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Biomedical subjects

R C Hastings

Publications and source records attributed to R C Hastings.

At least 19 recordsLinked to original sources

Conjugation of soluble CD4 without loss of biological activity via a novel carbohydrate-directed cross-linking reagent.

Chemical conjugates of recombinant soluble CD4 (sCD4) with toxins, or with antibodies that activate cytotoxic T cells, can be used to direct selective killing of human immunodeficiency virus (HIV)-infected cells. This approach takes advantage of the ability of sCD4 to bind with high affinity to gp120, the envelope protein of HIV-1, which is expressed on actively infected cells. However, conjugation of sCD4 via reagents that target amino groups may reduce its affinity for gp120, since at least one such group is important for gp120 binding. Here, we describe a novel cross-linking reagent which enables the conjugation of sCD4 via its carbohydrate moieties rather than its free amino groups. This heterobifunctional reagent, 4-(4-N-maleimidophenyl)butyric acid hydrazide (MPBH), combines a nucleophilic hydrazide with an electrophilic maleimide, thereby allowing coupling of carbohydrate-derived aldehydes to free thiols. We describe conditions by which MPBH is coupled selectively to the sialic acid residues of sCD4, and exemplify the use of MPBH by conjugating sCD4 to hemoglobin and to beta-galactosidase. We show that, whereas conjugation of sCD4 via amino groups markedly reduces its gp120 binding affinity, conjugation via the carbohydrate chains using MPBH does not affect binding. Moreover, we demonstrate the ability of a sCD4-MPBH-fluorescein conjugate to label HIV-infected human CEM cells selectively. These results indicate that, by targeting its carbohydrate moieties, sCD4 can be cross-linked to other molecules without compromising its function. The approach described here can be useful for glycoproteins in which amino groups, but not carbohydrates, are important for function. More generally, this approach can be considered for use in cross-linking glycoconjugates to compounds which either contain thiols, or to which thiols can be added.

CD4 Antigens

Reversal of drug resistance in Mycobacterium leprae by ampicillin/sulbactam.

The multiplication of Mycobacterium leprae in foot pads of experimentally-infected mice was suppressed by intramuscular administration of ampicillin combined with sulbactam or YTR-830H, two potent inhibitors of beta-lactamase in the bacteria. The antibiotic or the inhibitors by themselves were inactive. Ampicillin/sulbactam also inhibited the growth of drug-resistant M. leprae which grew in the presence of rifampin or dapsone. The finding provides a new approach to treat leprosy and to overcome drug resistance of the mycobacteria.

Ampicillin

Seasonal and spatial trends in the detectability of leprosy in wild armadillos.

A survey for leprosy among 565 armadillos from Louisiana and Texas found IgM antibodies to the phenolic glycolipid-1 antigen of Mycobacterium leprae in 16% of the animals. There were no geographic trends in the distribution of prevalence rates between the sites and the disease probably has a much greater range. Repeat observations in one location showed significant seasonal variations in the observable antibody prevalence rate, but the yearly average remained similar. Infected armadillos tended to be heavier, and the females usually had plasma progesterone concentrations indicative of sexual maturity. Using these characteristics to stratify the populations into adult and sub-adult cohorts, variations in the observable leprosy prevalence rate were seen to be proportional to changes in the age structure of the populations. Leprosy appears to be maintained in steady state within some regions, and nearly a third of the adult armadillos in Louisiana and Texas harbour M. leprae.

Animals

Comparison of polymerase chain reaction technique with other methods for detection of Mycobacterium leprae in tissues of wild nine-banded armadillos.

Thirty, nine-banded armadillos weighing between 3 and 5 kilograms trapped from an area endemic for armadillo leprosy were collected at random; killed, autopsied and examined histopathologically. Also, one of the right inguinal lymph nodes was removed under sterile precautions and examined using PCR, direct smear examination, mouse footpad study, culture in laboratory media and histopathology with a view to detecting Mycobacterium leprae. Blood was collected at death and tested for IgM antibodies to PGL-1. According to the PCR study of the inguinal lymph nodes 16 of 30 armadillos (53.3%) had evidence of M. leprae. Significant levels of IgM antibodies to PGL-1 and identifiable lepromatous granuloma in inguinal lymph nodes were found in 2 animals (6.7%) with advanced disseminated disease. The prevalence of generalized leprosy according to autopsy study was 13.3% and according to histopathological examination of ear tissue 3.3%. The presence of M. leprae in the tissues evoked no special tissue reaction in the early stages. The pattern of spread of the disease in 2 animals closely resembled that found in experimental animals infected intracutaneously. Initiation of infection by inoculation of M. leprae through thorn pricks remains a distinct possibility.

