Search PubMedSearch

SEARCH · Search PubMed

Results for “Chloroquine”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

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

At least 19 recordsLinked to original sources

Rapid chloroquine efflux phenotype in both chloroquine-sensitive and chloroquine-resistant Plasmodium falciparum. A correlation of chloroquine sensitivity with energy-dependent drug accumulation.

Recent reports suggest that lower levels of chloroquine accumulation in chloroquine-resistant isolates of Plasmodium falciparum are achieved by energy-dependent chloroquine efflux from resistant parasites. In support of this argument, a rapid chloroquine efflux phenotype has been observed in some chloroquine-resistant isolates of P. falciparum. In this study, no relationship was found between chloroquine sensitivity and the rate of [3H]chloroquine efflux from four isolates of P. falciparum with a greater than 10-fold range in sensitivity to chloroquine. All the isolates tested displayed the rapid efflux phenotype, irrespective of sensitivity. However, chloroquine sensitivity of these isolates was correlated with energy-dependent rate of drug accumulation into these parasites. Verapamil and a variety of other compounds reverse chloroquine resistance. The reversal mechanism is assumed to result from competition between verapamil and chloroquine for efflux protein translocation sites, thus causing an increase in steady-state accumulation of chloroquine and hence a return to sensitivity. Verapamil accumulation at a steady-state is increased by chloroquine, possibly indicating competition for efflux of the two substrates. Increases in steady-state verapamil concentrations caused by chloroquine were identical in sensitive and resistant strains, suggesting that similar capacity efflux pumps may exist in these isolates. These data suggest that differences in steady-state chloroquine accumulation seen in these isolates can be attributed to changes in the chloroquine concentrating mechanism rather than the efflux pump. It seems likely that chloroquine resistance generally in P. falciparum, results at least in part from a change in the drug concentrating mechanism and that changes in efflux rates per se are insufficient to explain chloroquine resistance.

Animals

Chloroquine resistance in malaria: variations of substrate-stimulated chloroquine accumulation.

The response of [14C]chloroquine accumulation to the provision of substrate was evaluated using washed erythrocytes infected with Plasmodium berghei CS (chloroquine-susceptible), with P. berghei CR (chloroquine-resistant), with Plasmodium vinckei CS, with P. vinckei CR, or with a strain of P. berghei spontaneously resistant to chloroquine, Plasmodium berghei yoelii 17X. Erythrocytes infected with chloroquine-resistant parasites had a blunted response, particularly to low glucose concentrations. In the presence of 0.5 mM glucose in one set of experiments, for example, chloroquine accumulation increased by a factor of 8 in erythrocytes infected with P. berghei CS whereas there was no increase in erythrocytes infected with P. berghei CR or with P. berghei yoelii 17X; the difference between P. vinckei CS and P. vinckei CR was less dramatic. In every case except for P. berghei CR, the process of chloroquine accumulation in the presence of 5 mM glucose exhibited a component which became saturated at low concentrations of chloroquine in the medium. For P. berghei CR, plotting steady-state accumulation of chloroquine as a function of the concentration of chloroquine in the medium yielded a sigmoid curve, revealing that higher concentrations of chloroquine (above 100 mM) somehow relieve the blunted response to glucose and suggesting that the variation is in the process of accumulation rather than in substrate utilization.

Animals

Comparison of mefloquine, chloroquine plus pyrimethamine-sulfadoxine (Fansidar), and chloroquine as malarial prophylaxis in eastern Thailand.

