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1.
Sci Rep ; 14(1): 12856, 2024 06 04.
Article in English | MEDLINE | ID: mdl-38834637

ABSTRACT

The recommended first-line treatment for Mycoplasma genitalium infections is azithromycin. However, the prevalence of macrolide resistance for M. genitalium has increased to more than 50% worldwide. In 2013, Australia introduced a resistance-guided therapy (RGT) strategy to manage M. genitalium infections. This study assesses the cost-effectiveness of the RGT approach compared to no RGT (i.e., without macrolide resistance profile test) in women, men who have sex with men (MSM), and men who have sex with women (MSW) in Australia. We constructed dynamic transmission models of M. genitalium infections in women, MSM, and MSW in Australia, each with a population of 100,000. These models compared the costs and quality-adjusted life-years (QALYs) gained between RGT and no RGT scenarios from a healthcare perspective over ten years. All costs are reported in 2022 Australian dollars (Australian $). In our model, RGT is cost saving in women and MSM, with the incremental net monetary benefit of $1.3 million and $17.9 million, respectively. In MSW, the RGT approach is not cost-effective, with an incremental cost-effectiveness ratio of -$106.96 per QALY gained. RGT is cost saving compared to no RGT for M. genitalium infections in women and MSM, supporting its adoption as the national management strategy for these two population groups.


Subject(s)
Anti-Bacterial Agents , Cost-Benefit Analysis , Drug Resistance, Bacterial , Mycoplasma Infections , Mycoplasma genitalium , Mycoplasma genitalium/drug effects , Humans , Australia/epidemiology , Mycoplasma Infections/drug therapy , Mycoplasma Infections/economics , Mycoplasma Infections/microbiology , Female , Male , Anti-Bacterial Agents/therapeutic use , Anti-Bacterial Agents/economics , Anti-Bacterial Agents/pharmacology , Azithromycin/therapeutic use , Azithromycin/economics , Quality-Adjusted Life Years , Adult , Macrolides/therapeutic use , Macrolides/economics
2.
BMC Infect Dis ; 24(1): 562, 2024 Jun 05.
Article in English | MEDLINE | ID: mdl-38840040

ABSTRACT

BACKGROUND: The impact of chickens on maintaining the economy and livelihood of rural communities cannot be overemphasized. In recent years, mycoplasmosis has become one of the diseases that affect the success of South African chicken production. Mycoplasma gallisepticum (MG) and Mycoplasma synoviae (MS) are the most prevalent strains of Mycoplasma in South Africa. MG and MS are significant respiratory pathogens affecting the productivity of chickens. The present study aimed to molecularly detect using qPCR and characterize the presence of MG and MS using phylogenetic analysis. The phylogenetic analysis was utilized to clarify general evolutionary relationships between related taxa of different MG and MS observed in tracheal swabs from South African chicken breeds. METHODS: Forty-five tracheal swabs of the Lohmann Brown (n = 9), Rhode Island Red (n = 9), Ovambo (n = 9), Venda (n = 9), and Potchefstroom Koekoek (n = 9) breeds were collected from symptomatic chickens present in the commercial farm. To detect MG and MS, DNA was extracted from tracheal swabs and faecal samples, and qPCR was performed with a 16 s rRNA (310 bp) and vlhA (400 bp) gene fragment. Following the sequencing of all the amplicons, MG, and MS dendrograms showing the evolutionary relationships among the five South African chicken breeds and the GeneBank reference population were constructed. RESULTS: The qPCR revealed the presence of MG and MS in 22% (2/9) of the tracheal swab samples tested for MS only in Rhode Island Red breeds; 66.6% (6/9) and 33% (3/9) of the tested samples in Ovambo breeds; and 11.1% (1/9) and 44.4% (4/9) of the tested samples in Venda breeds. No MG or MS were detected in the Lohmann Brown or Potchefstroom Koekoek breed. Furthermore, qPCR revealed the presence of MG in pooled faecal samples from Lohmann Brown and Ovambo breeds. Eight different bacterial isolates were recognized from both samples. Four isolates were of the 16 s ribosomal ribonucleic acid (rRNA) gene (named PT/MG51/ck/00, PT/MG48/ck/00, PT/MG41/ck/00 and PT/MG71/ck/00) gene of Mycoplasma gallisepticum, and the other was Mycoplasma Synoviae variable lipoprotein hemagglutinin A (vlhA) gene (named PT/MSA22/ck/01, PT/MS41/ck/01, PT/MS74/ck/01 and PT/MS46/ck/01) which were available in GenBank. These isolates were successfully sequenced with 95-100% similarity to the isolates from the gene bank. CONCLUSION: The study revealed the presence of both MG and MS in the chicken breeds sampled. Furthermore, the different breeds of chicken were found to be susceptible to infection under the intensive or commercial management system. Therefore, continuous surveillance is encouraged to prevent the spread and outbreak of MG and MS in the poultry industry in South Africa.


