Search bioRxiv⌕ Search

bioRxiv · 10.1101/2022.11.29.518155

A novel and simple heat-based method eliminates the highly detrimental effect of xylene deparaffinization on acid-fast stains.

Abstract

ObjectivesHistopathology is an important method for the diagnosis of extrapulmonary tuberculosis, yet tissue sections are often negative for mycobacteria after acid-fast-staining (AFS). This study investigated the mechanism of AFS and the detrimental effect of histological processing, in particular xylene deparaffinization, on AFS staining and mycobacterial detection. MethodsThe target of the fluorescent Auramine O (AuO) AFS was investigated using triple staining with DNA and RNA specific dyes. The effect of xylene deparaffinization on acid-fastness of mycobacteria in cultures or tissue sections was studied using AuO fluorescence as a quantitative marker. The xylene method was compared to a novel, solvent-free projected-hot-air-deparaffinization (PHAD). ResultsColocalization of AuO with DNA/RNA stains suggests that intracellular nucleic acids are the true target of AFS, producing highly specific patterns. Xylene reduces mycobacterial fluorescence significantly (p<0,0001, moderate effect size: r = 0.33). PHAD yielded significantly higher fluorescence than xylene deparaffinization in tissues (p<0.0001, large effect size: r = 0.85). ConclusionsAuO can be applied for nucleic-acid-staining of mycobacteria in tissues producing typical beaded patterns. AFS depends crucially on the integrity of the mycobacterial cell-wall, which seems to be damaged by xylene. A solvent-free tissue deparaffinization method has the potential to increase mycobacterial detection significantly. Key PointsAcid-fast-stains for mycobacterial detection have a notoriously poor yield, due to misconceptions of the underlying staining principle, but mainly because of the possible detrimental effect of xylene. The yield of acid-fast-stains for mycobacterial detection in histology, including fluorescent stains, can be significantly increased by eliminating solvents (xylene) in the deparaffinization step. Acid-fast-stains depend on bacterial integrity because they target nucleic acids. A simple hot air deparaffinization is significantly superior to xylene, avoiding damage to the lipid-rich cell wall.

Source connections

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Marinho, P. F., Vieira, S. L., Carvalho, T. G., Peleteiro, M. C., Hanscheid, T.. 2022-11-30. A novel and simple heat-based method eliminates the highly detrimental effect of xylene deparaffinization on acid-fast stains.. https://doi.org/10.1101/2022.11.29.518155

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related preprints

Identification of Novel Inhibitors of JEV RdRp as Potent Antiviral Drugs: Targeting NS5-NS3 Protein Interaction

Japanese Encephalitis Virus (JEV) belongs to the Flavivirus family, and the RNA dependent RNA polymerase (RdRp) domain located at the C terminus of non structural protein 5 (NS5) regulates de novo viral genome synthesis. The conserved priming loop inserted in the thumb domain of RDRP initiates de novo genome synthesis. Interestingly, the reported replication process initiates with an interaction between NS5 (methyltransferase/RDRP) and NS3 (protease/helicase), and inhibiting this interaction directly correlates with the inhibition of viral replication. The function of the priming loop in the context of the NS5 NS3 interaction is not yet known. In this study, we studied the priming loop function in the NS5 NS3 interaction and viral replication. Using a structure based drug design approach, we screened the Maybridge compound library against the RdRp priming loop and identified 15 candidate compounds based on binding energy. Among them, DSHS00151 showed significant dose dependent inhibition of the NS5 NS3 interaction with an IC50 of 3.5 micromolar in the mammalian two hybrid assay, inhibited viral infectivity with an IC50 of 2.54 micromolar, and reduced viral RNA load with an IC50 of 2.9 micromolar, compared to CD10712. Molecular Dynamics (MD) simulations revealed that DSHS00151 exhibits stronger and more stable binding with the priming loop residues (790 to 812) compared to CD10712. The molecular mechanism suggested by the docking of the NS5 and NS3 proteins showed that the priming loop tends to rotate toward the NS3 protein to stabilize the complex, and compound binding restricts this loop rotation, thus compromising the stability of the NS5 and NS3 complex and affecting viral replication. Overall, our study validated the function of the NS5 priming loop as an allosteric site, and compounds binding to this allosteric site belong to the Non Nucleoside Reverse Transcriptase Inhibitors (NNRTI) class of inhibitors, which disrupt the NS5 and NS3 interaction and could be developed as novel anti JEV therapeutics.

pathology↗

Autophagic flux is increased in peripheral blood mononuclear cells in atherosclerotic vascular disease and associates inversely with adverse cardiovascular events

Background: Autophagy is a homeostatic pathway supporting stress adaptation and is dysregulated in atherosclerosis. Its potential as a biomarker or therapeutic target in atherosclerotic vascular disease (ASVD) remains incompletely defined. We measured autophagic flux in peripheral blood mononuclear cells (PBMCs) from patients with peripheral arterial disease (PAD) or carotid stenosis (CS), compared with healthy controls, and explored clinical outcome associations. Methods: Ninety-four patients with PAD or CS and 19 healthy controls were studied. Autophagic flux was quantified from fresh blood using a validated ex vivo chloroquine inhibition ELISA measuring LC3BII accumulation. Major adverse cardiovascular events (MACE) and major adverse limb events (MALE) were ascertained over a median follow up of 828 days. Results: The ASVD cohort comprised claudication (n = 16), chronic limb threatening ischemia (CLTI; n = 49), and CS (n = 29). Autophagic flux was higher in ASVD than controls (mean 281.4 vs. 182.3 ng LC3BII/mg protein/h; p < 0.0001) and remained independently associated after multivariable adjustment. Within CLTI, concurrent infection was associated with lower flux (p = 0.001), approaching control levels (p = 0.327). In CLTI, higher flux quartiles were associated with lower MACE risk, most strongly for quartile 3 (hazard ratio 0.07 vs. quartile 1, 95% CI 0.01 to 0.50; p = 0.009). Conclusion: Autophagic flux is elevated in PBMCs from ASVD patients, independent of age and sex. Attenuated flux in CLTI with concurrent infection may indicate autophagic exhaustion in advanced disease. The association between higher flux and lower MACE in CLTI suggests prognostic utility, warranting evaluation in larger prospective studies.

pathology↗

Quantitative Model of the Ocular Immune Response during Seasonal Allergic Conjunctivitis

Allergic conjunctivitis is an inflammation of the conjunctiva caused by allergen; it is common disorder affecting up to 40% of the population. In this work, we study seasonal allergic conjunctivitis (SAC), also called "hay fever eyes", which is caused by exposure to airborne pollens. We develop a mathematical model quantifying the ocular immune system response to the allergens. First, we present a simplified qualitative description of the immunopathogenesis of SAC. Then, we express each chosen immunopathological mechanism mathematically to construct a system of thirty-one ordinary differential equations. We compare summary statistics of the predicted observable immune signals to experimental measurements and find our model captures key qualitative features of SAC progression. We then compare our predicted time series of histamine concentration to symptom scores and find a strong correlation suggesting the model predicts relevant clinically trends. Next, we calibrate the model through multi-step process. We find the most influential parameters are the production and depletion rates of IL-4, and the production rates of IL-5 and IL-8. These cytokines are targeted in treatments for asthma, atopic dermatitis, and severe eosinophilic associated disorder and suggest potential therapeutic targets for SAC. Our calibrated model mimics most of the summary statistics of the experimentally observable immune signals with discrepancies for IL-5 and IL-13 indicating that additional immunopathological mechanisms could be important.

pathology↗