From July 1983 to March 1984 a randomized double blind prophylactic trial in Thai gem miners working across the border in Cambodia was conducted to determine the prophylactic efficacy of 3 drug regimens against P. falciparum and P. vivax malaria along the Thai-Cambodian border. Gem miners have a high incidence of malaria. Maximum duration of individual participation was 14 weeks. Of 334 participants in this study who were seen every 2 weeks, 145 received mefloquine 500 mg fortnightly, 112 received chloroquine 300 mg base weekly plus Fansidar (1000 mg sulfadoxine and 50 mg pyrimethamine) fortnightly and 77 received chloroquine as 300 mg base weekly. The significant reduction of vivax malaria in study subjects (compared to background incidence) implied good compliance with self administration of chloroquine in the intervening weeks between scheduled appointments. The attack rate in each prophylactic regimen was 2188 cases/1000/year with mefloquine, 8338 cases/1000/year with chloroquine-Fansidar and 10,207 cases/1000/year receiving chloroquine alone. There was a 79% prophylactic efficacy for mefloquine and 18% efficacy for the chloroquine plus Fansidar regimen compared to chloroquine. Using life table analysis, 56% of the mefloquine group, 6% of the chloroquine-Fansidar group and 4% of the chloroquine group were malaria free at the end of the 14 weeks study. The chloroquine plus sulfadoxine-pyrimethamine regimen prescribed for prophylaxis is no longer effective for multidrug resistant strains of P. falciparum in the study area. This study also seriously questions the efficacy of mefloquine prophylaxis.

Adolescent

Energy dependence of chloroquine accumulation and chloroquine efflux in Plasmodium falciparum.

Chloroquine inhibits the growth of susceptible malaria parasites at low (nanomolar) concentrations because of an energy-requiring drug-concentrating mechanism in the parasite secondary lysosome (food vacuole) which is dependent on the acidification of that vesicle. Chloroquine resistance results from another energy-requiring process: efflux of chloroquine from the resistant parasite with a half-time of 2 min. Chloroquine efflux is inhibited reversibly by the removal of metabolizable substrate (glucose); it is also reduced by the ATPase inhibitor vanadate. These results suggest that chloroquine efflux is an energy-requiring process dependent on the generation and hydrolysis of ATP. Chloroquine efflux cannot be explained by differences in drug accumulation between chloroquine-susceptible and -resistant parasites because the 40-50-fold difference in initial efflux rates between -susceptible and -resistant parasites is unchanged when both parasites contain the same amount of chloroquine. Although chloroquine efflux is phenotypically similar to the efflux of anticancer drugs from multidrug-resistant (mdr) mammalian cells, it is not linked to either of the mdr-like genes of the parasite.

Adenosine Triphosphatases

Antenatal chloroquine chemoprophylaxis in Malawi: chloroquine resistance, compliance, protective efficacy and cost.

The roles of Plasmodium falciparum resistance to chloroquine and compliance in the protective efficacy of the antenatal chloroquine prophylaxis programme in Malawi were evaluated by interviewing pregnant women attending antenatal clinics and examining them for P. falciparum parasites in thick smears and chloroquine metabolites in urine. 36% of 642 women had urine chloroquine metabolite levels compatible with regular compliance to the weekly chloroquine dosage schedule. Among a subgroup of 288 pregnant women who were provided weekly prophylaxis under supervision for 4 consecutive weeks, P. falciparum infection rates were 37%, representing the failure of chloroquine to eliminate P. falciparum in Malawi. Among pregnant women not taking prophylaxis, the P. falciparum infection rate was 48%. Based on the P. falciparum infection rates among these 2 groups of women, the protective efficacy of CQ chloroquine was estimated as 23%. If the 36% of pregnant women who had chloroquine in their urines accurately estimates the proportion of women who comply with the prophylaxis programme in Malawi, the actual protective efficacy of the programme would be 8%. The cost of preventing one P. falciparum infection among pregnant women in the Malawi programme is estimated at US$ 10.87. This is an unacceptably high cost in much of Africa, and research is required to define more cost-effective interventions, including more effective drugs, and health education programmes to improve compliance among pregnant women.

Animals

Chloroquine-induced pruritus: its impact on chloroquine utilization in malaria control in Dar es Salaam.

