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[Lymph node tuberculosis--today].

The peripheral tuberculosis of the lymph nodes on the neck, in the axilla and on the groin is described in its present epidemiological situation, its pathogenesis, diagnosis and therapy. Nowadays the tuberculosis of the lymph nodes most frequently occurs at older age and in women. In most cases the M. tuberculosis is the causative organism. The differential diagnosis must take into consideration many possibilities and sources of error--also for the following therapy and expert opinion--, in most cases it demands a histological and bacteriological examination of the exstirpated lymph nodes. This is at the same time the first step to therapy which consists in the removal of all enlarged lymph nodes in the area of the disease and in a 2-phase-chemotherapy for the duration of one year.

Adult

Lymph node tuberculosis: a comparison of various methods of treatment.

The treatment of lymph node tuberculosis has been studied in 108 patients. Chemotherapy consisted of 18 months' isoniazid with either rifampicin or ethambutol, plus an initial supplement of streptomycin. These 2 regimens were randomly allocated to 19 patients who had previously undergone excision of the lymph nodes, 56 patients who had undergone biopsy and 33 patients who had not had any surgical procedures. The majority of patients were of Indian or Pakistani origin (80%). Histological evidence of tuberculosis was obtained in 64% of the 108 patients and M. tuberculosis was cultured in 30%. No other mycobacteria were grown. Progress during treatment was uneventful in 65% of patients. Fresh nodes appeared during treatment in 12%, existing nodes enlarged in 13% and fluctuation developed in 11% of patients. Discharge and/or sinus formation was infrequent (7%), as was breakdown of a surgical scar (4%). Excision or aspiration after the start of chemotherapy was performed in 19% of patients. In the period up to the end of chemotherapy no difference emerged between the patients who received rifampicin with isoniazid and those who received ethambutol with isoniazid. Satisfactory results were obtained in 98% of the patients by the end of treatment although 13% still had slight node enlargement. The place of surgery is discussed. Follow-up will continue for 18 months after the end of chemotherapy.

Adolescent

Lymph node tuberculosis: a comparison of treatments 18 months after completion of chemotherapy.

Ninety patients with lymph node tuberculosis were treated with either rifampicin and isoniazid or ethambutol and isoniazid for 18 months, supplemented by sheptomycin for the first two months. No differences emerged between the two regimens, either during treatment or during an 18 month post-chemotherapy follow-up. In 7% of patients lymph nodes enlarged transiently after the end of treatment and in 7% enlarged nodes persisted. No patient required further treatment. One patient was left with an intermittently discharging sinus in an operation scar.

Adolescent

Xpert MTB/RIF Ultra assay for tuberculosis disease and rifampicin resistance in children.

