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Formation of chloramine derivatives of histamine: role of histamine chloramines in bronchoconstriction.

Hypochlorous acid generated by myeloperoxidase reacts with histamine to produce chloramines. At pH 7, one mole of histamine monochloramine (HisCl) was generated per mole of H2O2 provided as substrate for myeloperoxidase. At pH 5, one mole of histamine dichloramine (HisCl2) was generated per two moles of H2O2. HisCl and HisCl2 had two and four oxidizing equivalents per molecule, respectively. In vitro, 30 microM HisCl and HisCl2 induced mepyramine-sensitive guinea pig lung parenchyma contraction with 89 and 56 percent of the response of an equivalent concentration of histamine. Pretreatment of lung strips with chloramines reduced the subsequent contractile response of the tissues to methacholine. These results suggest that H-1 histamine receptors provide for targeting of histamine chloramines to pulmonary tissue which may facilitate modification of tissue responses.

Animals

Chloramine-T in radiolabeling techniques. I. Kinetics and mechanism of the reaction between chloramine-T and amino acids.

The determination of the rate and pH dependency of chlorination of amino acids by chloramine-T (CAT) using the model compounds beta-alanine, L-alanine, and L-alanine ethyl ester was investigated. The reactions were studied under pseudo-first-order conditions where the amino acid concentration was in large excess over CAT. The rates of the reactions were determined spectrophotometrically by following the disappearance of CAT. The overall reaction was found to obey second-order kinetics. The effect of pH was studied over the range 6.1 to 12.0. The reaction rate was found to be independent of pH in the range 6.1 to 8.5, and to decrease with increasing pH above 8.5. The pH dependency was rationalized by assuming that un-ionized CAT reacts with the un-ionized amino group of the amino acid. The value of the resulting second-order rate constant (1.9 x 10(7) M-1 min-1) was of the same order of magnitude as rate constants reported for similar N-chlorination reactions. A cyclic transition state involving a water molecule is proposed.

Amino Acids

Removal of sodium inactivation and block of sodium channels by chloramine-T in crayfish and squid giant axons.

Modification of sodium channels by chloramine-T was examined in voltage clamped internally perfused crayfish and squid giant axons using the double sucrose gap and axial wire technique, respectively. Freshly prepared chloramine-T solution exerted two major actions on sodium channels: (a) an irreversible removal of the fast Na inactivation, and (b) a reversible block of the Na current. Both effects were observed when chloramine-T was applied internally or externally (5-10 mM) to axons. The first effect was studied in crayfish axons. We found that the removal of the fast Na inactivation did not depend on the states of the channel since the channel could be modified by chloramine-T at holding potential (from -80 to -100 mV) or at depolarized potential of -30 mV. After removal of fast Na inactivation, the slow inactivation mechanism was still present, and more channels could undergo slow inactivation. This result indicates that in crayfish axons the transition through the fast inactivated state is not a prerequisite for the slow inactivation to occur. During chloramine-T treatment, a distinct blocking phase occurred, which recovered upon washing out the drug. This second effect of chloramine-T was studied in detail in squid axons. After 24 h, chloramine-T solution lost its ability to remove fast inactivation but retained its blocking action. After removal of the fast Na inactivation, both fresh and aged chloramine-T solutions blocked the Na currents with a similar potency and in a voltage-dependent manner, being more pronounced at lower depolarizing potentials. A similar voltage-dependent block was observed with aged chloramine-T solution in an axon with intact inactivation. In contrast to the action of the fresh solution, the aged chloramine-T solution was found to accelerate the decay of Na currents.These results suggest that chloramine-T solution contains at least two active molecular forms that act at different sites in the Na channel.

Animals

Mutagenic activity of chloramines.

