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At least 19 recordsLinked to original sources

Outbreak of Guillain-Barré syndrome associated with water pollution.

Sixteen cases of Guillain-Barré syndrome occurred in the third week of a diarrhoea epidemic caused by water pollution in EL-Sult, Jordan. Of 30 000 people exposed to polluted water, 5000 developed diarrhoea, 74 typhoid, and 30 infectious hepatitis. Thirteen of the 16 patients with Guillain-Barré syndrome had been mildly affected by diarrhoea 8-24 days before the onset of peripheral neuropathy. Paralysis progressed rapidly, reaching a peak in one to five days, and recovery began three to seven days after the start of the most severe symptoms. All but four patients had recovered completely after one year. Rapid progress of paralysis and a delayed interval between maximum weakness and start of recovery were both associated with poor prognosis.

Adolescent

[Chronic arsenic water pollution in the Republic of Argentina].

Arsenical pollution of water supplies is a chronic problem of great medical, social and sanitary importance in Argentina. The well-known cutaneous manifestations of chronic arsenical toxicity, palmar and plantar keratoses, melanoderma and multiple epitheliomas are described. The interest which this disease has evoked in the last few years is emphasized when new arsenical areas are discovered with clinical cases of chronic arsenical intoxication. Furthermore it is shown that the high content of arsenic in drinking water may be the determining factor in the incidence of visceral neoplasms. Contrary to classic beliefs, the chronic toxic effects from arsenic may be present in young children but the palmar and plantar keratoses may be absent. The histochemical localization of the arsenic in the skin and its relation to thyroid function and the production of leukoplakia and laryngeal cancer are noted. When one analyses all the recent reports it is evident that patients with chronic arsenical intoxication must now be thoroughly studied bearing in mind the multiple localization of this carcinogenic agent.

Argentina

The relationship between rainfall and well water pollution in a West African (Gambian) village.

Water pollution was monitored in six Gambian village wells over a period of 8 months spanning the 5-month monomodal rains and the pre- and post-rains dry periods. Faecal coliform (FC) and faecal streptococci (FS) counts were high throughout and there was a massive increase associated with the onset of the rains, maximum counts exceeding 5 x 10(5)/100 ml. This pattern was largely sustained throughout the rainy season. Some individual variations in patterns of pollution could be ascribed to well design, in particular lining of the shaft, but no well was protected from the seasonal increase in faecal pollution. The source of the increased pollution appeared to be a flushing in of faecal material of indeterminate or mixed human and animal origin, probably over considerable distances. Peaks of pollution not associated with rainfall episodes could have resulted from the practice of communal laundering in the near vicinity of the wells. Specific pathogens including Salmonella spp. were isolated only intermittently. Attention has been drawn to a problem complicating the standard method for assessing FC counts.

Animals

[Modified method for determining water pollution by using a Serratia marcescens culture].

The method for determining the degree of water pollution with the aid of a bacterial tracer has been improved by using: (1) a technique for maintaining the culture of Serratia marcescens; (2) a medium whose composition provided for a high level of prodigiosin in the bacterial culture; and (3) an express method for assaying the degree of pigmentation during growth of Ser. marcescens on solid media.

Culture Media

Acrylamide encephaloneuropathy due to well water pollution.

All five members of a family developed subacutely mental confusion and/or truncal ataxia. Symptoms and signs of polyneuropathy were seen later. The well water in the patients' home contained 400 ppm acrylamide. The present cases are unique in that they are cases of acrylamide poisoning induced by oral intake and percutaneous penetration, and that central nervous system symptoms were prominent.

Acrylamides

The analysis of organic water pollutants by gas chromatography and gas chromatography-mass spectrometry.

Four methods for the analysis of trace levels or organic compounds in water have been discussed: direct aqueous injection, vapor stripping, solvent extraction, and lipophilic adsorption. Table 6 presents a comparison of these techniques. Direct injection is applicable to compounds having a wide range of polarities and volatilities, but it is not a very sensitive technique. For applications in which low sensitivity is acceptable, direct injection offers a very rapid and potentially accurate means of measuring organics in water. Vapor stripping is a factor of 10(6) more sensitive than direct injection, but this is achieved at the expense of simplicity. This method is applicable to compounds of volatilities less than that of eicosane. A subtle operational problem with most vapor stripping techniques is that the contents of the trap are consumed with one analysis; if anything goes awry, the analysis of that trapped sample cannot be repeated. Solvent extraction has a respectable sensitivity (about 0.5 ppb) and operationally it is very simple. Furthermore, aliquots of the resulting extract can be analyzed many times with different techniques if necessary. Because of the evaporation step, very volatile compounds (greater than that of decane) cannot be measured effectively with solvent extraction. The introduction of a solvent into the water carries with it the potential for contamination. Thus, ultrapure solvents must be used and all glassware should be carefully cleaned [96]. Lipophilic adsorption has the unique property of sampling many hundreds of liters of water. Thus, the method is quite sensitive (potentially in the ppt range) and, in addition, it can provide several milligrams of an isolated component. This latter feature is of considerable advantage if one wants to complement GC-MS analyses with infrared or NMR for difficult structural identifications. As a solvent extraction, the evaporation of the final solvent limits the applicability of adsorption methods to compounds with volatilities greater than that of decane. Finally, the importance of avoiding contamination should be emphasized. Many of the compounds encountered in environmental samples are also common laboratory artifacts, for example plasticizers and antioxidants. When one finds such compounds in a water sample, it is absolutely essential to demonstrate that they are indeed present in the water and are not the result of laboratory contamination. The best such demonstration is procedural blank analyses that are indeed blank.

