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Dive into the research topics where Jerome Naar is active.

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Featured researches published by Jerome Naar.


Nature | 2005

Brevetoxicosis: Red tides and marine mammal mortalities

Leanne J. Flewelling; Jerome Naar; Jay P. Abbott; Daniel G. Baden; Nélio B. Barros; Gregory D. Bossart; Marie-Yasmine D. Bottein; Daniel G. Hammond; Elsa M. Haubold; Cynthia A. Heil; Michael S. Henry; Henry M. Jacocks; Tod A. Leighfield; Richard H. Pierce; Thomas D. Pitchford; Sentiel A. Rommel; Paula S. Scott; Karen A. Steidinger; Earnest W. Truby; Frances M. Van Dolah; Jan H. Landsberg

Potent marine neurotoxins known as brevetoxins are produced by the ‘red tide’ dinoflagellate Karenia brevis. They kill large numbers of fish and cause illness in humans who ingest toxic filter-feeding shellfish or inhale toxic aerosols. The toxins are also suspected of having been involved in events in which many manatees and dolphins died, but this has usually not been verified owing to limited confirmation of toxin exposure, unexplained intoxication mechanisms and complicating pathologies. Here we show that fish and seagrass can accumulate high concentrations of brevetoxins and that these have acted as toxin vectors during recent deaths of dolphins and manatees, respectively. Our results challenge claims that the deleterious effects of a brevetoxin on fish (ichthyotoxicity) preclude its accumulation in live fish, and they reveal a new vector mechanism for brevetoxin spread through food webs that poses a threat to upper trophic levels.


Toxicon | 1999

Ciguatoxins and brevetoxins, neurotoxic polyether compounds active on sodium channels

Marie-Yasmine Dechraoui; Jerome Naar; Serge Pauillac; Anne-Marie Legrand

Ciguatoxins (CTXs) and brevetoxins (PbTxs) modify the activation and inactivation processes of voltage-sensitive sodium channels (VSSC). In this study, the specific binding to rat brain synaptosomes of two commercial PbTxs, five purified CTXs and their derivatives was evaluated in competition with various concentrations of radiolabelled brevetoxin ([3H]PbTx-3). The results indicate that all CTXs bind specifically and with high affinity to sodium channels. Statistical analysis of the calculated inhibition constants identified two classes of toxins: the PbTxs and the less polar CTXs, and a group of CTXs of very high affinity. Relatively small chemical differences between the CTXs gave rise to significant differences in their affinity to the rat brain sodium channels. Cytotoxic effects associated with sodium channel activation were evaluated for the two classes of toxins on murine neuroblastoma cells, and their acute toxicity was determined in mice. CTXs have shown high affinities to VSSC of rat brain membranes and strong cytotoxic effects on neuroblastoma cells which correlate with their very low LD50 in mice. For PbTxs, it is different. Although binding with high affinity to VSSC and giving rise to significant cytotoxic effects, they are known to be poorly toxic intraperitoneally to mice. Furthermore, within the CTXs family, even though the most toxic compound (CTX-1B) has the highest affinity and the less toxic one (CTX-4B) the lowest affinity, a detailed analysis of the data pointed out a complex situation: (i) high affinity and toxicity seem to be related to the hydroxylation of the molecule on the A-ring rather than to the backbone type, (ii) acute toxicity in mice does not follow exactly the sodium-dependent cytotoxicity on neuroblastoma cells. These data suggest that the high toxicity of CTXs is related to sodium-dependent disturbances of the excitable membranes but might also involve other cellular mechanisms.


Environmental Health Perspectives | 2005

Natural and derivative brevetoxins : Historical background, multiplicity, and effects

Daniel G. Baden; Andrea J. Bourdelais; Henry M. Jacocks; Sophie Michelliza; Jerome Naar

Symptoms consistent with inhalation toxicity have long been associated with Florida red tides, and various causal agents have been proposed. Research since 1981 has centered on a group of naturally occurring trans-fused cyclic polyether compounds called brevetoxins that are produced by a marine dinoflagellate known as Karenia brevis. Numerous individual brevetoxins have been identified from cultures as well as from natural bloom events. A spectrum of brevetoxin derivatives produced by chemical modification of the natural toxins has been prepared to examine the effects of functional group modification on physiologic activity. Certain structural features of natural and synthetic derivatives of brevetoxin appear to ascribe specific physiologic consequences to each toxin. Differential physiologic effects have been documented with many of the natural toxins and derivatives, reinforcing the hypothesis that metabolism or modification of toxin structures modulates both the specific toxicity (lethality on a per milligram basis) and potentially the molecular mechanism(s) of action. A series of naturally occurring fused-ring polyether compounds with fewer rings than brevetoxin, known as brevenals, exhibit antagonistic properties and counteract the effects of the brevetoxins in neuronal and pulmonary model systems. Taken together, the inhalation toxicity of Florida red tides would appear to depend on the amount of each toxin present, as well as on the spectrum of molecular activities elicited by each toxin. Toxicity in a bloom is diminished by the amount brevenal present.