Mutagenesis by chloramines and hypochlorous acid (HOCl) was studied to determine whether these agents could contribute to the mutagenic and potentially carcinogenic activity of stimulated leukocytes and whether environmental exposure to these agents is a cause for concern. Mutagenic activity was measured using the S. typhimurium TA97a, TA100 and TA102 tester strains. Because chloramines and HOCl are bactericidal, react rapidly with cell components, and can destroy the histidine and biotin required for the mutagenesis assay, activity can't be compared directly with that of less toxic or reactive agents. Nevertheless, chloramines were mutagenic when tested under appropriate conditions. TA100 was the most sensitive strain, and the most active mutagens were lipophilic dichloramines (RNCl2) including derivatives of histamine, ethanolamine and putrescine. Lipophilic monochloramines (RNHCl) such as histamine-monochloramine and NH2Cl were less active. Hydrophilic chloramines such as taurine-chloramines had low activity, and HOCl was inactive. The metabolic state of the bacteria was critical. Chloramines were mutagenic when added to bacteria with glucose at 37 degrees C, but killing predominated when chloramines were added at 4 degrees C or 25 degrees C, or at 37 degrees C without glucose. Production of chloramines and HOCl by leukocytes in vivo could contribute to the association of chronic inflammation and cancer as a result of: (1) the entry of membrane-permeable chloramines into normal cells followed by attack on intracellular components including DNA, and (2) the production of secondary mutagens such as compounds with carbonyl groups or carbon-chlorine bonds. On the other hand, chlorination of water supplies is perhaps more likely to destroy than create mutagens, and chloramines from the environment are unlikely to penetrate the skin and mucous membranes.

Chloramines

Microtiter plate assay for phagocyte-derived taurine-chloramines.

Despite their potential importance, the role of phagocyte-derived chloramines ("long-lived oxidants") has not yet been investigated in inflammatory or infectious diseases. We have developed a sensitive spectrophotometric microtiter plate assay for chloramines based on their capacity to oxidize potassium iodide (KI). Consistent levels of endogenous chloramines were detected in normal human polymorphonuclear neutrophil (PMN) supernatants after stimulation by phorbol myristate acetate (PMA) or opsonized zymosan. Exogenous taurine strongly enhanced chloramine secretion and was used to quantify the chlorinating potential of PMN. Taurine-chloramines were also detectable in monocyte supernatants, although in smaller amounts. The specificity of the KI assay was assessed both in terms of effect of compounds inhibiting (KBr) or interacting with (sodium azide and catalase) chloramine formation and by showing that PMN from patients with chronic granulomatous disease, due to a hereditary lack of oxidative response capacity, were unable to produce chloramines. Taurine-chloramine levels secreted by PMA (but not zymosan)-stimulated PMN were closely related to the cellular luminol-amplified chemiluminescence (CL) responses although the CL assay failed to detect chloramines in PMN supernatants. We consider that this KI assay should be of use in studying the role of long-lived phagocyte-derived oxidants in clinical medicine.

Chloramines

[Phagocytosis of chloramine B sensitive and resistant staphylococci isolated from healthy persons and patients].

Phagocytic reaction with respect to antibiotic and chloramine B sensitive and resistant staphylococci isolated from healthy persons and patients, air and stock of medical institutions was studied on albino mice. It was shown that the staphylococcal isolates included strains simultaneously sensitive to antibiotics and chloramine, sensitive to antibiotics and resistant to chloramine, resistant to antibiotics and sensitive to chloramine and simultaneously resistant to antibiotics and chloramine. Activity, intensity and completeness of phagocytosis by leucocytes from mouse abdominal cavity exudates with respect to the staphylococcal strains sensitive to antibiotics and resistant to chloramine, resistant to antibiotics and sensitive to chloramine and simultaneously resistant to antibiotics and chloramine were lower than the values of the phagocytic reaction with respect to the isolates simultaneously sensitive to antibiotics and chloramine. This suggested that not only antibiotic resistance of microbes but also their resistance to disinfectants could be referred to complicating factors of hospital infections.

Animals

Abolition with chloramine-T of inactivation in barnacle muscle fibers results in stimulation of the ouabain-insensitive sodium efflux.