Subject(s)
Chickens , Mycoplasma Infections , Mycoplasma gallisepticum , Mycoplasma synoviae , Phylogeny , Poultry Diseases , Animals , Chickens/microbiology , South Africa , Mycoplasma Infections/veterinary , Mycoplasma Infections/microbiology , Mycoplasma Infections/epidemiology , Poultry Diseases/microbiology , Mycoplasma synoviae/genetics , Mycoplasma synoviae/isolation & purification , Mycoplasma synoviae/classification , Mycoplasma gallisepticum/genetics , Mycoplasma gallisepticum/isolation & purification , Mycoplasma gallisepticum/classification , Trachea/microbiology , RNA, Ribosomal, 16S/genetics , DNA, Bacterial/genetics , Feces/microbiology
3.
Sci Rep ; 14(1): 12931, 2024 06 05.
Article in English | MEDLINE | ID: mdl-38839816

ABSTRACT

The present study aimed to investigate endothelial glycocalyx (eGCx) damage in cats with feline hemotropic mycoplasmosis caused by Mycoplasma haemofelis using selected biomarkers and to determine the diagnostic and prognostic significance of these biomarkers. The study included 25 cats with feline hemotropic mycoplasmosis and 10 healthy cats. Clinical examination, blood gas analysis, complete blood count, and biochemical analysis were performed. Hemotropic mycoplasmosis diagnosed by microscopic examination and molecularly confirmed by PCR targeting the Mycoplasma haemofelis 16s rRNA gene. To evaluate endothelial glycocalyx damage, syndecan-1, endothelin-1 (ET-1), asymmetric dimethylarginine (ADMA), and vascular endothelial growth factor-A (VEGF-A) concentrations were measured using cat-specific commercial ELISA kits. Of the cats with feline hemotropic mycoplasmosis, 14 (56%) survived and 11 (44%) died. While syndecan-1 and ET-1 concentrations were significantly higher in cats with hemotropic mycoplasmosis compared to the control group (p < 0.001), no statistically significant difference was found for ADMA and VEGF-A concentrations (p > 0.05). Endothelial glycocalyx biomarkers showed significant correlations with each other and with hematological parameters (p < 0.01). The results of the ROC analysis showed that ET-1 with area under the curve (AUC) of 0.821 (p < 0.01) and VEGF-A with AUC of 0.805 (p < 0.010) were found to be significant prognostic indicators. In conclusion, this study demonstrated that serum syndecan-1 and ET-1 can be used as diagnostic and serum ET-1 and VEGF-A as prognostic biomarkers in cats with hemotropic mycoplasmosis. Our results indicate the development of eGCx damage in feline hemotropic mycoplasmosis and suggest that glycocalyx disruption may contribute to the pathogenesis of the disease.


Subject(s)
Biomarkers , Cat Diseases , Glycocalyx , Mycoplasma , Vascular Endothelial Growth Factor A , Animals , Cats , Glycocalyx/metabolism , Biomarkers/blood , Vascular Endothelial Growth Factor A/blood , Cat Diseases/microbiology , Cat Diseases/blood , Cat Diseases/diagnosis , Mycoplasma/genetics , Male , Female , Mycoplasma Infections/veterinary , Mycoplasma Infections/blood , Mycoplasma Infections/microbiology , Endothelin-1/blood , Syndecan-1/blood , Arginine/analogs & derivatives , Arginine/blood , Arginine/metabolism
4.
Parasit Vectors ; 17(1): 209, 2024 May 09.
Article in English | MEDLINE | ID: mdl-38720359

ABSTRACT

BACKGROUND: Feline-associated hemotropic Mycoplasma (hemoplasmas) are believed to be transmitted by two primary mechanisms: (1) direct transmission via fighting and (2) vector-borne transmission by the cat flea (Ctenocephalides felis). While the efficiency of transmission by C. felis appears low, most manuscripts focus on the prevalence of hemoplasmas in wild-caught fleas and report either a very low (< 3%) or a high (> 26%) prevalence. Therefore, we aimed to assess the influence of sample processing and PCR methods on C. felis hemoplasma infection prevalence. METHODS: A systemic review of PubMed articles identified 13 manuscripts (1,531 fleas/flea pools) that met the inclusion criteria (performed PCR for >1 hemoplasma on C. felis collected from cats). Risk of bias was assessed utilizing the ROBINS-E tool. Meta-analysis performed in R of these manuscripts found that not washing samples and a common set of 16S rRNA primers first published in Jensen et al. 2001 were associated with increased hemoplasma prevalence. To evaluate the influence of washing on newly collected fleas, we assessed the hemoplasma status of 20 pools of 5 C. felis each, half of which were washed and half not washed. RESULTS: Flea washing did not influence the detection of hemoplasma but instead amplified Spiroplasma. To assess non-specific amplification with the Jensen et al. 2001 primers, 67 C. felis samples (34% previously reported hemoplasma infected) were subject to PCR and sequencing. By this method, hemoplasma was detected in only 3% of samples. In the remaining "hemoplasma infected" fleas, PCR amplified Spiroplasma or other bacteria. CONCLUSIONS: Therefore, we concluded that hemoplasma infection in C. felis is rare, and future flea prevalence studies should sequence all positive amplicons to validate PCR specificity. Further investigation of alternative methods of feline-associated hemoplasma transmission and the ability of C. felis to maintain hemoplasma infection is necessary.


