevailing winds in the area with the lowest number of mites and the lowest severity of kernel red streaking occurring 60 m from wheat fields planted to the north, south, and east of cornfields and 90 m from wheat fields planted to the west of cornfields. The severity of kernel red streaking was positively correlated with the density of wheat curl mites in corn; however, the correlation was weak and kernel red streaking was still high in many cornfields when few or no mites were present. These findings suggest that wheat curl mite migration into corn is not entirely predictive of the incidence and severity of kernel red streaking.

Acari↗

House-dust mites and summer cottages.

BACKGROUND: Estimated indoor climate conditions in unheated summer cottages offers house-dust mites unfavorable temperature and feeding conditions while giving them optimum humidity conditions. We aimed to estimate the exposure level of house-dust mites in summer cottages. METHODS: A total of 37 summer cottages were sampled for house dust and storage mites in three locations and the results compared with samples from 33 patients suspected of house-dust mite allergy and living in ordinary houses. The processed dust samples were investigated by microscopy and exposure levels given as number of mites per 0.1 g dust. RESULTS: The summer cottages were without exception all heavily infested with threefold or higher concentrations of both house dust and storage mites in comparison with ordinary houses. In unheated summer cottages were found tropical high concentrations of house dust and storage mites with a median concentration of house-dust mites in mattress dust of 2000 house-dust mites/g of dust which corresponds to an average of 40 microg allergen/g of mattress dust. CONCLUSIONS: As a probable consequence of high indoor air humidity conditions in unheated summer cottages in winter, dust samples contained threefold or higher concentrations of house dust and storage mites. Indoor humidity conditions thus more than compensated for lack of continuous supply of skin scales from human beings and an unfavorable low indoor air temperature. The uniform high mite exposure in summer cottages is likely to imply disease deterioration in patients already allergic to mites.

Acaridae↗

Web-mediated interspecific competition among spider mites.

Some spider mites, such as Tetranychus spp. and Amphitetranychus spp., create complicated webs (CWs), whereas others, such as Panonychus spp., produce little webs (LWs). We verified whether interspecific competition occurred between CW and LW mites via habitat arrangement under laboratory conditions. The complicated webs produced by CW mites clearly inhibited juvenile development in LW mites, whereas there was no effect of LW mites on CW mites. In oviposition site choice tests, both CW and LW females preferred the lower surface of leaves to the upper surface. The preference of LW mites for the lower leaf surface, even in the presence of CW mite webs, suggests that the costs of amensalism are outweighed by the possible benefits, such as avoiding rain. These findings show that the shift in mite species composition from LW to CW mites can occur as a consequence of the interspecific association between spider mites via their webs, without pesticide applications or the presence of natural enemies.

Animals↗

The role of varroa mites in infections of Kashmir bee virus (KBV) and deformed wing virus (DWV) in honey bees.

To determine the roles of varroa mites in activating or vectoring viral infections, we performed quantitative comparison of viral infections between bees with and without mites by dot blot analysis and enzyme-linked immunosorbent assay (ELISA). Under natural and artificial mite infestations, bee pupae contained significantly higher levels of Kashmir bee virus (KBV) and deformed wing virus (DWV) RNAs and KBV structural proteins than mite-free pupae. Moreover, in mite-infested bee pupae, DWV had amplified to extremely high titers with viral genomic RNA being clearly visible after separation of total bee RNA in agarose gels. Linear regression analysis has shown a positive correlation between the number of mites introduced and the levels of viral RNAs. The detection of viral RNAs in the nymph and adult mites underline the possible role of varroa in virus transmission. However, most groups of virus-free adult mites (9/12) were associated with bee pupae heavily infected by viruses, suggesting that the elevated viral titers in mite-infested pupae more likely resulted from activated viral replication. Based on these observations and our concurrent research demonstrating suppressed immune responses in bees infested with mites, we propose that parasitization by varroa suppresses the immunity of honey bees, leading to activation of persistent, latent viral infection.

Animals↗

Distribution patterns of coconut mite, Aceria guerreronis, and its predator Neoseiulus aff. paspalivorus in coconut palms.

Distribution patterns and numerical variability of the coconut mite Aceria guerreronis Keifer (Acari: Eriophyidae) and its predator Neoseiulus aff. paspalivorus DeLeon (Phytoseiidae) on the nuts of 3- to 7-month-old bunches of coconut palms were studied at two sites in Sri Lanka. At the two sites, coconut mites were present on 88 and 75% of the nuts but no more than three-quarters of those nuts showed damage symptoms. N. aff. paspalivorus was found more on mature nuts than on immature nuts. Spatial and temporal distribution of coconut mites and predatory mites differed significantly. The mean number of coconut mites per nut increased until 5-month-old bunches and declined thereafter. The densities of predatory mites followed a similar trend but peaked 1 month later. Variability in the numbers of mites among palms and bunches of the same age was great, but was relatively low on 6-month-old bunches. The results indicate that assessment of infestation levels by damage symptoms alone is not reliable. Sampling of coconut and/or predatory mite numbers could be improved by using several nuts of 6-month-old bunches. The effect of predatory mites on coconut mites over time suggests that N. aff. paspalivorus could be a prospective biological control agent of A. guerreronis.

Animals↗

House dust mite fauna of tropical Singapore.

INTRODUCTION AND AIMS: Sensitization to house dust mites is very common in the tropics. This study evaluated the dust mite fauna in Singaporean homes. METHODS: A total of 134 dust samples from 50 homes were evaluated. Dust mites were isolated, identified and quantified by standard techniques. RESULTS: Dust mites were isolated from 130/134 (97%) samples, with mites identified in all samples from sofas (n = 21) and carpets (n = 13), and 49/50 (98%) and 47/50 (94%) from mattresses and bedroom floors, respectively. All samples from sofas and carpets had more than 500 mites/g compared with 47/50 (94%) and 23/50 (46%) from mattresses and floors, respectively. Blomia tropicalis was the predominant mite (62% of total mites) followed by D. pteronyssinus (16% of total mites). Eight samples had a predominance of Sturnophagoides brasiliensis and Tarsonemus granarius. Other species that accounted approximately 1% of mites identified included D. farinae, Austroglycyphagus malaysiensis, Cheyletus malaccensis, Malayoglyphus intermedius, Suidasia pontifica and Tyrophagus putrescentiae. CONCLUSION: Dust mites were highly prevalent and present in high densities in Singaporean homes with B. tropicalis being the most prevalent species.

Animals↗

Outbreak of rat mite dermatitis in medical students.

BACKGROUND: The tropical rat mite, Ornithonyssus bacoti (0. bacoti), is an ectoparasite on many rodents, but when the rodent is not available, humans may become the victim of the mite's bite. The bite induces a nonspecific dermatitis; therefore, it is not easy to diagnose rat mite dermatitis unless the parasites are found. MATERIALS AND METHODS: Ten cases of rat mite dermatitis were found in medical students who had studied in the same room of the library. Their nonspecific dermatitis consisted of small papules, and parasites were found in the skin or in the environment. The mites were collected and identified as O. bacoti, female. Histopathologic studies showed moderate perivascular lymphohistiocytic infiltrations intermingled with some eosinophils. The presence of rodents in or around the room was confirmed by the students, but there had been no preceding rodent eradication. Although the rats were not captured in the library, insecticides were sprayed, and no further problem with either mites or dermatitis developed during the follow-up period. CONCLUSIONS: Rat mite dermatitis can occur in clusters that involve a common source of exposure to the rat mite epidemiologically. Prompt identification of rat mites and the eradication of mites and rodents from the environment can prevent further spreading of the disease.

Adult↗