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Biomedical subjects

D A Ramirez

Publications and source records attributed to D A Ramirez.

9 recordsLinked to original sources

Combustion-generated nanoparticulates in the El Paso, TX, USA / Juarez, Mexico Metroplex: their comparative characterization and potential for adverse health effects.

In this paper we report on the collection of fine (PM1) and ultrafine (PM0.1), or nanoparticulate, carbonaceous materials using thermophoretic precipitation onto silicon monoxide/formvar-coated 3 mm grids which were examined in the transmission electron microscope (TEM). We characterize and compare diesel particulate matter (DPM), tire particulate matter (TPM), wood burning particulate matter, and other soot (or black carbons (BC)) along with carbon nanotube and related fullerene nanoparticle aggregates in the outdoor air, as well as carbon nanotube aggregates in the indoor air; and with reference to specific gas combustion sources. These TEM investigations include detailed microstructural and microdiffraction observations and comparisons as they relate to the aggregate morphologies as well as their component (primary) nanoparticles. We have also conducted both clinical surveys regarding asthma incidence and the use of gas cooking stoves as well as random surveys by zip code throughout the city of El Paso. In addition, we report on short term (2 day) and longer term (2 week) in vitro assays for black carbon and a commercial multiwall carbon nanotube aggregate sample using a murine macrophage cell line, which demonstrate significant cytotoxicity; comparable to a chrysotile asbestos nanoparticulate reference. The multi-wall carbon nanotube aggregate material is identical to those collected in the indoor and outdoor air, and may serve as a surrogate. Taken together with the plethora of toxic responses reported for DPM, these findings prompt concerns for airborne carbonaceous nanoparticulates in general. The implications of these preliminary findings and their potential health effects, as well as directions for related studies addressing these complex issues, will also be examined.

Air Pollutants↗

Cytotoxicity assessment of some carbon nanotubes and related carbon nanoparticle aggregates and the implications for anthropogenic carbon nanotube aggregates in the environment.

Nanotechnology and nanomaterials have become the new frontier world-wide over the past few years and prospects for the production and novel uses of large quantities of carbon nanotubes in particular are becoming an increasing reality. Correspondingly, the potential health risks for these and other nanoparticulate materials have been of considerable concern. Toxicological studies, while sparse, have been concerned with virtually uncharacterized, single wall carbon nanotubes, and the conclusions have been conflicting and uncertain. In this research we performed viability assays on a murine lung macrophage cell line to assess the comparative cytotoxicity of commercial, single wall carbon nanotubes (ropes) and two different multiwall carbon nanotube samples; utilizing chrysotile asbestos nanotubes and black carbon nanoaggregates as toxicity standards. These nanotube materials were completely characterized by transmission electron microscopy and observed to be aggregates ranging from 1 to 2 microm in mean diameter, with closed ends. The cytotoxicity data indicated a strong concentration relationship and toxicity for all the carbon nanotube materials relative to the asbestos nanotubes and black carbon. A commercial multiwall carbon nanotube aggregate exhibiting this significant cell response was observed to be identical in structure to multiwall carbon nanotube aggregates demonstrated to be ubiquitous in the environment, and especially in indoor environments, where natural gas or propane cooking stoves exist. Correspondingly, preliminary epidemiological data, although sparse, indicate a correlation between asthma incidence or classification, and exposure to gas stoves. These results suggest a number of novel epidemiological and etiological avenues for asthma triggers and related respiratory or other environmental health effects, especially since indoor number concentrations for multiwall carbon nanotube aggregates is at least 10 times the outdoor concentration, and virtually all gas combustion processes are variously effective sources. These results also raise concerns for manufactured carbon nanotube aggregates, and related fullerene nanoparticles.

Adolescent↗

The natural history of mountain cedar pollinosis.

During the winter months, pollen from the mountain cedar (MC) (Juniperus sabinoides) causes severe respiratory tract allergy in central Texas. We have been impressed with the fact that many of our MC-allergic patients had only allergic rhinitis and were only sensitive to MC pollen. We therefore studied 234 unselected MC-allergic patients at the end of the MC season. The main criteria for inclusion into the study was a bona fide history of MC pollinosis confirmed by a positive skin test. All patients completed a detailed history questionnaire, were prick skin tested by using 1:20 w/v, extracts, and had a total IgE determined with commercially available reagents (PRIST). Thirty-four percent of patients were found to be allergic only to MC and 66% were allergic to MC and other aeroallergens. As a group, patients allergic only to MC had significantly lower total IgE levels (84 IU/ml vs. 360, p < 0.001) (normal < 180), required much longer exposure intervals to cedar pollen before developing MC pollinosis (14.4 yr vs, 5.69, p < 0.001), had less of a family history of allergic disease (43% vs. 88%, p < 0.001), had less of a history of asthma or eczema (11% vs. 39%, p < 0.001), and developed allergic disease at a later age (39 yr vs. 13, p < 0.001) when compared to patients with multiple allergies. These results suggest that the MC pollen may be unique in causing allergic rhinitis in patients who have no other sensitivities. A possible explanation may lie in the carbohydrate nature of the main allergen of the MC pollen, which may facilitate allergen transport through the respiratory tract mucosa and subsequent sensitization.

Adult↗

Over-expression of Bcl-2 protects against apoptosis induced by the bioreductive cytotoxic drug SR4233 (Tirapazamine).