Subject(s)
Cat Diseases , Ctenocephalides , Mycoplasma Infections , Mycoplasma , Animals , Mycoplasma/isolation & purification , Mycoplasma/genetics , Mycoplasma/classification , Ctenocephalides/microbiology , Cats , Cat Diseases/parasitology , Cat Diseases/microbiology , Cat Diseases/diagnosis , Cat Diseases/transmission , Cat Diseases/epidemiology , Mycoplasma Infections/veterinary , Mycoplasma Infections/diagnosis , Mycoplasma Infections/epidemiology , Mycoplasma Infections/transmission , Mycoplasma Infections/microbiology , Flea Infestations/veterinary , Flea Infestations/parasitology , Flea Infestations/epidemiology , Polymerase Chain Reaction , Prevalence , RNA, Ribosomal, 16S/genetics
5.
Front Cell Infect Microbiol ; 14: 1368923, 2024.
Article in English | MEDLINE | ID: mdl-38694516

ABSTRACT

Introduction: Diagnosing Mycoplasma faucium poses challenges, and it's unclear if its rare isolation is due to infrequent occurrence or its fastidious nutritional requirements. Methods: This study analyzes the complete genome sequence of M. faucium, obtained directly from the pus of a sternum infection in a lung transplant patient using metagenomic sequencing. Results: Genome analysis revealed limited therapeutic options for the M. faucium infection, primarily susceptibility to tetracyclines. Three classes of mobile genetic elements were identified: two new insertion sequences, a new prophage (phiUMCG-1), and a species-specific variant of a mycoplasma integrative and conjugative element (MICE). Additionally, a Type I Restriction-Modification system was identified, featuring 5'-terminally truncated hsdS pseudogenes with overlapping repeats, indicating the potential for forming alternative hsdS variants through recombination. Conclusion: This study represents the first-ever acquisition of a complete circularized bacterial genome directly from a patient sample obtained from invasive infection of a primary sterile site using culture-independent, PCR-free clinical metagenomics.


Subject(s)
Genome, Bacterial , High-Throughput Nucleotide Sequencing , Metagenomics , Mycoplasma , Humans , Metagenomics/methods , Mycoplasma/genetics , Mycoplasma/isolation & purification , Mycoplasma/classification , Mycoplasma Infections/microbiology , Mycoplasma Infections/diagnosis , Whole Genome Sequencing/methods , Lung Transplantation , Prophages/genetics , Interspersed Repetitive Sequences/genetics , Anti-Bacterial Agents/pharmacology , Anti-Bacterial Agents/therapeutic use
6.
New Microbiol ; 47(1): 103-106, 2024 May.
Article in English | MEDLINE | ID: mdl-38700890

ABSTRACT

Trichomonas vaginalis and Mycoplasma hominis, two microorganisms causing infections of the urogenital tract, are closely associated in that they establish an endosymbiosis relationship, the only case among human pathogens. As a result, the presence of one microorganism may be considered a sign that the other is present as well. Identification of the two pathogens in clinical samples is based on cultivation techniques on specific media, even though in recent years, new sensitive and rapid molecular techniques have become. Here, we demonstrate that the concomitant presence of T.vaginalis in urogenital swabs may lead to a delay in the identification of M.hominis, and thus to an underestimation of bacterial infections when cultural techniques are used.


Subject(s)
Mycoplasma Infections , Mycoplasma hominis , Trichomonas vaginalis , Mycoplasma hominis/isolation & purification , Mycoplasma hominis/genetics , Trichomonas vaginalis/isolation & purification , Trichomonas vaginalis/genetics , Humans , Mycoplasma Infections/microbiology , Female , Trichomonas Vaginitis/microbiology , Trichomonas Vaginitis/parasitology , Trichomonas Vaginitis/diagnosis , Male , Sensitivity and Specificity , Urogenital System/microbiology , Urogenital System/parasitology , Adult
7.
Front Cell Infect Microbiol ; 14: 1398706, 2024.
Article in English | MEDLINE | ID: mdl-38756231

ABSTRACT

Introduction: Mycoplasma hominis (M. hominis) belongs to the class Mollicutes, characterized by a very small genome size, reduction of metabolic pathways, including transcription factors, and the absence of a cell wall. Despite this, they adapt well not only to specific niches within the host organism but can also spread throughout the body, colonizing various organs and tissues. The adaptation mechanisms of M. hominis, as well as their regulatory pathways, are poorly understood. It is known that, when adapting to adverse conditions, Mycoplasmas can undergo phenotypic switches that may persist for several generations. Methods: To investigate the adaptive properties of M. hominis related to survival in the host, we conducted a comparative phenotypic and proteogenomic analysis of eight clinical isolates of M. hominis obtained from patients with urogenital infections and the laboratory strain H-34. Results: We have shown that clinical isolates differ in phenotypic features from the laboratory strain, form biofilms more effectively and show resistance to ofloxacin. The comparative proteogenomic analysis revealed that, unlike the laboratory strain, the clinical isolates possess several features related to stress survival: they switch carbon metabolism, activating the energetically least advantageous pathway of nucleoside utilization, which allows slowing down cellular processes and transitioning to a starvation state; they reconfigure the repertoire of membrane proteins; they have integrative conjugative elements in their genomes, which are key mediators of horizontal gene transfer. The upregulation of the methylating subunit of the restriction-modification (RM) system type I and the additional components of RM systems found in clinical isolates suggest that DNA methylation may play a role in regulating the adaptation mechanisms of M. hominis in the host organism. It has been shown that based on the proteogenomic profile, namely the genome sequence, protein content, composition of the RM systems and additional subunits HsdM, HsdS and HsdR, composition and number of transposable elements, as well as the sequence of the main variable antigen Vaa, we can divide clinical isolates into two phenotypes: typical colonies (TC), which have a high growth rate, and atypical (aTC) mini-colonies, which have a slow growth rate and exhibit properties similar to persisters. Discussion: We believe that the key mechanism of adaptation of M. hominis in the host is phenotypic restructuring, leading to a slowing down cellular processes and the formation of small atypical colonies. This is due to a switch in carbon metabolism and activation the pathway of nucleoside utilization. We hypothesize that DNA methylation may play a role in regulating this switch.