Animals

The activity of rifabutin against Mycobacterium leprae.

Minimal effective doses of rifabutin and rifampicin were determined in Mycobacterium leprae isolated from skin biopsies of newly diagnosed, previously untreated lepromatous leprosy patients. Rifabutin was more potent than rifampicin. Our previous report that rifabutin was fully active against rifampicin-resistant M. leprae could not be confirmed. Examination of two strains of rifampicin-resistant M. leprae from elsewhere, and a repeat experiment on our original strain of rifampicin-resistant bacilli, showed full cross-resistance between rifampicin and rifabutin. A clinical trial in three newly diagnosed, previously untreated lepromatous patients showed that rifabutin has rapid bactericidal activity.

Adult

Isolation and characterization of an environmental acid-fast organism producing diphenoloxidase activity in vivo.

Water and soil samples were collected from natural habitats of the nine-banded armadillo and tested for the presence of acid-fast organisms by injection into the foot pads of experimental mice. Sixteen months post inoculation an acid-fast organism was isolated from the foot pad and spleen of one of the mice. The isolate exhibited diphenoloxidase activity as determined by its ability to convert D-3,4-dihydroxyphenylalanine to the corresponding quinone. The same organisms grown in vitro lacked detectable diphenoloxidase activity. However, diphenoloxidase activity was observed in acid-fast organisms harvested from spleen tissue of mice experimentally inoculated with a pure culture of the isolate. The environmental isolate was tentatively classed with the Mycobacterium avium-intracellulare complex.

Animals

Skin pigmentation from clofazimine therapy in leprosy patients: a reappraisal.

Skin biopsy specimens from two lepromatous leprosy patients with dark brown pigmentation who were receiving long-term clofazimine therapy were studied. Ceroid-lipofuscin pigment was demonstrated inside macrophages that contained numerous phagolysosomes. These contained lipids and clofazimine that appeared as electron-lucent vacuoles and a lipofuscin pigment that was electron dense, granular, and lamellated. Although the presence of the drug in tissues contributed to the skin pigmentation, the main cause was a drug-induced, reversible ceroid lipofuscinosis.

Aged

Antibodies to the phenolic glycolipid-1 antigen for epidemiologic investigations of enzootic leprosy in armadillos (Dasypus novemcinctus).

Other than man, nine-banded armadillos (Dasypus novemcinctus) are the only known natural hosts of leprosy with high rates of disease. The origin, range and risk of their infection is not yet clear and a better description of the rate of leprosy over the armadillo's range is needed. Both histopathological examination of armadillo ear tissues and serologic screening for IgM antibodies to the phenolic glycolipid-1 (PGL-1) antigen of Mycobacterium leprae are good relative indices of enzootic prevalence. A survey of 216 armadillos from Louisiana and Florida detected infection only among Louisiana animals. Average antibody prevalence (12.5%) was five times higher than the fully disseminated disease rate described histopathologically (2.7%). The differences in antibody and histopathological prevalence are due to the sensitivity of the methods for detecting early infection. Histopathological examinations describe an advanced disease. The higher antibody prevalence of wild armadillos is not likely to be the result of false positive serologies from self-healing infections or other casual encounters with M. leprae as might be mimicked by lepromin injection. The environmental reservoir of M. leprae represented by infected armadillos is greater than could be previously estimated.

Animals

In vitro effects of antimicrobial agents on Mycobacterium leprae in mouse peritoneal macrophages.

Mycobacterium leprae synthesizes large quantities of a specific phthiocerol-containing phenolic glycolipid in vivo. We have shown earlier that viable M. leprae readily incorporates radiolabeled palmitic acid into phenolic glycolipid I when residing in cultured macrophages in vitro and that this process is inhibited by the antileprosy drug rifampin. In the present paper we report that application of this observation to the rapid evaluation of over 25 antimicrobial agents for potential antileprosy activity in vitro. All the known antileprosy drugs rifampin, dapsone, clofazimine, and ethionamide inhibited phenolic glycolipid I synthesis. Rifabutin, a spiropiperidyl derivative of rifamycin, also reported to be active in the mouse model, was very effective. Interestingly, the macrolides erythromycin, clarithromycin, and roxithromycin were also found to be active in this system, while D-cycloserine and other cell wall synthesis inhibitors showed no effect. Many of the compounds found to be active in this system have been reported to be effective in vivo in mice. This correlation lends support to the feasibility of using phenolic glycolipid I synthesis for the rapid evaluation of new drugs against leprosy.