Cellular and Molecular Neurobiology | 2004

Brevenal is a natural inhibitor of brevetoxin action in sodium channel receptor binding assays

Andrea J. Bourdelais; Susan Campbell; Henry M. Jacocks; Jerome Naar; Jeffery L. C. Wright; Jigani Carsi; Daniel G. Baden

Abstract1. Florida red tides produce profound neurotoxicity that is evidenced by massive fish kills, neurotoxic shellfish poisoning, and respiratory distress. Red tides vary in potency, potency that is not totally governed by toxin concentration. The purpose of the study was to understand the variable potency of red tides by evaluating the potential for other natural pharmacological agents which could modulate or otherwise reduce the potency of these lethal environmental events.2. A synaptosome binding preparation with 3-fold higher specific brevetoxin binding was developed to detect small changes in toxin binding in the presence of potential antagonists. Rodent brain labeled in vitro with tritiated brevetoxin shows high specific binding in the cerebellum as evidenced by autoradiography. Synaptosome binding assays employing cerebellum-derived synaptosomes illustrate 3-fold increased specific binding.3. A new polyether natural product from Floridas red tide dinoflagellate Karenia brevis, has been isolated and characterized. Brevenal, as the nontoxic natural product is known, competes with tritiated brevetoxin for site 5 associated with the voltage-sensitive sodium channel (VSSC). Brevenal displacement of specific brevetoxin binding is purely competitive in nature.4. Brevenal, obtained from either laboratory cultures or field collections during a red tide, protects fish from the neurotoxic effects of brevetoxin exposure.5. Brevenal may serve as a model compound for the development of therapeutics to prevent or reverse intoxication in red tide exposures.


Environmental Health Perspectives | 2005

Initial evaluation of the effects of aerosolized Florida red tide toxins (brevetoxins) in persons with asthma

Lora E. Fleming; Barbara Kirkpatrick; Lorraine C. Backer; Judy A. Bean; Adam Wanner; Dana Dalpra; Robert Tamer; Julia Zaias; Yung Sung Cheng; Richard H. Pierce; Jerome Naar; William M. Abraham; Richard Clark; Yue Zhou; Michael S. Henry; David R. Johnson; Gayl Van De Bogart; Gregory D. Bossart; Mark Harrington; Daniel G. Baden

Florida red tides annually occur in the Gulf of Mexico, resulting from blooms of the marine dinoflagellate Karenia brevis. K. brevis produces highly potent natural polyether toxins, known as brevetoxins, that activate voltage-sensitive sodium channels. In experimental animals, brevetoxins cause significant bronchoconstriction. A study of persons who visited the beach recreationally found a significant increase in self-reported respiratory symptoms after exposure to aerosolized Florida red tides. Anecdotal reports indicate that persons with underlying respiratory diseases may be particularly susceptible to adverse health effects from these aerosolized toxins. Fifty-nine persons with physician-diagnosed asthma were evaluated for 1 hr before and after going to the beach on days with and without Florida red tide. Study participants were evaluated with a brief symptom questionnaire, nose and throat swabs, and spirometry approved by the National Institute for Occupational Safety and Health. Environmental monitoring, water and air sampling (i.e., K. brevis, brevetoxins, and particulate size distribution), and personal monitoring (for toxins) were performed. Brevetoxin concentrations were measured by liquid chromatography mass spectrometry, high-performance liquid chromatography, and a newly developed brevetoxin enzyme-linked immunosorbent assay. Participants were significantly more likely to report respiratory symptoms after Florida red tide exposure. Participants demonstrated small but statistically significant decreases in forced expiratory volume in 1 sec, forced expiratory flow between 25 and 75%, and peak expiratory flow after exposure, particularly those regularly using asthma medications. Similar evaluation during nonexposure periods did not significantly differ. This is the first study to show objectively measurable adverse health effects from exposure to aerosolized Florida red tide toxins in persons with asthma. Future studies will examine the possible chronic effects of these toxins among persons with asthma and other chronic respiratory impairment.


Environmental Health Perspectives | 2005

Characterization of marine aerosol for assessment of human exposure to brevetoxins.