Subject(s)
Adaptation, Physiological , Mycoplasma Infections , Mycoplasma hominis , Proteogenomics , Humans , Mycoplasma hominis/genetics , Mycoplasma hominis/metabolism , Mycoplasma Infections/microbiology , Biofilms/growth & development , Genome, Bacterial , Phenotype , Anti-Bacterial Agents/pharmacology , Bacterial Proteins/genetics , Bacterial Proteins/metabolism , Drug Resistance, Bacterial/genetics
8.
Comp Immunol Microbiol Infect Dis ; 109: 102187, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38703540

ABSTRACT

Hemotropic mycoplasmas are bacteria that attaches to erythrocytes surface, which some species presents zoonotic concerns. In the suborder Pinnipedia, genera Otaria and Arctocephalus are prominent in Brazil. This study investigated the occurrence of hemoplasmas in Arctocephalus sp. and Otaria flavescens found dead along the coast of a Southern Brazilian State. DNA from 135 spleen samples were extracted and subjected to conventional PCR protocols, targeting the 16 S rRNA and 23 S rRNA gene. Three (2.22 %) Arctocephalus australis were positive in the 16 S rRNA gene, and no samples amplified in the 23 S rRNA gene. Samples from this study clustered with Zalophus californianus and Arctocephalus tropicalis mycoplasmas on a Bayesian phylogenetic analysis. Genetic diversity analysis suggested distinct genotypes, indicating A. australis as a new host for hemoplasma, and also a potential putative novel hemoplasma genotype. These findings raises future awareness for pinnipeds conservation, and adds Mycoplasma spp. to be taken into consideration when clinically evaluating rescued animals.


Subject(s)
DNA, Bacterial , Fur Seals , Mycoplasma Infections , Mycoplasma , Phylogeny , RNA, Ribosomal, 16S , Spleen , Animals , Brazil/epidemiology , Mycoplasma/genetics , Mycoplasma/isolation & purification , Mycoplasma/classification , Fur Seals/microbiology , Mycoplasma Infections/veterinary , Mycoplasma Infections/microbiology , Mycoplasma Infections/epidemiology , RNA, Ribosomal, 16S/genetics , DNA, Bacterial/genetics , Spleen/microbiology , RNA, Ribosomal, 23S/genetics , Genetic Variation , Genotype , Bayes Theorem , Autopsy/veterinary , Polymerase Chain Reaction
9.
PLoS Pathog ; 20(5): e1012266, 2024 May.
Article in English | MEDLINE | ID: mdl-38787906

ABSTRACT

Mycoplasmas are minimal but notorious bacteria that infect humans and animals. These genome-reduced organisms have evolved strategies to overcome host apoptotic defense and establish persistent infection. Here, using Mycoplasma bovis as a model, we demonstrate that mycoplasma glycine cleavage system (GCS) H protein (GcvH) targets the endoplasmic reticulum (ER) to hijack host apoptosis facilitating bacterial infection. Mechanically, GcvH interacts with the ER-resident kinase Brsk2 and stabilizes it by blocking its autophagic degradation. Brsk2 subsequently disturbs unfolded protein response (UPR) signaling, thereby inhibiting the key apoptotic molecule CHOP expression and ER-mediated intrinsic apoptotic pathway. CHOP mediates a cross-talk between ER- and mitochondria-mediated intrinsic apoptosis. The GcvH N-terminal amino acid 31-35 region is necessary for GcvH interaction with Brsk2, as well as for GcvH to exert anti-apoptotic and potentially pro-infective functions. Notably, targeting Brsk2 to dampen apoptosis may be a conserved strategy for GCS-containing mycoplasmas. Our study reveals a novel role for the conserved metabolic route protein GcvH in Mycoplasma species. It also sheds light on how genome-reduced bacteria exploit a limited number of genomic proteins to resist host cell apoptosis thereby facilitating pathogenesis.


Subject(s)
Apoptosis , Bacterial Proteins , Endoplasmic Reticulum , Humans , Endoplasmic Reticulum/metabolism , Bacterial Proteins/metabolism , Bacterial Proteins/genetics , Animals , Mycoplasma Infections/metabolism , Mycoplasma Infections/microbiology , Mycoplasma bovis/metabolism , Glycine/metabolism , Unfolded Protein Response , Protein Serine-Threonine Kinases/metabolism
10.
Genes (Basel) ; 15(4)2024 Apr 08.
Article in English | MEDLINE | ID: mdl-38674404

