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Ammonium ion requirement for the cell cycle of Mycobacterium avium.

Mycobacterium avium has a defined cell cycle in which small cells elongate to about five times their original length and then divide by fragmentation. The nitrogen requirement for production of maximal number of colony-forming units was assessed by varying concentrations and kinds of nitrogen source in the medium. Ferric ammonium citrate at a concentration in 7H10 medium of 0.17 mumol/ml or ammonium chloride at 0.25 mumol/ml as the nitrogen source permitted the cells to elongate and to undergo limited division, with the final culture at 4 x 10(7) colony-forming units per ml. Ammonium chloride at 2.5 mumol/ml or glutamine at 1.37 mumol/ml supported completion of the cell cycle with final colony-forming units at about 5 x 10(8)/ml. Other amino acids, including glutamic acid, at 2.5 mumol/ml did not support completion of the cell cycle, although in most cases an intermediate number of colony-forming units per milliliter were formed. Limited uptake of [(14)C]glutamic acid and uptake of [(14)C]glutamine were not detectable until cell fission began. Cells not limited for nitrogen took up five times as much (35)S during fission as limited cells did during the same time. The nonlimited cells contained 10 times as much sulfolipid as the nitrogen-limited cells at the end of the cell cycle. These results demonstrate that rapidly dividing cells of M. avium utilize amino acids and sulfur and also synthesize sulfolipids in events that are apparently separable from metabolic functions of elongating cells. The results are contrasted with those found for other mycobacteria in which no cell cycle has been demonstrated.

Amino Acids

Heat inactivation of Mycobacterium avium-Mycobacterium intracellulare complex organisms in meat products.

Wieners and sausages were prepared which contained the most heat-tolerant representative of the Mycobacterium avium-Mycobacterium intracellulare complex we were able to obtain. They also were prepared with infected tissues obtained from tuberculous swine. Processing conditions were as varied as possible. Neither incorporation of sodium nitrite in the emulsion nor presence of smoke during processing altered the heat susceptibility of the organisms. Substantial killing of the organisms occurred as wieners reached the upper processing temperatures, but hot oil or radiant heating of the "precooked" sausages allowed very short times within the killing range; hence, higher peak internal temperatures were necessary. The lethalities for these organisms of reaching and maintaining various processing temperatures are given.

Animals

Heat inactivation of Mycobacterium avium-Mycobacterium intracellulare complex organisms in aqueous suspension.

Isolants from swine and from humans representing serotypes 1, 2, 4, 8, and 10 of the Mycobacterium avium-Mycobacterium intracellulare complex were compared for heat tolerance in aqueous suspension. The most heat-resistant isolant found was a serovar 10 isolated from a human. This isolant was examined further to determine the rate of kill at various temperatures and pH's, the effect of meat protein and fat, and the effect of nitrite. Kill rates were not significant at 60 degrees C or below. Decimal reduction values were 4 min or less at 65 degrees C and 1.5 min or less at 70 degrees C. Kill rates were slightly higher at pH values of 6.5 and 7.0 than at 5.5 or 6.0. the water-soluble fraction of wiener emulsion did not alter kill rates, but the saline-soluble fraction protected the organism somewhat. Fat did not affect the survival of the organisms except to eliminate the protective effect of saline extract when the suspension contained 50% fat. The addition of sodium nitrite to the suspension did not alter the heat sensitivity of the organisms.

Animals

Comparative Transcriptomic Analysis of Human Macrophages During Mycobacterium avium Versus Mycobacterium tuberculosis Infection.

The treatment of Mycobacterium avium (Mav) infection, responsible for over 80% of nontuberculous mycobacterial pulmonary disease, remains challenging due to rising antibiotic resistance and unsatisfactory success rates. Hence, there is a need for a deeper understanding of host-pathogen interactions to inform the development of alternative therapeutic approaches, like host-directed therapy (HDT), aimed at improving host antimycobacterial defenses. However, compared to Mycobacterium tuberculosis (Mtb) infections, knowledge of host-pathogen interactions for Mav infection is still limited. To address this knowledge gap, we performed a genome-wide host transcriptomic analysis of Mav-infected primary human macrophages-the primary host cell-alongside Mtb-infected macrophages to leverage insights from Mtb research. Our findings show substantial overlap in the gene expression patterns between Mav-infected and Mtb-infected macrophages, including induction of cytokine responses and modulation of various G-protein coupled receptors (GPCRs) involved in (lipid-mediated) macrophage immune functions. Notable differences were observed in the expression of immediate early genes (IEGs), phospholipases, and genes of the GTPase of immunity-associated protein (GIMAP) family. This study laid a foundation for identifying both shared and Mav-specific host response pathways, providing direction for future investigations into host-pathogen interactions during Mav infection and the identification of novel targets for HDT.

Humans

[Experimental findings after application of Kveim antigen. III. Sensitization of mice with living and killed strains of Mycobacterium avium (author's transl)].