Yung Sung Cheng; Yue Zhou; Clinton M. Irvin; Richard H. Pierce; Jerome Naar; Lorraine C. Backer; Lora E. Fleming; Barbara Kirkpatrick; Daniel G. Baden

Red tides in the Gulf of Mexico are commonly formed by the fish-killing dinoflagellate Karenia brevis, which produces nine potent polyether brevetoxins (PbTxs). Brevetoxins can be transferred from water to air in wind-powered white-capped waves. Inhalation exposure to marine aerosol containing brevetoxins causes respiratory symptoms. We describe detailed characterization of aerosols during an epidemiologic study of occupational exposure to Florida red tide aerosol in terms of its concentration, toxin profile, and particle size distribution. This information is essential in understanding its source, assessing exposure to people, and estimating dose of inhaled aerosols. Environmental sampling confirmed the presence of brevetoxins in water and air during a red tide exposure period (September 2001) and lack of significant toxin levels in the water and air during an unexposed period May 2002). Water samples collected during a red tide bloom in 2001 showed moderate-to-high concentrations of K. brevis cells and PbTxs. The daily mean PbTx concentration in water samples ranged from 8 to 28 μg/L from 7 to 11 September 2001; the daily mean PbTx concentration in air samples ranged from 1.3 to 27 ng/m3. The daily aerosol concentration on the beach can be related to PbTx concentration in water, wind speed, and wind direction. Personal samples confirmed human exposure to red tide aerosols. The particle size distribution showed a mean aerodynamic diameter in the size range of 6–12 μm, with deposits mainly in the upper airways. The deposition pattern correlated with the observed increase of upper airway symptoms in healthy lifeguards during the exposure periods.


Environmental Health Perspectives | 2005

Inhalation Toxicity of Brevetoxin 3 in Rats Exposed for Twenty-Two Days

Janet M. Benson; Thomas H. March; Jacob D. McDonald; Andrea P. Gomez; Mohan J. Sopori; Andrea J. Bourdelais; Jerome Naar; Julia Zaias; Gregory D. Bossart; Daniel G. Baden

Brevetoxins are potent neurotoxins produced by the marine dinoflagellate Karenia brevis. Exposure to brevetoxins may occur during a K. brevis red tide when the compounds become aerosolized by wind and surf. This study assessed possible adverse health effects associated with inhalation exposure to brevetoxin 3, one of the major brevetoxins produced by K. brevis and present in aerosols collected along beaches affected by red tide. Male F344 rats were exposed to brevetoxin 3 at 0, 37, and 237 μg/m3 by nose-only inhalation 2 hr/day, 5 days/week for up to 22 exposure days. Estimated deposited brevetoxin 3 doses were 0.9 and 5.8 μg/kg/day for the low-and high-dose groups, respectively. Body weights of the high-dose group were significantly below control values. There were no clinical signs of toxicity. Terminal body weights of both low- and high-dose-group rats were significantly below control values. Minimal alveolar macrophage hyperplasia was observed in three of six and six of six of the low- and high-dose groups, respectively. No histopathologic lesions were observed in the nose, brain, liver, or bone marrow of any group. Reticulocyte numbers in whole blood were significantly increased in the high-dose group, and mean corpuscular volume showed a significant decreasing trend with increasing exposure concentration. Humoral-mediated immunity was suppressed in brevetoxin-exposed rats as indicated by significant reduction in splenic plaque-forming cells in both low- and high-dose-group rats compared with controls. Results indicate that the immune system is the primary target for toxicity in rats after repeated inhalation exposure to relatively high concentrations of brevetoxins.


Proceedings of the Royal Society of London B: Biological Sciences | 2008

Competing phytoplankton undermines allelopathy of a bloom-forming dinoflagellate

Emily K. Prince; Tracey L. Myers; Jerome Naar; Julia Kubanek

Biotic interactions in the plankton can be both complex and dynamic. Competition among phytoplankton is often chemically mediated, but no studies have considered whether allelopathic compounds are modified by biotic interactions. Here, we show that compounds exuded during Karenia brevis blooms were allelopathic to the cosmopolitan diatom Skeletonema costatum, but that bloom allelopathy varied dramatically among collections and years. We investigated several possible causes of this variability and found that neither bloom density nor concentrations of water-borne brevetoxins correlated with allelopathic potency. However, when we directly tested whether the presence of competing phytoplankton influenced bloom allelopathy, we found that S. costatum reduced the growth-inhibiting effects of bloom exudates, suggesting that S. costatum has a mechanism for undermining K. brevis allelopathy. Additional laboratory experiments indicated that inducible changes to K. brevis allelopathy were restricted to two diatoms among five sensitive phytoplankton species, whereas five other species were constitutively resistant to K. brevis allelopathy. Our results suggest that competitors differ in their responses to phytoplankton allelopathy, with S. costatum exhibiting a previously undescribed method of resistance that may influence community structure and alter bloom dynamics.