Chromatography, Gas

[Bacterial uptake of organic matter in waters of different degrees of pollution].

The assimilation of organic matter by bacteria has been shown to be more intensive in polluted waters. The maximal rate of glucose assimilation depended on the number of bacteria and appeared to be two times higher in polluted water and more than hundred times higher in estremely polluted water in comparison with clean water. The equation for the dependence of the maximal assimilation rate on the total number of bacteria in the natural populations is suggested.

Acetates

Valuation of characteristics of water purity. IV. Classification of pollution of waters based on norms of microbiological, hydrobiological and chemical characteristics determined by numerical methods.

Norms of microbiological (coliform titre, nitrification titre, urea hydrolysis titre, number of bacteria, BOD2 and BOD5), hydrobiological (intensity of photosynthesis, saprobic index, number of algae) and chemical (oxidability, DMDT content) characteristics, determining the ecological quality of water, are suggested. Their taxonomic value has been appraised with the use of numerical methods: centrifugal correlation and principle components, used for the classification of a collection of sites with respect to pollution.

Bacteria

Potential of plant genetic systems for monitoring and screening mutagens.

Plants have too long been ignored as useful screening and monitoring systems of environmental mutagens. However, there are about a dozen reliable, some even unique, plant genetic systems that can increase the scope and effectiveness of chemical and physical mutagen screening and monitoring procedures. Some of these should be included in the Tier II tests. Moreover, plants are the only systems now in use as monitors of genetic effects caused by polluted atmosphere and water and by pesticides. There are several major advantages of the plant test systems which relate to their reproductive nature, easy culture and growth habits that should be considered in mutagen screening and monitoring. In addition to these advantages, the major plant test systems exhibit numerous genetic and chromosome changes for determining the effects of mutagens. Some of these have not yet been detected in other nonmammalian and mammalian test systems, but probably occur in the human organism. Plants have played major roles in various aspects of mutagenesis research, primarily in mutagen screening (detection and verification of mutagenic activity), mutagen monitoring, and determining mutagen effects and mechanisms of mutagen action. They have played lesser roles in quantification of mutagenic activity and understanding the nature of induced mutations.Mutagen monitoring with plants, especially in situ on land or in water, will help determine potential genetic hazards of air and water pollutants and protect the genetic purity of crop plants and the purity of the food supply. The Tradescantia stamen-hair system is used in a mobile laboratory for determining the genetic effects of industrial and automobile pollution in a number of sites in the U.S.A. The fern is employed for monitoring genetic effects of water pollution in the Eastern states. The maize pollen system and certain weeds have monitored genetic effects of pesticides. Several other systems that have considerable value and should be developed and more widely used in mutagen monitoring and screening, especially for in situ monitoring, are discussed. Emphasis is placed on pollen systems in which changes in pollen structure, chemistry, and chromosomes can be scored for monitoring; and screening systems which can record low levels of genetic effects as well as provide information on the nature of induced mutations. THE VALUE OF PLANT SYSTEMS FOR MONITORING AND SCREENING MUTAGENS CAN BE IMPROVED BY: greater knowledge of plant cell processes at the molecular and ultrastructural levels; relating these processes to mutagen effects and plant cell responses; improving current systems for increased sensitivity, ease of detecting genetic and chromosome changes, recording of data (including automation), and for extending the range of genetic and chromosome end points; and designing and developing new systems with the aid of previous and current botanical and genetic knowledge.

Biological Assay

[Determination of the toxicity of industrial waste by means of a bacterial test (author's transl)].

The decision on whether industrial waste should be deposited on general or special dumps depends upon the toxicity of the waste and thus upon the risk of ground-water pollution and the killing off of micro-organisms responsible for breaking down waste products. Since chemical analyses that are to provide information on toxicity are frequently very costly, an attempt was made to determine the toxicity of solid or semi-solid waste with the aid of a bacterial test. As in the perforated-plate test, here, too, the formation and size of inhibition zones were used to determine the toxicity after diffusion of substances contained in industrial waste. About 30 different types of industrial waste were examined with this method. For almost all substances a positive correlation of the (known) constituents of waste to the formation of inhibition zones was found to exist. The influence exercised by solubility and diffusibility and other problems are dealt with.

Hydrogen-Ion Concentration

Toxicity tests on ciliates--a short review.

A variety of methods has been proposed to study the toxicity of chemicals or polluted waters on ciliates as representative test organisms of the microfauna of aquatic ecosystems. These methods are based on morphological, ultrastructural, ethological, or metabolic criteria. The techniques proposed are mostly species dependent and so are their applications and restrictions. In view of a future standardization of protozoan toxicity tests a selection has been made by the authors on the basis of the applicability of the tests for routine analysis. The methods withheld are briefly described and comments are made on their advantages and limitations. The equipment involved, the operational complexity, and the accuracy of the results and their interpretation are listed in a synoptic table.

Animals