Animals

Single lesion subpolar lepromatous leprosy and its possible mode of origin.

Three case reports of patients with a single, nodular, subpolar lepromatous skin lesion, one on the left elbow, another on the posterior aspect of the left leg, and the third on the extensor ulnar aspect of the right forearm, are presented. The lesions, clinically and histopathologically, resemble lepromas which develop at the site of experimental inoculation of Mycobacterium leprae in armadillos. These are sites on the body which are likely to be traumatized. With the distinct possibility of the presence of viable M. leprae in the soil of Louisiana and Texas from wild armadillos with the natural disease, it is suggested that these three patients acquired the infection from the environment and had inoculation lepromas.

Adult

Intracellular parasitism of parenchymal cells by Mycobacterium leprae.

The liver, skeletal muscle, and adrenal gland obtained from two nine-banded armadillos infected with Mycobacterium leprae were studied using an electron microscope. M. leprae were found in varying numbers inside hepatocytes, Kupffer's cells, striated muscle cells, adrenal cortical and adrenal medullary cells, endothelial cells, and macrophages. There was evidence to suggest that M. leprae were actively phagocytosed by the liver and skeletal muscle cells. The inert nature of M. leprae and its behavior as an almost ideal parasite of parenchymal cells are emphasized. The question of whether this unique parasitism of parenchymal cells and the possible processing and presentation of M. leprae antigens by these cells could be responsible for aberrant immune responses is raised.

Adrenal Cortex

Infection with live mycobacteria inhibits in vitro detection of Ia antigen on macrophages.

Both antigen-specific and non-specific anergy are common features of disseminated mycobacterial infections, and the pathogenesis of such anergy is as yet not fully understood. To date, most studies have focused on the efferent limb of the immune response, and no detailed information is available on the early macrophage-T cell interaction and its consequence on T cell clonal proliferation. To gain information on this crucial phase of mycobacteriosis, we have conducted studies to evaluate the effect of M. kansasii infection on Ia expression induced by T cell-derived lymphokine and have assessed whether such cells can adequately present either mycobacterial or allogeneic antigens to T cells. In vitro infection of mouse resident peritoneal macrophages with live but not heat-killed M. kansasii resulted in a significantly reduced percentage of cells expressing monoclonal antibody detectable Ia antigen following optimal stimulation with crude lymphokine preparations or recombinant mouse gamma interferon. In parallel experiments, macrophages infected with the mycobacteria were co-cultured with syngeneic in vivo M. kansasii sensitized non-adherent, nylon-wool purified lymph node cells, and lymphoproliferation was measured by [3H]thymidine incorporation. It was shown that in co-cultures with macrophages infected with live M. kansasii, the lymphocyte proliferation was marked even in very low infection ratios. In contrast, the response to heat-killed bacilli was dose dependent, reaching peak levels only in high infection ratios. The ability of infected macrophages to present allogeneic antigens was assessed using the mixed leukocyte reaction. Macrophages infected with heat-killed M. kansasii were able to induce a mixed leukocyte reaction similar to uninfected macrophages whereas macrophages infected with live M. kansasii were unable to stimulate allogeneic T cells. These findings may have implications on immunological disturbances often seen in mycobacterial infections, such as leprosy, in which there can be large numbers of non-toxic viable intracellular bacilli.

Animals

In vitro and in vivo activities of macrolides against Mycobacterium leprae.

We previously demonstrated the potent in vitro activity of erythromycin against Mycobacterium leprae as determined by its effect on ATP pools and rates of palmitate oxidation and phenolic glycolipid I synthesis. In the present study, the relative in vitro activities of a number of new macrolides with superior pharmacokinetic properties were assessed. In addition, for the most active compounds, concentrations in serum were determined by bioassay during continuous administration in the feed of mice, and in vivo activity against M. leprae was assessed by the kinetic mouse footpad technique. Both clarithromycin and roxithromycin were more potent than erythromycin in vitro, with the former showing the highest activity in accelerating rates of ATP decay and reducing rates of palmitate oxidation. In mice, concentrations of clarithromycin in serum were higher than those of roxithromycin and erythromycin, with the latter undetectable even when administered at 0.1% (wt/wt) in the diet. When administered at 0.01% (wt/wt) in the diet, erythromycin and roxithromycin were unable to inhibit growth of M. leprae in mouse footpads whereas clarithromycin demonstrated bactericidal-type activity. On the basis of these data and other properties of macrolides, a clinical trial of clarithromycin in leprosy is warranted.

Animals