Environmental Health Perspectives | 2009

Exposure and Effect Assessment of Aerosolized Red Tide Toxins (Brevetoxins) and Asthma

Lora E. Fleming; Judy A. Bean; Barbara Kirkpatrick; Yung Sung Cheng; Richard H. Pierce; Jerome Naar; Kate Nierenberg; Lorraine C. Backer; Adam Wanner; Andrew Reich; Yue Zhou; Sharon Watkins; Mike Henry; Julia Zaias; William M. Abraham; Janet M. Benson; Amy Cassedy; Julie Hollenbeck; Gary J. Kirkpatrick; Tainya C. Clarke; Daniel G. Baden

Background In previous studies we demonstrated statistically significant changes in reported symptoms for lifeguards, general beach goers, and persons with asthma, as well as statistically significant changes in pulmonary function tests (PFTs) in asthmatics, after exposure to brevetoxins in Florida red tide (Karenia brevis bloom) aerosols. Objectives In this study we explored the use of different methods of intensive ambient and personal air monitoring to characterize these exposures to predict self-reported health effects in our asthmatic study population. Methods We evaluated health effects in 87 subjects with asthma before and after 1 hr of exposure to Florida red tide aerosols and assessed for aerosolized brevetoxin exposure using personal and ambient samplers. Results After only 1 hr of exposure to Florida red tide aerosols containing brevetoxin concentrations > 57 ng/m3, asthmatics had statistically significant increases in self-reported respiratory symptoms and total symptom scores. However, we did not see the expected corresponding changes in PFT results. Significant increases in self-reported symptoms were also observed for those not using asthma medication and those living ≥ 1 mile from the coast. Conclusions These results provide additional evidence of health effects in asthmatics from ambient exposure to aerosols containing very low concentrations of brevetoxins, possibly at the lower threshold for inducing a biologic response (i.e., toxicity). Consistent with the literature describing self-reported symptoms as an accurate measure of asthmatic distress, our results suggest that self-reported symptoms are a valuable measure of the extent of health effects from exposure to aerosolized brevetoxins in asthmatic populations.


Toxicon | 2000

Characterization of mice antisera elicited with a ciguatoxin tetracyclic synthetic ring fragment (JKLM) conjugated to carrier proteins.

Serge Pauillac; Makato Sasaki; Masayuki Inoue; Jerome Naar; Philippe Branaa; M. Chinain; Kazuo Tachibana; Anne-Marie Legrand

As a good alternative to the lack of pure ciguatoxin (CTX), conjugates of JKLM ring fragment, a carboxylic derivative of the right-hand tetracyclic terminus portion of CTX-1B (the most potent CTX) with two carrier proteins have been synthesized. Two procedures using different amount of hapten were evaluated: (i) a bulk technique (3-5 mg) via the N-hydroxysuccinimide ester of the carboxylic fragment in the presence of a water-soluble carbodiimide according to the standard method in aqueous buffer, or (ii) a micro-scale technique (300 microg) via the mixed anhydride method performed in a reversed micellar medium. In both cases, bovine serum albumin and ovalbumin were respectively used for immunization of BALB/c mice and antibody screening by a solid phase enzyme-linked immunosorbent assay (ELISA). Using the conjugates obtained through the micro-scale procedure, a long-term immunization schedule appeared to be more efficient to specifically trigger the mice immune system. These antisera titers determined in an end-point titration standard ELISA format were found around 1/128,000 as compared to 1/16,000 obtained in the short-term protocol (immunogen prepared via the bulk procedure). In competitive inhibition ELISA experiments, both types of antisera did not significantly cross-react with a brevetoxin congener (PbTx-3), okadaic acid (OA), monensin or other polyether compounds, but only sera from the short-term protocol did show high cross-reactivity to CTX-1B (133%). With sera from the long-term protocol, a lower detection limit for JKLM (1.23 x 10(-9) M) was achieved by implementation of a biotin-avidin amplification system rather than by miniaturization of the assay in Terasaki plates. This study confirms the feasibility of the immunological approach for CTXs assay in fish tissues, but also emphasizes the importance of (i) the choice of the hapten to construct a relevant well-defined immunogen, (ii) the immunization schedule to obtain hapten-specific Abs still exhibiting high cross-reactivity to CTXs.

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Yung Sung Cheng

Lovelace Respiratory Research Institute

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Leanne J. Flewelling

Florida Fish and Wildlife Conservation Commission

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Lorraine C. Backer

Centers for Disease Control and Prevention

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Andrea J. Bourdelais

University of North Carolina at Wilmington

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Judy A. Bean

Cincinnati Children's Hospital Medical Center

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