To confirm reports that chloroquine-induced pruritus might have a negative impact on chloroquine utilization on malaria control in Dar es Salaam, a precoded questionnaire was administered to 300 malaria patients and the respondents were then followed up at their homes during the period of their malaria treatment. It was found that 45% of the study population had suffered from chloroquine-induced pruritus at some time in their life and 27% complained of it during the study. Chloroquine-induced pruritus was found to have a significant negative impact on chloroquine utilization on malaria control in Dar es Salaam, Tanzania (P less than 0.001). The defaulting rate attributable to chloroquine-induced pruritus was 64%. The high defaulting rate (91%) among the patients with chloroquine-induced pruritus is suspected to be among the factors that contribute to the emergence and spread of resistant malaria parasites in Dar es Salaam. However, studies are needed to confirm this point. Studies are also needed to determine if there may be familial predisposition to chloroquine-induced pruritus as hypothesized in this study.

Chloroquine

Lack of effect of desipramine on the response to chloroquine of patients with chloroquine-resistant falciparum malaria.

The potential of desipramine to improve the efficacy of chloroquine against chloroquine-resistant Plasmodium falciparum in vivo in man was investigated. Fifty-three malaria patients were selected according to the criteria for the standard World Health Organization (WHO) in vivo test and were randomly divided in 2 groups. One group (n = 27) was given standard therapeutic doses of chloroquine (25 mg/kg body weight of base) and the other (n = 26) was given standard doses of chloroquine, as above, in combination with desipramine (1.3-2.8 mg/kg body weight) daily for 3 consecutive days. Standard WHO in vitro micro-tests were performed in parallel with the tests in vivo to provide chloroquine sensitivity patterns of the P. falciparum parasites. The results in vitro from both groups did not differ with regard to chloroquine sensitivity and the means of the pre-treatment parasite densities were similar. There was no apparent difference in parasite clearance in vivo between the 2 groups. This study provided no evidence for enhanced chloroquine efficacy in vivo through the use of desipramine in doses corresponding to the usual therapeutic range.

Animals

Chloroquine inhibits the intracellular multiplication of Legionella pneumophila by limiting the availability of iron. A potential new mechanism for the therapeutic effect of chloroquine against intracellular pathogens.

Chloroquine and ammonium chloride, by virtue of their basic properties, have been shown to raise endocytic and lysosomal pH and thereby interfere with normal iron metabolism in a variety of cell types, including mononuclear phagocytes. Cellular iron metabolism is of critical importance to Legionella pneumophila, an intracellular bacterial pathogen whose capacity to multiply in human mononuclear phagocytes is dependent upon the availability of intracellular iron. In view of this, we have studied the effects of chloroquine and ammonium chloride on L. pneumophila intracellular multiplication in human monocytes. Chloroquine, at a concentration of 20 microM, and ammonium chloride, at a concentration of 20 mM, inhibited L. pneumophila intracellular multiplication by 1.4 +/- 0.2 (SEM) logs and 1.5 +/- 0.2 logs, respectively. Chloroquine- and ammonium chloride-induced inhibition of L. pneumophila intracellular multiplication was completely reversed by iron nitrilotriacetate, an iron compound which is soluble in the neutral to alkaline pH range, but not by iron transferrin, which depends upon acidic intracellular conditions to release iron. Chloroquine had no major direct effect on L. pneumophila multiplication in artificial media except at extremely high concentrations (15,000-fold that which inhibited L. pneumophila multiplication in mononuclear phagocytes), and inhibition at such concentrations was not reversed by iron nitrilotriacetate. This study demonstrates that chloroquine and ammonium chloride inhibit the intracellular multiplication of L. pneumophila by limiting the availability of iron to the bacterium. It is possible that such a mechanism of action underlies chloroquine's antimicrobial effect against other intracellular pathogens, such as the agents of malaria and tuberculosis.

Adult

[Alteration in resistance of Plasmodium falciparum to chloroquine after cessation of chloroquine medication for twelve years].