ABSTRACT

Mycoplasma genitalium (M. genitalium) poses a significant public health challenge due to its association with non-gonococcal urethritis (particularly in men) and antimicrobial resistance. However, despite the prevalence of M. genitalium infections and the rise in resistance rates, routine testing and surveillance remain limited. This is the first study from Croatia that aimed to assess the prevalence and trends of resistance in M. genitalium strains isolated from male individuals by detecting macrolide and fluoroquinolone resistance genes. The study also aimed to explore the factors associated with resistance and changes in resistance patterns over time. Urine samples collected from male individuals in the Zagreb County and northwest region of Croatia between 2018 and 2023 were tested for M. genitalium with the use of molecular methods. Positive samples were subjected to DNA extraction and multiplex tandem polymerase chain reaction (MT-PCR) targeting genetic mutations associated with macrolide (23S rRNA gene) and fluoroquinolone (parC gene) resistance. Of the 8073 urine samples tested from 6480 male individuals (and following the exclusion of repeated specimens), we found that the prevalence of M. genitalium infection was 2.2%. Macrolide resistance was observed in 60.4% of strains, while fluoroquinolone resistance was found in 19.2%. Co-resistance to both antibiotics was present in 18.2% of cases. A statistically significant increase in fluoroquinolone resistance was noted over the study period (p = 0.010), but this was not evident for azithromycin resistance (p = 0.165). There were no statistically significant differences in resistance patterns between age groups, whereas re-testing of patients revealed dynamic changes in resistance profiles over time. The high burden of macrolide resistance and increasing fluoroquinolone resistance underscore the urgent need for comprehensive resistance testing and surveillance programs. The implementation of resistance-guided treatment strategies, along with enhanced access to molecular diagnostics, is pivotal for effectively managing M. genitalium infections.


Subject(s)
Anti-Bacterial Agents , Drug Resistance, Bacterial , Fluoroquinolones , Macrolides , Mycoplasma Infections , Mycoplasma genitalium , Mycoplasma genitalium/genetics , Mycoplasma genitalium/drug effects , Mycoplasma genitalium/isolation & purification , Humans , Male , Fluoroquinolones/pharmacology , Fluoroquinolones/therapeutic use , Croatia/epidemiology , Macrolides/pharmacology , Macrolides/therapeutic use , Adult , Mycoplasma Infections/microbiology , Mycoplasma Infections/epidemiology , Mycoplasma Infections/drug therapy , Mycoplasma Infections/urine , Anti-Bacterial Agents/pharmacology , Anti-Bacterial Agents/therapeutic use , Drug Resistance, Bacterial/genetics , Middle Aged , Young Adult , RNA, Ribosomal, 23S/genetics , Adolescent , Urethritis/microbiology , Urethritis/epidemiology , Urethritis/drug therapy , Microbial Sensitivity Tests
11.
Acta Trop ; 254: 107215, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38604328

ABSTRACT

The livestock sector of Pakistan is increasing rapidly and it plays important role both for rural community and national economy. It is estimated that almost 8 million rural people are involved in livestock rearing and earning about 35-40 % of their income from the livestock sector. Mycoplasma bovis (M. bovis) infection causes significant economic losses in dairy animals especially young calf in the form of clinical illnesses such as pneumonia, poly-arthritis, respiratory distress and mortality. M. bovis is hard to diagnose and control because of uneven disease appearance and it is usually noticed in asymptomatic animals. For the identification of M. bovis in sub-clinical and clinical samples, determination of acute phase proteins i.e., haptoglobin (Hp) and serum amyloid A (SAA) are important tools for the timely diagnosis of disease. Therefore, early diagnosis of disease and hemato-biochemical changes are considered beneficial tools to control the infectious agent to uplift the economy of the dairy farmers. For this purpose, blood samples were collected from 200 calves of Bovidae family. Serum was separated from blood samples to determine the concentration of Hp and SAA, while blood samples were processed to determine hematological changes in blood from calves by using hematological analyzer. The blood plasma obtained from the blood samples was processed to measure oxidative stress factors. Lungs tissues from slaughterhouses/ morbid calves were collected to observe histopathological changes. The results of present study indicated that level of SAA and Hp remarkably increased (P < 0.05) in M. bovis infected calves in comparison to healthy calves. The oxidative stress markers indicated that nitric oxide and MDA levels in the infected calves increased significantly (P < 0.05), while infected claves had considerably lower levels of superoxide dismutase, catalase and glutathione. These findings indicate that oxidative stress play role to increase the level of APPs, while monitoring of APPs levels may serve as a valuable addition to the clinical evaluation of naturally infected calves with M. bovis. The hematological parameters were decreased significantly (P < 0.05). Altogether, this study suggests that Hp and SAA are proposed as promising biomarkers for detecting naturally occurring M. bovis infection in calves.


Subject(s)
Biomarkers , Cattle Diseases , Haptoglobins , Mycoplasma Infections , Mycoplasma bovis , Serum Amyloid A Protein , Animals , Haptoglobins/analysis , Haptoglobins/metabolism , Cattle , Serum Amyloid A Protein/analysis , Mycoplasma Infections/veterinary , Mycoplasma Infections/diagnosis , Mycoplasma Infections/blood , Mycoplasma Infections/microbiology , Cattle Diseases/diagnosis , Cattle Diseases/microbiology , Cattle Diseases/blood , Biomarkers/blood , Pakistan , Lung/pathology , Lung/microbiology , Oxidative Stress
12.
Microbiol Res ; 284: 127727, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38636241