BACKGROUND: In 2023, an estimated 1.3 million children (aged 0-14 years) became ill with tuberculosis, and 166,000 children (aged 0-15 years) died from the disease. Xpert MTB/RIF Ultra (Xpert Ultra) is a molecular World Health Organization (WHO)-recommended rapid diagnostic test that detects Mycobacterium tuberculosis complex and rifampicin resistance. This is an update of a Cochrane review first published in 2020 and last updated in 2022. Parts of the current update informed the 2024 WHO updated guidance for the diagnosis of tuberculosis. OBJECTIVES: To assess the diagnostic accuracy of Xpert Ultra for detecting pulmonary tuberculosis, tuberculous meningitis, lymph node tuberculosis, and rifampicin resistance in children (aged 0-9 years) with presumed tuberculosis. SEARCH METHODS: We searched the Cochrane Central Register of Controlled Trials (CENTRAL), MEDLINE, Embase, three other databases, and three trial registers without language restrictions to 6 October 2023. SELECTION CRITERIA: For study design, we included cross-sectional and cohort studies and randomized trials that evaluated Xpert Ultra in HIV-positive and HIV-negative children aged birth to nine years. Regarding specimen type, we included studies evaluating sputum, gastric, stool, or nasopharyngeal specimens (pulmonary tuberculosis); cerebrospinal fluid (tuberculous meningitis); and fine needle aspirate or surgical biopsy tissue (lymph node tuberculosis). Reference standards for detection of tuberculosis were microbiological reference standard (MRS; including culture) or composite reference standard (CRS); for stool, we considered Xpert Ultra in sputum or gastric aspirates in addition to culture. Reference standards for detection of rifampicin resistance in sputum were phenotypic drug susceptibility testing or targeted or whole genome sequencing. DATA COLLECTION AND ANALYSIS: Two review authors independently extracted data and assessed methodological quality using the tailored QUADAS-2 tool, judging risk of bias separately for each target condition and sample type. We conducted separate meta-analyses for detection of pulmonary tuberculosis, tuberculous meningitis, lymph node tuberculosis, and rifampicin resistance. We used a bivariate model to estimate summary sensitivity and specificity with 95% confidence intervals (CIs). We assessed certainty of evidence using the GRADE approach. MAIN RESULTS: This update included 23 studies (including 9 new studies since the previous review) that evaluated detection of pulmonary tuberculosis (21 studies, 9223 children), tuberculous meningitis (3 studies, 215 children), lymph node tuberculosis (2 studies, 58 children), and rifampicin resistance (3 studies, 130 children). Seventeen studies (74%) took place in countries with a high tuberculosis burden. Overall, risk of bias and applicability concerns were low. Detection of pulmonary tuberculosis (microbiological reference standard) Sputum (11 studies) Xpert Ultra summary sensitivity was 75.3% (95% CI 68.9% to 80.8%; 345 children; moderate-certainty evidence), and specificity was 95.9% (95% CI 92.3% to 97.9%; 2645 children; high-certainty evidence). Gastric aspirate (12 studies) Xpert Ultra summary sensitivity was 69.6% (95% CI 60.3% to 77.6%; 167 children; moderate-certainty evidence), and specificity was 91.0% (95% CI 82.5% to 95.6%; 1792 children; moderate-certainty evidence). Stool (10 studies) Xpert Ultra summary sensitivity was 68.0% (95% CI 50.3% to 81.7%; 255 children; moderate-certainty evidence), and specificity was 98.2% (95% CI 96.3% to 99.1%; 2630 children; high-certainty evidence). Nasopharyngeal aspirate (6 studies) Xpert Ultra summary sensitivity was 46.2% (95% CI 34.9% to 57.9%; 94 children; moderate-certainty evidence), and specificity was 97.5% (95% CI 95.1% to 98.7%; 1259 children; high-certainty evidence). Xpert Ultra sensitivity was lower against CRS than against MRS for all specimen types, while the specificities were similar. Extrapulmonary tuberculosis Meta-analysis was not possible for lymph node tuberculosis and tuberculous meningitis due to low study numbers. Interpretation of results For a population of 1000 children, where 100 have pulmonary tuberculosis: In sputum: • 112 would be Xpert Ultra positive, of whom 75 would have pulmonary tuberculosis (true positives) and 37 would not (false positives). • 888 would be Xpert Ultra negative, of whom 863 would not have pulmonary tuberculosis (true negatives) and 25 would have pulmonary tuberculosis (false negatives). In gastric aspirate: • 151 would be Xpert Ultra positive, of whom 70 would have pulmonary tuberculosis (true positives) and 81 would not (false positives). • 849 would be Xpert Ultra negative, of whom 819 would not have pulmonary tuberculosis (true negatives) and 30 would have pulmonary tuberculosis (false negatives). In stool: • 85 would be Xpert Ultra positive, of whom 68 would have pulmonary tuberculosis (true positives) and 17 would not (false positives). • 915 would be Xpert Ultra negative, of whom 883 would not have pulmonary tuberculosis (true negatives) and 32 would have pulmonary tuberculosis (false negatives). In nasopharyngeal aspirate: • 68 would be Xpert Ultra positive, of whom 46 would have pulmonary tuberculosis (true positives) and 22 would not (false positives). • 932 would be Xpert Ultra negative, of whom 878 would not have pulmonary tuberculosis (true negatives), and 54 would have pulmonary tuberculosis (false negatives). Detection of rifampicin resistance Three studies with 76 children evaluated detection of rifampicin resistance (sputum only); two of these studies reported no cases and one reported rifampicin resistance in two children. AUTHORS' CONCLUSIONS: Xpert Ultra sensitivity was moderate in sputum, gastric aspirate, and stool specimens. Nasopharyngeal aspirate had the lowest sensitivity. Xpert Ultra specificity was high against both MRS and CRS. We were unable to determine the accuracy of Xpert Ultra for detecting tuberculous meningitis, lymph node tuberculosis, and rifampicin resistance due to a paucity of data. FUNDING: This update was funded through WHO. REGISTRATION: The protocol for this review was originally published through Cochrane in 2019. The protocol for this update was a generic protocol that consolidated previously published Cochrane protocols of Xpert Ultra for tuberculosis detection and can be accessed at https://osf.io/26wg7/. Protocol (2019) DOI: 10.1002/14651858.CD013359 Original review (2020) DOI: 10.1002/14651858.CD013359.pub2 Review update (2022) DOI: 10.1002/14651858.CD013359.pub3.

Adolescent

Tuberculosis of the cervical lymph nodes : a clinical, pathological and bacteriological study.

Biopsies taken from the lymph nodes of 59 consecutive patients with cervical lymph node tuberculosis were examined bacteriologically and histologically. The series consisted of 18 men (mean age 40 years) and 41 women (mean age 46 years). Mycobacteria were isolated from 41 specimens (69 per cent), M. tuberculosis from 40 patients and a mycobacterium of the M. avium-M. intracellulare complex from one. All the M. tuberculosis strains were sensitive to streptomycin, isoniazid and PAS. No mycobacteria were isolated from the biopsy specimens of the 10 patients who had received anti-tuberculosis drug previously. Mycobacteria were isolated equally often from caseating and non-caseating lymph nodes. In 10 specimens acid-fast bacilli could be demonstrated by staining, but attempts at isolation were unsuccessful. Nine of these 10 patients had been treated with anti-tuberculosis drugs previously. Histological examination of the specimen from which a growth of 'atypical' mycobacteria had been obtained failed to show any distinctive features. The results of treatment are given over a follow-up period of 2 years. Primary chemotherapy was not entirely successful. Of 52 patients treated in this way only 38 responded well. By contrast 19 patients were treated by a combination of chemotherapy and surgery and the outcome was satisfactory in all but one.

Adult

[Tuberculosis of peripheral lymph nodes (author's transl)].

The diagnosis and therapy of tuberculosis involving peripheral lymph nodes is discussed in a series of thirthy patients. Diagnosis is best made by both bacteriological and histologic study. Therapy is best effected by combining medical tuberculostatics with operative intervention. Epithelioid cell or proliferative forms of lymph node tuberculosis best respond to medical management.

Adult