In view of the fact the resistance of Plasmodium falciparum to chloroquine occurred extensively in Hainan, a decision was made in 1979 that the use of chloroquine should be quit in the whole province. A longitudinal survey on chloroquine-sensitivity of P. falciparum was carried out during 1981-1991 to observe the variation in resistance of the parasite after the cessation of the chloroquine medication for every 2-3 years. A tendency of progressive decline of resistance was revealed. By using in vitro test, the rate of chloroquine-resistant P. falciparum dropped from 97.9% in 1981 to 60.9% in 1991 (P < 0.001). The mean dosage of chloroquine for complete inhibition of schizont formation declined from 10.46 pmol/microliters in 1981 to 3.02 pmol/microliters in 1991 (P < 0.001). The percentage of population requiring larger dosage (6.4 pmol/microliters to completely inhibit schizont formation declined from 83.3% in 1981 to 17.4% in 1991 (P < 0.001); whereas those requiring small dosage (1.6 pmol/microliters), increased from 4.2% in 1981 to 60.8% in 1991 (P < 0.001). In in vivo test, the rate of chloroquine-resistant P. falciparum decreased from 84.2% in 1981 to 40% in 1991 (P < 0.001). The proportion of RII plus RIII cases of the total resistant cases dropped from 59.4% in 1981 to 37.5% in 1991 (0.02 > P > 0.01).

Animals

Evidence for a relationship between chloroquine and complement from studies with lymphocyte mitogens: possible implications for the mechanism of action of chloroquine in disease.

Chloroquine increases the inhibition of cultured lymphocytes by high concentrations of phytohemagglutinin (PHA) or concanavalin A (Con A). The inhibition is also increased by complement. Thus chloroquine and complement have similar effects. Time-course studies show that chloroquine increases the rate of onset of the complement-dependent inhibition. In serum preheated to inactivate complement, chloroquine can partially simulate the effect of complement. It is suggested that at certain stages in malaria or autoimmune disease the rate of clearance of parasitized erythrocytes or autoreactive lymphocytes is limited by the concentration of complement. Under these conditions a drug such as chloroquine, which could enhance or simulate the action of complement, might be of therapeutic value.

Animals

Chloroquine treatment in rheumatoid arthritis. Correlation of clinical response to plasma protein changes and chloroquine levels.

15 patients with active RA were observed over a 3-month period after starting chloroquine treatment. Clinical condition, plasma levels of chloroquine and levels of 15 individual plasma proteins were checked monthly. Nine patients responded favourably to therapy, 6 failed to respond. The responders had lower initial CRP, orosomucoid and ceruloplasmin levels, whereas their IgA and IgM levels were slightly elevated. Significant reductions in the levels of CRP, haptoglobin, orosomucoid, fibrinogen and ceruloplasmin occurred in the responder group of patients. Alfa1-antitrypsin, antichymotrypsin C3 and C4 levels within the normal range were frequently encountered despite other clear-cut signs of activity. The chloroquine levels did not differ between responders and non-responders, the mean concentrations being 1.04 and 1.6 micromol/l respectively. This study has also demonstrated that in selected cases, despite active joint disease, all acute phase proteins may be normal. Finally, it was obvious that chloroquine, even when inducing remission, only brought about a partial normalization of the plasma protein pattern.

Adult

Activity of azithromycin (CP-62,993) and erythromycin against chloroquine-sensitive and chloroquine-resistant strains of Plasmodium falciparum in vitro.

Several antibiotics, including the macrolide erythromycin and the azalides azithromycin (CP-62,993) and CP-63,956, that inhibit protein synthesis on 70S ribosomes demonstrated antimalarial effects in vitro against two strains of Plasmodium falciparum, one sensitive to chloroquine and the other resistant. In 48-hr incubations, erythromycin was 10-fold less potent than the azalides against the chloroquine-resistant strain. Erythromycin and the azalides were essentially equipotent against the chloroquine-sensitive strain. An additive effect occurred with the azalides in combination with chloroquine against both strains, but this was not seen with erythromycin.

Animals

Effects of chloroquine on the adrenocortical function. II. Histological, histochemical and biochemical changes in the suprarenal gland of rats on long-term administration of chloroquine.