Mice were infected with Mycobacterium avium (serotype I and serotype II). The application of kveim antigen or two kinds of lipid fractions of Mycobacterium avium (serotype I or II) is followed in all cases by typical tissue reactions resembling positive kveim tests. Control animals which only received kveim antigen or lipid fractions of mycobacterium I showed in all cases negative kveim reactions. Sensibilization of mice with killed kinds of Mycobacterium avium I or II leads after application of kveim antigen or lipid fractions (outside and inside lipids of Mycobacterium avium I and II) only in few cases to positive kveim reactions.

Animals

Understanding recurrence in Mycobacterium avium complex pulmonary disease: genotypic strategies to support clinical decision-making.

Pulmonary disease caused by Mycobacterium avium complex (MAC-PD) is a chronic, recurrent disease, and its high recurrence rate after treatment makes clinical management difficult. Distinguishing whether recurrence is due to persistence of existing strains or reinfection with new strains is essential for establishing treatment strategies, preventing overuse of antimicrobials, and establishing infection control measures. According to reports, 54%-74% of MAC-PD recurrence is due to reinfection, which may be mainly related to environmental reservoirs such as household water supply. In this review, we present various clinical scenarios in which MAC-PD recurrence may occur and examine genotyping techniques as a strategy to distinguish and respond to them. From traditional methods such as IS1245-based restriction fragment length polymorphism, pulsed-field gel electrophoresis, and hsp65 and rpoB gene sequencing to high-resolution analysis techniques such as multilocus sequence testing and whole-genome sequencing, the latest molecular typing methods are comprehensively summarized. Integrating these genotype data into clinical settings, standardizing single-nucleotide polymorphism-based interpretation thresholds, and promoting the establishment of a global MAC strain database will make a substantial contribution to more accurately distinguishing the recurrence mechanisms of MAC-PD and establishing personalized treatment strategies.IMPORTANCEThe global burden of nontuberculous mycobacterial pulmonary disease (PD) is increasing, with Mycobacterium avium (MAC)-PD being the most prevalent and clinically challenging form. Its low treatment success rates, high frequency of recurrence, and persistent environmental exposure complicate both diagnosis and management. A critical clinical issue is determining whether recurrence represents true relapse, due to persistence of the original strain, or reinfection with a new strain, as this guides treatment and prevents overtreatment. Genotypic strategies capable of resolving strain-level differences can improve diagnostic accuracy, prevent misclassification, and ultimately support more informed treatment decisions. Therefore, integrating genotyping data into clinical workflows, standardizing single-nucleotide polymorphism thresholds, and establishing a global MAC strain database will not only support personalized treatment but also enhance the broader public health response to this disease.

Humans

[Experimental findings after application of Kveim antigen. I. Sensibilization of guinea pigs by mycobacterium avium (author's transl)].

Guinea pigs were injected intraperitoneally with different types of mycobacterium avium (serotypes 1, 2 and 3). 4 weeks later followed the injection of Kveim antigen into the foodpats. Beside a high rate of non-specific foreign body reactions in all groups, histological pictures resembling a positive Kveim test were found only in the group of animals which received Mycobacterium avium serotype 1.

Animals

Prospective outcomes of adults with speciated Mycobacterium avium complex lung disease, 2021-2026.

RATIONALE: Mycobacterium avium complex lung disease (MAC-LD) is clinically heterogeneous and carries diverse outcomes. OBJECTIVES: To describe predictors of clinical progression of MAC-LD in a state-wide cohort. METHODS: We enrolled adults with MAC-LD from across Virginia, USA starting in 2021. Every 6 months we performed respiratory quality of life questionnaire, scored CT scans, and recorded respiratory mycobacterial cultures including MAC speciation. Outcomes were classified using NTM-NET consensus definitions, factors predicting clinical progression analyzed by Poisson regression, and hierarchical clustering on principal components derived from Factorial Analysis of Mixed Data. MEASUREMENTS AND MAIN RESULTS: Of 105 participants the median follow-up was 917 days. Mean age was 69.8 years, 79 (75%) were women, and 70 (67%) had nodular bronchiectasis. M. intracellulare was the most common species, present in 48 (46%) participants at enrollment, followed by M. avium (29, 28%), and M. intracellulare subspecies chimaera (11, 10%). Only 2 (9%) of 22 evaluable participants met the NTM-NET definition of cure. In all participants after multivariable adjustment, older baseline age (incidence rate ratio 1.03 [1, 1.06], p = 0.04) and fibrocavitary CT scan pattern (2.57 [1.33, 4.96], p = 0.005), were associated with unfavorable 12-month clinical progression. Species type and species persistence contributed to characteristics of three distinct phenotypes of MAC-LD of varying severity and clinical progression. CONCLUSIONS: The majority of participants were not assessable for MAC-LD treatment outcomes using strict NTM-NET definitions. Species informed phenotypes of MAC lung disease are prognostically useful and can inform routine management and trial design.