The human B-cell lymphoma cell line PW undergoes radiation-induced programmed cell death (PCD). Bcl-2 transfected PW cells, that overexpressed Bcl-2, were significantly more radioresistant than parental or neomycin control transfected PW cells. The viability of Bcl-2 transfected cells was significantly greater than that of parental PW cells treated with the bioreductive cytotoxin SR4233 under aerobic conditions. Bcl-2 transfectants were also significantly more resistant to hypoxia-induced PCD. However, there was no significant difference in the viability of parental and Bcl-2 transfected cells exposed to SR4233 under hypoxic conditions (pO(2)<100 ppm). Incubation of parental PW cells with N-acetyl cysteine decreased the cytotoxicity of SR4233 under aerobic but not anaerobic conditions. Depletion of cellular glutathione with buthionine sulphoxamine killed nearly 100% of control PW cells, but none of the Bcl-2 transfectants under the same conditions. The TBARS assay for lipid peroxidation showed that Bcl-2 transfectants had a significantly lower level of lipid peroxidation than parental PW cells following a 24 hour constant exposure to SR4233 under aerobic conditions. These results suggest that Bcl-2 overexpression inhibits PCD induced by the bioreductive cytotoxin SR4233 under aerobic conditions as well as PCD induced by hypoxia, and that there are other pathways leading to PCD that are unaffected by Bcl-2 overexpression.

Journal Article↗

Anaphylaxis to annatto dye: a case report.

Annatto dye is an orange-yellow food coloring extracted from the seeds of the tree Bixa orellana. It is commonly used in cheeses, snack foods, beverages, and cereals. Previously reported adverse reactions associated with annatto dye have included urticaria and angioedema. We present a patient who developed urticaria, angioedema, and severe hypotension within 20 minutes following ingestion of milk and Fiber One cereal, which contained annatto dye. Subsequent skin tests to milk, wheat, and corn were negative. The patient had a strong positive skin test to annatto dye, while controls had no response. The nondialyzable fraction of annatto dye on SDS-PAGE demonstrated two protein staining bands in the range of 50 kD. Immunoblotting demonstrated patient IgE-specific for one of these bands, while controls showed no binding. Annatto dye may contain contaminating or residual seed proteins to which our patient developed IgE hypersensitivity. Annatto dye is a potential rare cause of anaphylaxis.

Anaphylaxis↗

The natural history of mountain cedar pollinosis.

During the winter months, pollen from the mountain cedar (MC) (Juniperus sabinoides) causes severe respiratory tract allergy in central Texas. We have been impressed with the fact that many of our MC-allergic patients had only allergic rhinitis and were only sensitive to MC pollen. We therefore studied 234 unselected MC-allergic patients at the end of the MC season. The main criteria for inclusion into the study was a bona fide history of MC pollinosis confirmed by a positive skin test. All patients completed a detailed history questionnaire, were prick skin tested by using 1:20 w/v, extracts, and had a total IgE determined with commercially available reagents (PRIST). Thirty-four percent of patients were found to be allergic only to MC and 66% were allergic to MC and other aeroallergens. As a group, patients allergic only to MC had significantly lower total IgE levels (84 IU/ml vs. 360, p less than 0.001) (normal less than 180), required much longer exposure intervals to cedar pollen before developing MC pollinosis (14.4 yr vs. 5.69, p less than 0.001), had less of a family history of allergic disease (43% vs. 88%, p less than 0.001), had less of a history of asthma or eczema (11% vs. 39%, p less than 0.001), and developed allergic disease at a later age (39 yr vs. 13, p less than 0.001) when compared to patients with multiple allergies. These results suggest that the MC pollen may be unique in causing allergic rhinitis in patients who have no other sensitivities. A possible explanation may lie in the carbohydrate nature of the main allergen of the MC pollen, which may facilitate allergen transport through the respiratory tract mucosa and subsequent sensitization.

Adult↗

The diagnosis of hymenoptera hypersensitivity.

Venom skin testing was performed in 216 patients with histories of systemic or local reactions following insect stings. Seventy-six percent of the patients with histories of systemic reactions and 77% of the patients with histories of local reactions had positive skin tests up to 1 mcg/ml. The majority of vespid sensitive patients had positive skin tests to all the vespid species. Significant (p less than .001) cross-reactivity is suggested by regression analysis. This study confirms the value and safety of venom skin testing in hymenoptera hypersensitivity. The implications for venom immunotherapy of the findings are also discussed.

Adult↗

Adverse reactions to venom immunotherapy.

The authors treated 22 adults patients with histories of systemic hypersensitivity to hymenoptera with venom extracts using a traditional approach to immunotherapy. Patients had an immunological response consisting of an increase in venom specific IgE and IgG. Twelve patients underwent an uneventful in-hospital insect sting challenge. Injections of venom extract elicited large reactions in 50% of the patients for which subsequent venom dosages were adjusted proportionately to the local reaction. Using this approach, the investigators observed no systemic reactions to venom therapy. They conclude that systemic reactions to venom immunotherapy may be lessened by the adjustment of venom dose after local reactions to therapy without a loss of efficacy.

Antibodies↗

Immunotherapy in atopic disorders.

Immunotherapy plays an important role in the treatment of allergic rhinitis, asthma, and insect sting allergy. In the latter circumstance, immunotherapy with specific venom from the stinging insects can be life saving. Most commonly employed in immunotherapy are aqueuos extracts of aeroallergens, particularly plant pollen, and mold spores. Recent advances suggest that modification of these allergens, such as polymerization, can result in improved symptom response with fewer side effects. Efficacy trials of immunotherapy have demonstrated satisfactory treatment responses in allergic rhinitis and allergen-induced asthma. These responses, as measured by changes in symptom scores, are attended by specific immunologic changes summarized in Table 2.

Allergens↗