The hypothesis that chloramine-T stimulates the basal Na+ efflux in barnacle fibers as the result of the entry of trigger Ca2+ into the myoplasm from the bathing medium was examined in this study. Two reasons for doing so can be given. One is that the oxidant is known to abolish inactivation in sodium and potassium channels. The other is that L-type Ca2+ channels are present in barnacle fibers, and an increase in internal free Ca2+ in these fibers is known to stimulate the Na+ efflux, particularly in ouabain-poisoned fibers. The results of the experiments are as follows: (i) Chloramine-T exerts a biphasic effect on the Na+ efflux: inhibition is followed by stimulation, the threshold concentration being 10(-5) M. This is also found to be the threshold concentration for shortening of these fibers. (ii) The kinetics of the inhibitory effect resemble those of ouabain. (iii) Ouabain is without effect on the stimulatory phase caused by chloramine-T. (iv) Application of chloramine-T after the full effect of 10(-4) M-ouabain is reached elicits solely a stimulatory response. (v) The dose-response curves for the stimulatory action of chloramine-T in unpoisoned and ouabain-poisoned fibers are alike except that the threshold concentration is less than 10(-5) M in poisoned fibers. (vi) Basal light emission from unpoisoned and ouabain-poisoned fibers loaded with the photoprotein, aequorin, some 60 min beforehand increases as soon as they are exposed to 10(-4) M chloramine-T. The response recorded in unpoisoned fibers is monophasic and usually transitory, whereas it is multiphasic and usually sustained in ouabain-poisoned fibers. (vii) The dose-response curve for chloramine-T shows a shift to the left in poisoned fibers. (viii) The magnitude of the rise in light emission depends on the external Ca2+ concentration. A rise fails to take place in the nominal absence of external Ca2+. Taken together, these results support the above hypothesis that chloramine-T causes the entry of trigger Ca2+ into the myoplasm from the outside and provide evidence that stimulation of the Na+ efflux is associated not only with this event but also with a reduced Na+ gradient resulting from inhibition of the membrane Na+/K(+)-ATPase system by the oxidant. Thus, the suggestion put forward is that this oxidant promotes reverse Na+/Ca2+ exchange and is able to exert multiple effects on membrane transport.

Animals

Pholasin: a new chemiluminescent probe for the detection of chloramines derived from human phagocytes.

We have previously reported that normal human polymorphonuclear neutrophils (PMN) release taurine-chloramine, a long-lived oxidant, in response to stimulation by phorbol myristate acetate (PMA) or opsonized zymosan in the presence of exogenous taurine. We now describe a new, simple, and highly sensitive method for the detection of chloramines, including taurine-chloramine, using the chemiluminescent probe Pholasin, the luciferin of the mollusc Pholas dactylus. Taurine-chloramine (N-chlorotaurine) detection was assessed with both a colorimetric method (based on the oxidation of potassium iodide) and with the Pholasin-dependent chemiluminescence (CL) method. The taurine-chloramine concentration in PMN supernatants determined using the potassium iodide (KI) method correlated closely with Pholasin-dependent CL. This CL was also assessed in nonoxidative conditions. No taurine-chloramine was detected in supernatants of lymphocytes and PMN from patients with an oxidative burst defect (chronic granulomatous disease, CGD) with the KI method, but Pholasin-dependent CL was consistently observed. The use of methionine, a specific chloramine scavenger in our incubation conditions, allowed us to define a methionine-inhibitable fraction of Pholasin-dependent CL (i.e., chloramine-induced CL).

Child

The alteration of hamster serum elastase inhibitory capacities by chloramine T, in vitro and in vivo.

The major elastase inhibitor of human serum, alpha-1 proteinase inhibitor (A1PI), is susceptible to oxidative inactivation by a variety of agents, including chloramine T. We have examined the effects of chloramine T on the catalytic activity of porcine pancreatic (PPE) and human leukocyte elastase (HLE) and on the elastase inhibitory capacity of hamster, rat, and human serum as well as pure human A1PI. Both PPE and HLE, but not trypsin, were inhibited in a concentration-dependent manner by concentrations of chloramine T greater than 0.1 mM. The abilities of rat and human serum and pure human A1PI to inhibit both PPE and HLE were inhibited in a concentration-dependent manner by chloramine T. In contrast only the ability of hamster serum to inhibit HLE was altered by exposure to chloramine T: inhibition of PPE was not effected. Gel exclusion chromatography disclosed the existence of two major peaks of elastase inhibitory activity in hamster plasma: one, with an approximate molecular weight of 55 K, eluting in the region of A1PI that was sensitive to chloramine T inactivation and one with a molecular weight of approximately 180 K which was chloramine T insensitive. The parenteral administration of chloramine T to hamsters resulted in a modest and transient diminution of the serum HLE inhibitory activity and an equally modest and transient elevation of PPE inhibitory activity.

Animals

Antimicrobial activity of N-chloramine compounds.

Cellular mechanisms of action of two representative N-chloramines were studied. Both compounds, 3-chloro-4,4-dimethyl-2-oxazolidinone (I) and N-chlorosuccinimide (III), inhibited bacterial growth and exerted profound inhibition of bacterial DNA, RNA, and protein synthesis at a concentration of 10(-5) M. Enzymes containing sulfhydryl groups generally were significantly inhibited by these chloramines at 10(-4) M. Dihydrofolate reductase, which contains no sulfhydryl groups, also was inhibited but at much higher chloramine concentrations (10(-2) M); ribonuclease, which also contains no sulfhydryl groups, was unaffected. All of these inhibitory effects of the chloramines could be prevented if sulfhydryl-containing reagents (mercaptoethanol or dithiothreitol) were added before or together with the chloramine. Once inhibition was produced by the chloramine, it was not reversible by later addition of the sulfhydryl reagents. These results suggest that these chloramines act at sulfhydryl sites as well as at other sites in both cells and purified enzymes.

