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Biomedical subjects

D H McRae

Publications and source records attributed to D H McRae.

14 recordsLinked to original sources

Acedapsone (DADDS) treatment of leprosy patients in the Karimui of Papua New Guinea: status at six years.

Acedapsone (DADDS), a repository sulfone given by injection five times a year, has been used since 1967 for the treatment of all leprosy patients in the Karimui, an area of diffic-lt access. More than 460 patients have been treated, 336 beginning in November 1967 and continuing through the latest assessment 6 years later. The injections have been well received and they have been administered very regularly. Clinical observations were begun before 1967, as a base-line of assessments was available for the patients whose disease appeared before that time. The response to DADDS therapy has been satisfactory except in 5 of the 28 multibacillary patients in whose smears solid-staining Mycobacterium leprae have reappeared. M. leprae was isolated in mice from three of these patients; one strain has been proven to be completely susceptible to dapsone (DDS), and the other two very probably are. DDS levels in the plasma of these five patients were normal and well above the minimal inhibitory concentration. The most probable explanation is that a few viable M. leprae survived in the presence of inhibitory concentrations of DDS for the 4 to 6 years during which dead bacilli were disintegrating and disappearing from the tissues. The other 23 multibacillary patients responded satisfactorily. The decrease in the number of M. leprae in the skin smears has been most prompt in patients with low initial bacterial loads and in those with borderline lepromatous diagnoses. A high initial bacterial load and a fully lepromatous diagnosis were associated with a slow initial loss of M. leprae in the 1st year, followed by a more rapid loss the next year. All of the multibacillary patients have now been treated by the addition of a 90-day course of rifampicin.

Acetamides↗

Relationship Between the Staining Quality of Mycobacterium leprae and Infectivity for Mice.

The proposal has been made that only solidly staining forms of Mycobacterium leprae are viable. On the basis of a previous study, solidly staining bacilli were defined as those that stained completely and darkly throughout their length. A study was carried out to correlate the proportion of solidly staining bacilli in inocula with the infectivity and rate of appearance of bacillary growth in inoculated mice. The inocula originated in skin biopsy specimens of patients and in mouse passage material; there were 347 inocula suitable for study. The rate of appearance of bacillary growth in inoculated mice confirmed the hypothesis that nonsolid bacilli are inert and nonviable and that all growth originates from the solidly staining organisms. The minimal infectious dose was determined in four suspensions and was found to range from 40 to 3 solidly staining bacilli.

Journal Article↗

Hereditary Characteristic that Varies Among Isolates of Mycobacterium leprae.

Isolates of Mycobacterium leprae in mouse foot pads were found to differ in two related properties, the average rate of growth between inoculation and harvest (G) and the number of bacilli in the harvest (H). For "fast" strains the median values for G were less than 25 days per generation, and the median values for H were above 10(6.1). For "slow" strains the median values for G were above 30, and the median values for H were below 10(5.6). The G and H values for the 59 isolates for which data were available formed a continuous spectrum between the two extremes; there was no correlation with dapsone resistance. The fastness characteristic was stable; it did not change on passage in mice and was in agreement when more than one isolate had been made from the same patient. No important differences were apparent according to geographic origin of the infection of the patient. Histological studies showed that fast strains grew to a higher level without inducing the infiltrate of lymphocytes and macrophages that appears at the end of the logarithmic phase of growth in mouse foot pads. Although fast strains often had higher ratios of solidly staining (and presumably viable) bacilli in the inoculum, the fast-slow difference was not accounted for by the solid ratio. Slow strains differed from fast by having longer times until harvest and by having fewer generations of growth, even when their frequently lower solid ratios were taken into account.

Journal Article↗

Metabolism of 3',4'-dichloropropionanilide: 3,4-dichloroaniline-lignin complex in rice plants.

Rice plants (Oryza sativa L. var. Bluebonnet 50) metabolize the herbicide 3',4'-dichloropropionanilide to 3,4-dichloroaniline, which in turn conjugates with carbohydrates. Soluble aniline-carbohydrate complexes account for only a small fraction of the hydrolyzed 3',4'-dichloropropionanilide. The major portion of the 3,4-dichloroaniline moiety is found complexed with polymeric cell constituents, mainly lignin. The aniline is lignin-bound as 3,4-dichloroaniline and not as 3',4'-dichloropropionanilide.

Anilides↗

Mechanism of selective action of 3',4'-dichloropropionanilide.

Studies have been carried out to determine the basis for the unique postemergence selective action of the rice herbicide, 3',4'-dichloropropionanilide (DPA), which controls a wide variety of weed species including barnyardgrasses. Absorption studies have shown that both rice (Oryza sativa, L.) and barnyardgrass (Echinochloa crusgalli, L.) foliage absorb DPA readily and equally and, consequently, morphological differences cannot account for its unique selective action. Through the use of uniformly (14)C ring labeled and carbonyl labeled DPA in short-term studies (1-3 days), it has been found that rice and barnyardgrass leaves hydrolyze DPA to 3,4-dichloroaniline (DCA). It is further shown that this is not a direct 1-step hydrolysis, but rather an oxidative metabolism of DPA to 3',4'-dichlorolactanilide (DLA) followed by hydrolysis to DCA and lactic acid. In rice, DLA is a transient intermediate and not isolatable under normal conditions, whereas DLA accumulates in barnyardgrass and is readily isolated. The oxidative metabolism of DPA is rapid in rice but slow in barnyardgrass. Thus, DPA is detoxified rapidly in rice, but accumulates in barnyardgrass to lethal proportions and this difference is proposed as the primary basis for the selective action of DPA.Additional evidence for this mechanism comes from studies on the interaction of certain insecticides with DPA. It is known that the tolerance of rice and other crops to DPA can be completely eliminated when an insecticide such as carbaryl is present with the herbicide in the crop. Under these conditions, it has been found that DLA accumulates in the rice as it does in DPA treated barnyardgrass.

Anilides↗