ABSTRACT

Heme oxygenase HO-1 (HMOX) regulates cellular inflammation and apoptosis, but its role in regulation of autophagy in Mycoplasma bovis infection is unknown. The objective was to determine how the HO-1/CO- Protein kinase RNA-like endoplasmic reticulum kinase (PERK)-Ca2+- transcription factor EB (TFEB) signaling axis induces autophagy and regulates clearance of M. bovis by bovine mammary epithelial cells (bMECs). M. bovis inhibited autophagy and lysosomal biogenesis in bMECs and suppressed HO-1 protein and expression of related proteins, namely nuclear factor erythroid 2-related factor 2 (Nrf2) and Kelch-like ECH-associated protein 1 (keap1). Activation of HO-1 and its production of carbon monoxide (CO) were required for induction of autophagy and clearance of intracellular M. bovis. Furthermore, when HO-1 was deficient, CO sustained cellular autophagy. HO-1 activation increased intracellular calcium (Ca2+) and cytosolic localization activity of TFEB via PERK. Knockdown of PERK or chelation of intracellular Ca2+ inhibited HO-1-induced M. bovis autophagy and clearance. M. bovis infection affected nuclear localization of lysosomal TFEB in the MiT/TFE transcription factor subfamily, whereas activation of HO-1 mediated dephosphorylation and intranuclear localization of TFEB, promoting autophagy, lysosomal biogenesis and autophagic clearance of M. bovis. Nuclear translocation of TFEB in HO-1 was critical to induce M. bovis transport and survival of infected bMECs. Furthermore, the HO-1/CO-PERK-Ca2+-TFEB signaling axis induced autophagy and M. bovis clearance, providing a viable approach to treat persistent M. bovis infections.


Subject(s)
Autophagy , Basic Helix-Loop-Helix Leucine Zipper Transcription Factors , Calcium , Cell Nucleus , Endoplasmic Reticulum , Epithelial Cells , Mammary Glands, Animal , Mycoplasma bovis , Animals , Cattle , Epithelial Cells/microbiology , Epithelial Cells/metabolism , Calcium/metabolism , Basic Helix-Loop-Helix Leucine Zipper Transcription Factors/metabolism , Basic Helix-Loop-Helix Leucine Zipper Transcription Factors/genetics , Endoplasmic Reticulum/metabolism , Mammary Glands, Animal/microbiology , Mammary Glands, Animal/metabolism , Cell Nucleus/metabolism , Female , eIF-2 Kinase/metabolism , eIF-2 Kinase/genetics , Mycoplasma Infections/microbiology , Mycoplasma Infections/veterinary , Mycoplasma Infections/metabolism , Lysosomes/metabolism , Heme Oxygenase-1/metabolism , Heme Oxygenase-1/genetics , Carbon Monoxide/metabolism , Signal Transduction , NF-E2-Related Factor 2/metabolism , NF-E2-Related Factor 2/genetics
13.
Rev Esp Quimioter ; 37(3): 270-273, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38591493

ABSTRACT

OBJECTIVE: Mycoplasma genitalium (MG) is a microorganism related to sexually transmitted infections. Antibiotic resistance of MG leads to an increase in treatment failure rates and the persistence of the infection. The aim of this study was to describe the most frequent mutations associated with azithromycin and moxifloxacin resistance in our geographical area. METHODS: A prospective study from May 2019 to May 2023 was performed. MG-positive samples were collected. Real-time PCRs (AllplexTM MG-AziR Assay and AllplexTM MG-MoxiR Assay, Seegene) were performed in MG positive samples to detect mutations in 23S rRNA V domain and parC gene. RESULTS: A 37.1% of samples presented resistance determinants to azithromycin and the most common mutation detected was A2059G (57.9%). Resistance to moxifloxacin was studied in 72 azithromycin-resistant samples and 36.1% showed mutations, being G248T the most prevalent (73.1%). CONCLUSIONS: The resistance to different lines of treat ment suggests the need for a targeted therapy and the performing of a test of cure afterwards.


Subject(s)
Anti-Bacterial Agents , Azithromycin , Drug Resistance, Bacterial , Moxifloxacin , Mutation , Mycoplasma Infections , Mycoplasma genitalium , Mycoplasma genitalium/drug effects , Mycoplasma genitalium/genetics , Moxifloxacin/pharmacology , Moxifloxacin/therapeutic use , Azithromycin/pharmacology , Azithromycin/therapeutic use , Spain , Humans , Prospective Studies , Anti-Bacterial Agents/pharmacology , Anti-Bacterial Agents/therapeutic use , Drug Resistance, Bacterial/genetics , Mycoplasma Infections/drug therapy , Mycoplasma Infections/microbiology , Female , Male , Microbial Sensitivity Tests , RNA, Ribosomal, 23S/genetics , Adult , DNA Topoisomerase IV/genetics
14.
Folia Microbiol (Praha) ; 69(3): 693-696, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38625660

ABSTRACT

Following the COVID-19 infection, the sternum dislocation and wound dehiscence resulted in an infection complicating the recovery of an immunosuppressed patient after bilateral lung transplantation. Anaerobic culture (96 h) of milky cloudy wound secretion resulted in the growth of pinpoint haemolytic colonies identified as Metamycoplasma hominis (formerly Mycoplasma hominis). The search for the endogenous source of the infection found the bacterium exclusively in the patient's sputum, making a possible link to donor lung M. hominis colonization. Unfortunately, the donor samples were no longer available. The wound infection was successfully treated with 17 days of clindamycin despite the continuous PCR detection of M. hominis in the sputum after the end of the treatment.