Anti-Bacterial Agents

Effects of chloramine-T on charge movement and fraction of open channels in frog nodes of Ranvier.

The effects of chloramine-T, a substance which partially and irreversibly inhibits inactivation of the Na current (Wang 1984), on the on and off charge movement (Qon and Qoff) and on the relative position of the Qon-E and F-E curves were studied on voltage clamped frog nodes of Ranvier. The decrease of Qoff with increasing pulse duration which is seen in normal fibres was much less pronounced in chloramine-T-treated fibres, i.e. chloramine-T inhibited charge immobilization. Also, the decrease of the time constant tau off which normally accompanies the decrease of Qoff was absent in chloramine-T-treated fibres. A correlation (r2 = 0.80) between the relative tau off and the relative Qoff was observed in chloramine-T-treated fibres. The voltage dependence of the on charge movement, Qon-E, was compared with the voltage dependence of the fraction of open channels, F-E. In normal fibres, the F-E curve rose very steeply and crossed the normalized Qon-E curve so that F greater than Qon/Qon max for E greater than -40 mV. After chloramine-T treatment, the F-E curve rose less steeply and remained below the normalized Qon-E curve at all potentials. The effect of halazone was similar to that of chloramine-T but weaker. The observations about the Qon-E and F-E curve are compared with the findings on the squid giant axon.

Action Potentials

Effect of an exposure to chloramine-T on the immunoreactivity of glucagon.

Various preparations of glucagon treated with chloramine-T under different conditions have been studied with respect to their immunoreactivity toward two different glucagon antisera; one specific for pancreatic glucagon and the other capable of reacting with enteroglucagon as well. The glucagon preparations exposed to chloramine-T for different periods reacted almost identically with the nonspecific antibody whether they were used as tracer or standard. On the contrary, treatment with chloramine-T under severe conditions led to reduced immunoreactivity toward the specific antibody. Inclusion of dimethyl sulfoxide (DMSO) in the chloramine-T reaction resulted in preservation of the immunoreactivity of the treated preparations. The cyanogen bromide cleaved-glucagon, (1-26) homoserine lactone, showed little cross-reactivity with the specific antibody whereas it reacted to a similar extent with the nonspecific antibody as natural glucagon did. Amino acid analysis of the hormone exposed to chloramine-T demonstrated that the methionine residue at position 27 in the glucagon molecule had been oxidized to methionine sulfoxide. In addition, tryptophan had also been affected. DMSO protected methionine and tryptophan from the oxidative action of chloramine-T. We postulate from these results that the change in the immunoreactivity toward the specific antibody of glucagon exposed to chloramine-T is mainly due to oxidation of the methionine residue at position 27 in the molecule. The usefulness of DMSO in the iodination process is also discussed.

Animals

Illness in hemodialysis patients after exposure to chloramine contaminated dialysate.

In September 1987, patients at an outpatient dialysis center were exposed to chloramine contaminated dialysate when the carbon filter in a recently modified water treatment system failed. Forty-one patients required transfusion to treat the resultant hemolytic anemia. Epidemiologic investigation demonstrated that the mortality rate among dialysis center patients increased during the 5 months after chloramine exposure when compared with the 12 months before chloramine exposure, but no deaths could be attributed to the exposure. Chloramine is commonly used as a disinfectant in municipal water supplies, and has previously been reported to cause hemolytic anemia in patients undergoing dialysis. Hemodialysis centers in cities that use chloramine in water supplies must design water treatment systems with adequate means for removing chloramine and must monitor processed water closely to ensure that chloramine contamination does not occur. Dialysis centers that make changes in their water processing systems should evaluate all components of the system before changes are made, and must ensure that after modifications are made, processed water meets the standards set by the Association for Advancement of Medical Instrumentation.

Ambulatory Care Facilities

[Mechanism of the interaction of chloramine with Pseudomonas aeruginosa].