White female Wistar rats were used in order to study the influence of long-term oral application of 7-chloro-4-(4-diethylamino-1-methylbutylamino) quinoline (chloroquine) in doses of 30, 40 and 80 mg of base/kg upon the suprarenal gland. Histological, histochemical and biochemical findings give evidence of adrenocortical activation induced by chloroquine at all dose levels tested. The differences between the signs of adrenocortical activation as observed after the various doses were only those of quantity and time onset. The results indicate that the stimulation of the suprarenal cortex produced by repeated administration of chloroquine is not solely a manifestation of toxic action of chloroquine.

Adrenal Glands

Effects of chloroquine on the adrenocortical function. III. Sex differences in concentrations of cholesterol and ascorbic acid in the suprarenal gland after a single administration of chloroquine in the rat.

Effects of single doses of 4-(4-diethylamino-1-methylbutylamino)-7-chloroquinoline (chloroquine diphosphate, Delagil Egyt) given orally (40, 80, 160 and 320 mg of base/kg) or s.c. (40, 80 and 120 mg of base/kg) upon cholesterol and ascorbic acid concentrations in the white rat suprarenal glands were followed up. The occurrence of signs of adrenocortical activation was found to be dependent on the route of application and sex of animals. Chloroquine given s.c. caused a decrease in ascorbic acid level only in doses close to LD50. The oral administration of chloroquine in doses of 80 mg/kg and more produced a significant decrease in cholesterol and ascorbic acid concentrations in the suprarenal glands of female rats, while in males chloroquine in any of the dose levels tested was without effect.

Administration, Oral

Increased frequency of chloroquine resistant P. falciparum on a rubber estate in Peninsular Malaysia during two years of systematic chloroquine treatment.

Chloroquine pressure was applied over a 22 month period on a somewhat isolated, malarious rubber estate by examination of residents at 4-week intervals and treatment of parasitaemias with chloroquine. During this time the monthly attack rate for P. falciparum rose four-fold to an average of nearly 18% per month, while that of P. vivax remained relatively constant at about 8%. Eight in vivo chloroquine resistance studies, which allowed both detection of late recrudescing R-I resistance and estimation of the risk of reinfection, showed an apparent rise in the drug resistance rate, from 12% to 20% prior to the study to the range of 40-50%. Virtually all resistance encountered was R-I in nature. There was no convincing evidence of chloroquine resistance among 148 tested P. vivax infections.

Blood

Studies on the resistance of malaria to chloroquine and to a combination of chloroquine and pyrimethamine in Peninsular Malaysia.

In vivo chloroquine resistance surveys, which allowed for detection of late recrudescing RI resistance, were conducted in three regions of Peninsular Malaysia, which were previously not recognized as having appreciable drug resistance. Among the 485 Plasmodium falciparum infections tested resistance rates ranged locally from 20% to 67% in those with parasitaemias over 1,000 per mm3, and 5% to 59% in all parasitaemias. The region found to have the most serious resistance was western Pahang. In one study a combination of chloroquine and pyrimethamine proved no more efficacious than chloroquine alone. Most of the resistance encountered was the late recrudescing RI type. There was no apparent correlation between drug resistance and Anopheles balabacensis as this species was not found despite intensive collections in two of the three main regions. There was no evidence of resistance among the 222 P. vivax and 35 P. malariae infections also tested.

Child

Chloroquine-resistant Plasmodium falciparum isolates from the Sudan lack two mutations in the pfmdr1 gene thought to be associated with chloroquine resistance.

Isolates of Plasmodium falciparum from 3 areas of the Sudan were recovered from cryopreservation in London and their chloroquine sensitivity was determined in vitro. Chloroquine resistance was detected in 6/6 isolates from Khartoum, 1/4 from Sennar and 3/3 from Gadarif, indicating that resistance is spreading. All the isolates were sensitive to mefloquine. Studies using blood spots on glass fibre discs and the polymerase chain reaction did not detect two mutations in the pfmdr1 gene, thought to be correlated with chloroquine-resistance, in any of the isolates studied.

Amino Acid Sequence