Subject(s)
Lung Transplantation , Mycoplasma Infections , Mycoplasma hominis , Surgical Wound Infection , Humans , Lung Transplantation/adverse effects , Surgical Wound Infection/microbiology , Surgical Wound Infection/drug therapy , Surgical Wound Infection/diagnosis , Mycoplasma hominis/genetics , Mycoplasma hominis/isolation & purification , Mycoplasma Infections/microbiology , Mycoplasma Infections/diagnosis , Mycoplasma Infections/drug therapy , Male , COVID-19/diagnosis , Anti-Bacterial Agents/therapeutic use , Sputum/microbiology , Middle Aged , SARS-CoV-2/genetics , SARS-CoV-2/isolation & purification , Immunocompromised Host , Clindamycin/therapeutic use
15.
Poult Sci ; 103(5): 103652, 2024 May.
Article in English | MEDLINE | ID: mdl-38537405

ABSTRACT

Mycoplasma gallisepticum (MG) is a highly contagious avian respiratory pathogen characterized by rapid spread, widespread distribution, and long-term persistence of infection. Previous studies have shown that chicken macrophage HD11 cells play a critical role in the replication and immunomodulation of MG. Macrophages are multifunctional immunomodulatory cells that polarize into different functions and morphologies in response to exogenous stimuli. However, the effect of MG infection on HD11 polarization is not well understood. In this study, we observed a time-dependent increase in both the expression of the MG-related virulence protein pMGA1.2 and the copy number of MG upon MG infection. Polarization studies revealed an upregulation of M1-type marker genes in MG-infected HD11 cells, suggesting that MG mainly induces HD11 macrophages towards M1-type polarization. Furthermore, MG activated the inflammatory vesicle NLRP3 signaling pathway, and NLRP3 inhibitors affected the expression of M1 and M2 marker genes, indicating the crucial regulatory role of the NLRP3 signaling pathway in MG-induced polarization of HD11 macrophages. Our findings reveal a novel mechanism of MG infection, namely the polarization of MG-infected HD11 macrophages. This discovery suggests that altering the macrophage phenotype to inhibit MG infection may be an effective control strategy. These findings provide new perspectives on the pathogenic mechanism and control measures of MG.


Subject(s)
Chickens , Macrophages , Mycoplasma Infections , Mycoplasma gallisepticum , Poultry Diseases , Mycoplasma gallisepticum/physiology , Animals , Macrophages/immunology , Macrophages/microbiology , Poultry Diseases/microbiology , Poultry Diseases/immunology , Mycoplasma Infections/veterinary , Mycoplasma Infections/immunology , Mycoplasma Infections/microbiology , Cell Line
16.
Sex Transm Dis ; 51(5): 367-373, 2024 May 01.
Article in English | MEDLINE | ID: mdl-38346403

ABSTRACT

BACKGROUND: Sexually transmitted infections (STIs) have a high incidence in the US Armed Forces and can adversely impact service members' ability to perform their duties. Better knowledge of Mycoplasma genitalium (MG) epidemiology in the military is needed to understand the potential impact of this emerging pathogen on force readiness. METHODS: We conducted cross-sectional analyses of data from US Army service members and other Military Health System beneficiaries participating in a trial of an STI/HIV behavioral intervention at Fort Liberty, NC, and Joint Base Lewis-McChord, WA. At enrollment, participants completed questionnaires and provided biological specimens for nucleic acid amplification testing for MG, Chlamydia trachomatis (CT), and Neisseria gonorrhoeae (NG). We used principal component analysis and robust Poisson regression to examine associations between participant characteristics and prevalent urogenital MG. RESULTS: Among 432 participants enrolled between November 2020 and February 2023, 43 had MG (prevalence, 10.0%), of whom 13 had coinfection with another bacterial STI (all 13 were positive for CT, with 1 also positive for NG). The prevalence of MG was significantly higher among female (13.5%) versus male (7.6%; P = 0.048) participants and non-Hispanic Black (14.9%) versus non-Hispanic White participants (6.6%; P = 0.045). Single relationship status and increased number of recent sexual partners were correlated, and their component was associated with higher MG prevalence (adjusted prevalence ratio, 2.11; 95% confidence interval, 1.29-3.48). CONCLUSIONS: The high prevalence of urogenital MG among Military Health System beneficiaries highlights the importance of understanding the potential clinical sequelae of MG and conducting additional epidemiologic research in military settings.