The disinfecting effect of chloramine on P. aeruginosa depends on the concentration of this disinfecting agent, the concentration of P. aeruginosa and the period of exposure, with consideration for the time of attaining equilibrium between the concentration of chloramine and P. aeruginosa, affinity between the disinfectant and bacterial cells, the number of chloramine-binding sites on a bacterial cell, the admixture of organic substances, pH and other environmental characteristics. The interaction of chloramine and P. aeruginosa can be subdivided into two stages: (1) the binding of the disinfectant by bacterial cells and (2) the death of the microbes. The mathematical description of the process of disinfection requires that the main characteristics be expressed in molecular parameters and the time factor be correlated with the terms of attaining the equilibrium for free and bound chloramine. The average number of binding sites for chloramine on a bacterial cell and the affinity constant of chloramine to binding sites have been estimated.

Chloramines

Immunological and biophysical properties of hepatitis B antigen labeled by the chloramine-T and by the lactoperoxidase methods.

Optimal conditions were sought for the radiolabeling of microgram quantities of hepatitis B surface antigen (HBs Ag) employing the chloramine-T or lactoperoxidase iodination procedures. Preparations of HBsAg labeled by these procedures are referred to as chloramine-T preparations and lactoperoxidase preparations, respectively. Labeled HBsAg having specific activities between 10-20 muCi/mug were found to display the greatest degree of sensitivity for unlabeled HBsAg and for anti-HBs using a double-antibody radioimmunoassay (RIA-DA). Increasing the specific activity above this level redulted in a decreased affinity of labeled 1251-HBs Ag for anti-HBs, indicating that soluble antigenic alterations had developed. At equivalent specific activities, chloramine-T preparations competed less effectively for unlabeled HBs Ag than lactoperoxidase preparations, and anti-HBs endpoint titers were slightly reduced, especially among preparations of high specific activity (greater than or equal to 65 muCi/mug). Chloramine-T preparations of HBs Ag (sp. act. 15--30 muCi/mug) showed essentially no antigenic deterioration over a 2-month period at minus 196 degrees C or minus 70 degrees C. Utilization of optimally labeled 1251-HBs Ag has increased the sensitivity of the RIA-DA for unlabeled HBs Ag 30-fold to a level below 1 ng/ml and enhanced antiamine-T method revealed that only the most acidic population was labeled (pH 3.75+/-0.5). In contrast, six antigenic components with distinct pI values ranging from 3.7 to 5.2 were detected by RIA-DA in both unlabeled HBs ag and in the chloramine-T preparation. This indicated that the chloramine-T method did not radically change the relative number or charge of each of the pI populations present in purified preparations of HBs Ag. Analysis of HBs Ag iodinated by the lactoperoxidase procedure revealed the presence of three of four populations of particles with pI values ranging from 3.9 to 4.5, suggesting that this procedure labels HBs Ag more uniformly.

Chloramines

Chemical modification of tryptophanase by chloramine T: a possible involvement of the methionine residue in enzyme activity.

Tryptophanase purified from Escherichia coli B/1t7-A was irreversibly inactivated by chloramine T (sodium N-chloro-p-toluenesulfonamide). The mode of inactivation was rather complex and did not follow pseudo-first-order kinetics. The inactivation of the apoenzyme was much faster than that of the holoenzyme. The Km value for the synthetic substrate S-o-nitrophenyl-L-cysteine (SOPC) increased concomitantly with the modification. In contrast, the Km value for the coenzyme, pyridoxal 5'-phosphate (PLP), was not altered. L-Serine, another substrate, and L-alanine, a competitive inhibitor, protected the enzyme from inactivation. Determination of SH groups in the enzyme protein with 5,5'-dithiobis(2-nitrobenzoic acid) (DTNB) showed that modification of two SH groups per enzyme subunit resulted in a complete inactivation. When the enzyme was subjected to chloramine T-modification following the SH group modification with DTNB, further inactivation was still observed, even after the addition of dithiothreitol. The SH-blocked enzyme preparation thus obtained, however, exhibited less pH dependency of inactivation by chloramine T than that of the native enzyme. The amino acid analysis of the chloramine T-modified enzyme showed that modification of four or five methionine residues among the 16 residues per subunit proceeded concomitantly with the complete inactivation. Modification of the enzyme with chloramine T quenched the absorption peak near 500 nm, characteristic of a quinoidal structure formed by labilization of the alpha-proton. These results suggest the possibility that chloramine T modifies not only the SH groups, but also methionine residues important for the catalytic activity of the enzyme.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acids