M. intracellulare

Enzyme-linked immunosorbent assay for detecting antibodies in swine infected with Mycobacterium avium.

Enzyme-linked immunosorbent assay (ELISA) was used for detecting the antibodies in sera from swine experimentally infected with Mycobacterium avium. Positive ELISA reactions were observed in the sera of each of six swine at postinoculation weeks 2, 4, 6, 8, and 10; no reaction was observed in noninoculated controls. The ELISA reactions were observed in each of two swine at 4, 6, 8, 10 weeks following exposure to M avium-infected swine. Mycobacterium avium-purified protein derivative and killed cells of M avium serotype 4/8 and serotype 8 provided suitable ELISA reactions in M avium-infected swine.

Animals

Genomic characterisation of recurrent Mycobacterium avium isolates from chronically infected patients reveals patterns of within-host evolution.

BACKGROUND: Mycobacterium avium complex causes chronic and difficult-to-treat infection in vulnerable patient groups, and incidence is increasing worldwide. Whole genome sequencing has the potential to reveal new information about how M. avium persists over time in the human lung. METHODS: We analysed the genomes of 287 isolates of M. avium that were sampled longitudinally from 56 patients. Our dataset included 50 newly sequenced genomes from a cohort of 20 patients from Ireland who were sampled for up to 10 years, and we compared these to 237 published genomes from 2 pre-existing cohorts from Europe to evaluate strains from Ireland in a wider context. Additionally, we performed a combined analysis across the 3 cohorts to examine the changes that occurred over the course of infection. RESULTS: We identified 2 instances where strains from Ireland clustered with strains from Europe within a 13-SNP threshold, supporting previous observations that dominant circulating clones of M. avium are present internationally. Across the 3 cohorts, we found that the communities of M. avium evolved over time within individual hosts, and we report that acquisition of new strains is frequent. Importantly, our findings suggest that M. avium may adapt to the conditions that it faces in the host, with evidence of positive selection of 13 distinct mycobacterial genes. Notably, multiple virulence-associated genes were under selection, including genes that could confer resistance to antibiotics and host defence mechanisms. CONCLUSIONS: Whole genome sequencing provides novel insights into within-host evolution of M. avium and highlights potentially important mycobacterial strategies to enhance persistence that may provide new targets for therapeutic investigation.

Humans

Iron-chelating compound from Mycobacterium avium.

A iron-chelating monohydroxamate was isolated from cultures of Mycobacterium avium grown on an iron-limiting medium. The hydroxyamate metabolite was characterized by chemical degradation and spectral measurements as L-alpha-asparaginyl-L-alpha-(N-hydroxy)-asparagine.

Asparagine

[Experimental findings after application of Kveim antigen. II. Sensibilization of mice and guinea pigs by Mycobacterium avium (serotype I) (author's transl)].

Mice and guinea pigs were sensibilisized by intraperitoneal injection of Mycobacterium avium (serotype I). Three and five weeks later (guinea pigs) and four weeks later (mice) the animals received kveim antigen into the footpads (guinea pigs) and into the perianal fat tissue (mice). Three and five weeks later (guinea pigs) and four weeks later (mice) the exstirpated material was investigated by light microscopy and enzyme histochemistry. Guinea pigs showed three and five weeks after injection of kveim antigen a lot of questionable positive and positive kveim tests and mice a high percentage of granulomatous changes, resembling a positive kveim reaction. With histochemical methods leucinaminopeptidase is a valuable diagnostic aid for detection of granulomatous changes in mice but not so good in guinea pigs.

Acid Phosphatase

Comparison of four culture media for isolation of Mycobacterium avium complex from porcine tissues.

The efficiency of four culture media was compared for the isolation of Mycobacterium avium complex from 197 procine tissues. In 82 tissues with microscopic granulomas and acid-fast bacilli, a significantly greater number of isolates were obtained on Middlebrook 7H10 medium with sodium pyruvate than on Stonebrink medium, Herrold egg yolk agar medium, or Lowenstein-Jensen medium (P=0.01). In 46 tissues in which no microscopic granulomas or acid-fast bacilli were observed, a significantly greater number of isolates were made on Middlebrook 7H10 medium or Herrold egg yolk agar medium than on Stonebrink medium or on Lowenstein-Jensen medium (P=0.01). The time required to grow M. avium complex on Lowenstein-Jensen medium was significantly greater than the time required to observe growth on Stonebrink, Middlebrook 7H10, or Herrold egg yolk agar medium (p=0.001).

Animals

An enzyme-labeled antibody test for detecting antibodies in chickens infected with Mycobacterium avium serotype 2.

An enzyme-labeled antibody test was used for detecting antibodies in serums from chickens infected experimentally with Mycobacterium avium serotype 2. Positive ELA reactions were observed in the serums of each of 8 chickens 2, 4, 6, and 8 weeks after infection; no reactions were observed in uninfected controls. Tuberculin skin tests did not induce positive ELA test reactions in uninfected chickens.

Animals