Subject(s)
Chlamydia Infections , Gonorrhea , Mycoplasma Infections , Mycoplasma genitalium , Sexually Transmitted Diseases , Female , Humans , Male , Chlamydia Infections/epidemiology , Chlamydia Infections/complications , Chlamydia trachomatis , Cross-Sectional Studies , Gonorrhea/microbiology , Mycoplasma Infections/microbiology , Neisseria gonorrhoeae , Prevalence , Sexually Transmitted Diseases/microbiology , Clinical Trials as Topic
17.
Front Immunol ; 15: 1250818, 2024.
Article in English | MEDLINE | ID: mdl-38370402

ABSTRACT

Pathogen adaptations during host-pathogen co-evolution can cause the host balance between immunity and immunopathology to rapidly shift. However, little is known in natural disease systems about the immunological pathways optimised through the trade-off between immunity and self-damage. The evolutionary interaction between the conjunctival bacterial infection Mycoplasma gallisepticum (MG) and its avian host, the house finch (Haemorhous mexicanus), can provide insights into such adaptations in immune regulation. Here we use experimental infections to reveal immune variation in conjunctival tissue for house finches captured from four distinct populations differing in the length of their co-evolutionary histories with MG and their disease tolerance (defined as disease severity per pathogen load) in controlled infection studies. To differentiate contributions of host versus pathogen evolution, we compared house finch responses to one of two MG isolates: the original VA1994 isolate and a more evolutionarily derived one, VA2013. To identify differential gene expression involved in initiation of the immune response to MG, we performed 3'-end transcriptomic sequencing (QuantSeq) of samples from the infection site, conjunctiva, collected 3-days post-infection. In response to MG, we observed an increase in general pro-inflammatory signalling, as well as T-cell activation and IL17 pathway differentiation, associated with a decrease in the IL12/IL23 pathway signalling. The immune response was stronger in response to the evolutionarily derived MG isolate compared to the original one, consistent with known increases in MG virulence over time. The host populations differed namely in pre-activation immune gene expression, suggesting population-specific adaptations. Compared to other populations, finches from Virginia, which have the longest co-evolutionary history with MG, showed significantly higher expression of anti-inflammatory genes and Th1 mediators. This may explain the evolution of disease tolerance to MG infection in VA birds. We also show a potential modulating role of BCL10, a positive B- and T-cell regulator activating the NFKB signalling. Our results illuminate potential mechanisms of house finch adaptation to MG-induced immunopathology, contributing to understanding of the host evolutionary responses to pathogen-driven shifts in immunity-immunopathology trade-offs.


Subject(s)
Finches , Mycoplasma Infections , Animals , Conjunctiva , Mycoplasma Infections/veterinary , Mycoplasma Infections/microbiology , Immunity
18.
J Vet Diagn Invest ; 36(3): 457-462, 2024 May.
Article in English | MEDLINE | ID: mdl-38362635

ABSTRACT

Mycoplasma bovis is a major cause of bovine mastitis. Intermittent shedding of the organism for many months is a feature of cows with intramammary infection. A dairy farm in Japan experienced a mastitis outbreak caused by M. bovis in 2016, as well as 2 additional outbreaks and 1 case in 2020-2021. The causative strains in the 3 outbreaks shared a common and identical genetic feature, the insertion of a transposase gene at the same site within the phosphate acetyltransferase-2 gene. Additionally, all isolates were genotyped to closely related sequence types (ST21 and ST141) by multilocus sequence typing, and had similar pulsopatterns by pulsed-field gel electrophoresis. Our results indicate that infection with the same causative strain remained in this herd and environment for 4 y. Treatment with fluoroquinolones, guided by antimicrobial susceptibility test results, eliminated M. bovis from 16 of 20 M. bovis-infected cows, as confirmed by culture and somatic cell counts. However, mastitis caused by other bacteria occurred in 9 M. bovis-free cows within 2 mo of the last treatment.


Subject(s)
Disease Outbreaks , Mastitis, Bovine , Mycoplasma Infections , Mycoplasma bovis , Animals , Cattle , Mastitis, Bovine/microbiology , Mastitis, Bovine/epidemiology , Mycoplasma Infections/veterinary , Mycoplasma Infections/microbiology , Mycoplasma Infections/epidemiology , Female , Disease Outbreaks/veterinary , Japan/epidemiology , Anti-Bacterial Agents/pharmacology , Multilocus Sequence Typing/veterinary
20.
Mol Microbiol ; 121(4): 814-830, 2024 04.
Article in English | MEDLINE | ID: mdl-38293733

ABSTRACT

Mycoplasma belong to the genus Mollicutes and are notable for their small genome sizes (500-1300 kb) and limited biosynthetic capabilities. They exhibit pathogenicity by invading various cell types to survive as intracellular pathogens. Adhesion is a crucial prerequisite for successful invasion and is orchestrated by the interplay between mycoplasma surface adhesins and specific receptors on the host cell membrane. Invasion relies heavily on clathrin- and caveolae-mediated internalization, accompanied by multiple activated kinases, cytoskeletal rearrangement, and a myriad of morphological alterations, such as membrane invagination, nuclear hypertrophy and aggregation, cytoplasmic edema, and vacuolization. Once mycoplasma successfully invade host cells, they establish resilient sanctuaries in vesicles, cytoplasm, perinuclear regions, and the nucleus, wherein specific environmental conditions favor long-term survival. Although lysosomal degradation and autophagy can eliminate most invading mycoplasmas, some viable bacteria can be released into the extracellular environment via exocytosis, a crucial factor in the prolonging infection persistence. This review explores the intricate mechanisms by which mycoplasma invades host cells and perpetuates their elusive survival, with the aim of highlighting the challenge of eradicating this enigmatic bacterium.


Subject(s)
Mycoplasma Infections , Mycoplasma , Humans , Mycoplasma/metabolism , Mycoplasma Infections/genetics , Mycoplasma Infections/metabolism , Mycoplasma Infections/microbiology , Adhesins, Bacterial/metabolism , Endocytosis , Autophagy
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