PubMed HealthSearch

SEARCH · PubMed Health

Results for “Particulate Matter”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 37 records · Page 2Linked to original sources

Wood stove effects on indoor air quality in Brazilian homes: carcinogens, suspended particulate matter, and nitrogen dioxide analysis.

The effects of wood burning stoves on indoor air quality was investigated in a rural community of southern Brazil, during the winter season of 1991. The concentrations of polycyclic aromatic hydrocarbons (PAHs), nitrogen dioxide (NO2) and suspended particulate matter (SPM) were assessed in houses with wood stoves and the results compared with levels found in houses with gas stoves. Strikingly higher (p < 0.01) levels of PAHs, and much higher (p = 0.07) levels of SPM were found in the kitchens with wood stoves. In contrast, NO2 concentrations in the kitchen as well in personal exposure, were found to be slightly higher in houses with gas stoves. All these differences were minimally affected by smoking, outdoor air pollution or other emissions from indoor combustion products. These findings appear to support the hypothesis that domestic wood burning stoves are risk factors for some upper digestive and respiratory tract cancers in Brazil.

Air Pollutants

Use of three optical systems to obtain a microscopic profile of asbestos and other nonopaque particulate matter larger than 5 mum in parenteral drugs.

A comparative microscopic study of chrysotile fibers was conducted, using 3 sequential optical systems: plane polarized light (PL), phase contrast (PC), and Nomarski differential interference contrast (NDIC) for complementary image analyses. The introduction of NDIC for qualitative and quantitative analyses of particulate matter greater than 5 mum resolves the problem of diffraction halos encountered in PC microscopy. High optical contrast, the instrumental characteristic of NDIC, is particularly useful for the detection of chrysotile fibers at a magnification of 500 X.

Asbestos

Inhalation experiments with 14C-labelled cigarette smoke. III. Body size dependent distribution of particulate matter in small rodents during cigarette smoke inhalation.

Syrian golden and European hamsters were exposed to 14C-labelled cigarette smoke. The deposition of the 14C activity in the respiratory and digestive tracts was determined immediately after the exposure. From the results obtained it can be seen that the distribution of particulate matter between the upper and lower respiratory tract, as well as, between the respiratory and digestive tracts is related to the body weight of the experimental animals.

Animals

Inhibition of gap-junctional intercellular communication by TPA and airborne particulate matter in primary cultures of rat alveolar type II cells.

Alveolar type II cells were isolated from the lungs of female Wistar rats and were used for studies on inhibition of gap junction mediated intercellular communication (IC). Cells were incubated with 12-O-tetradecanoylphorbol-13-acetate (TPA) or extracts of airborne particulate matter (APM) and subsequently microinjected with the fluorescent dye Lucifer Yellow after which the number of fluorescent (i.e. communicating) cells was determined. Cells exposed to solvent (DMSO), showed an extensive dye coupling. Exposure of cells to TPA or extracts of APM derived from different pollution sources resulted in a strong inhibition of IC. These results show that primary cultures of rat alveolar type II cells can serve pre-eminently as a model in dye-coupling experiments. It further can be concluded that extracts of APM, in addition to the genotoxic activity that has been known for many years, also may have a tumor-promoting potency.

Air Pollutants

The identification of particulate matter in biological tissues and fluids.

Sections, 1-2 micron thick, of Araldite embedded tissue were prepared to provide a link between optical and electron microscopy for the identification of crystals. This technique permits examination of individual particles by means of polarising light microscopy, electron microscopy, X-ray energy spectroscopy and electron diffraction. It provides a reliable method for routine and research studies. It has led to the positive identification of individual crystals of calcium pyrophosphate dihydrate and hydroxyapatite in synovial fluids. The method can be applied to the identification of other particulate matter in a variety of biological specimens.

Aged

Effects of agitation on size distribution of particulate matter in large-volume parenterals.

The particle-size distributions of six types of large-volume parenterals subjected to different degrees of agitation were determined using an automatic particle counter. Data acquired from each solution, which had been maintained in a stored condition, subjected to agitation by inverting 20 times, and then mechanically shaken for 30 min, produced a linear relationship between log N greater than D and log D. Both the slope (K) and the number of particles per milliliter exceeding 1 micrometer in diameter (N greater than 1) exhibited a dependence on the degree of agitation. Their combined effect indicates that agitation by 20 hand inversions removed particulate matter from the surface of the container, which increased the total number of particles in solution (greater than 1 micrometer) but did not significantly alter the relative size distribution. Agitation for 30 min, however, disintegrated agglomerates and produced a particle-size distribution with a greatly increased number of particles whose diameters were less than 1 micrometer and a corresponding decrease in the number of particles exceeding 1 micrometer in diameter. The particle-size distribution of a parenteral solution determined by this in situ instrumental method was, therefore, dependent upon the degree of agitation to which the parenteral was subjected prior to examination.

Chemistry, Pharmaceutical

Residues in antibiotic preparations, ii: effect of pH on the nature and level of particulate matter in sodium cephalothin intravenous solutions.

The effect of pH on the extent and nature of particulate contamination in sodium cephalothin intravenous solutions was studied. The extent of particulate contamination was determined by microscopic and automatic electronic counting procedures, and the physical nature of the particles was determined using scanning electron microscopy. At low pH values (i.e., 4.9--5.9), an amorphous residue was predominant, while at higher pH values (6.9--7.8), the gelatinous nature of the residue disappeared and small crystalline particulates of varying sizes were predominant. The level of particulate contamination (particles over 10 mum in size) decreased with an increase in pH to a minimum level between pH 7 and 8. Advice is given to practitioners regarding the preparation of sodium cephalothin solutions.

Cephalothin

Study of particulate matter in carbenicillin disodium using scanning electron microscopy and microbeam x-ray spectrography.

A scanning electron microscopy membrane filtration study was conducted to determine the particulate contamination of samples of carbenicillin disodium which had been manufactured by bulk filling and by lyophilization. The bulk-filled product contained more contaminating particles than the lyophilized product. In both products, the number of particles increased logarithmically with decreasing particle size in the range measured (exceeding 0.1 micron). X-ray spectrographic analysis of particles larger than 0.5 micron revealed that the major particulate contaminates in both products were composed primarily of elements below atomic number 10. It is concluded that packaging of carbenicillin disodium by lyophilization of a solution results in significantly less submicrometer particulate contamination than packaging by sterile bulk filling of spray-dried powder.

Carbenicillin