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20 pages, 9606 KB  
Article
Integrative Transcriptomics and Machine Learning Identify Macrophage-Associated Biomarkers in Hypertrophic Cardiomyopathy
by Jianzhi Zhao, Ximiao Su, Jiali Wu, Yanan Qin, Chengyu Song, Yanli Li, Chang Liu, Ran Li, Qiushi Wang and Chen Liang
Int. J. Mol. Sci. 2026, 27(11), 5102; https://doi.org/10.3390/ijms27115102 - 4 Jun 2026
Viewed by 569
Abstract
Hypertrophic cardiomyopathy (HCM) is a common genetic heart disease, with macrophages playing a critical role in its pathological remodeling. Our study aims to investigate the molecular basis of HCM by analyzing macrophage-related gene expression at the single-cell level. Utilizing published scRNA-seq datasets (GSE181764 [...] Read more.
Hypertrophic cardiomyopathy (HCM) is a common genetic heart disease, with macrophages playing a critical role in its pathological remodeling. Our study aims to investigate the molecular basis of HCM by analyzing macrophage-related gene expression at the single-cell level. Utilizing published scRNA-seq datasets (GSE181764 and GSE161921), we identified macrophages as the key cell cluster most associated with HCM. Integration with bulk RNA-seq data (GSE249925) and differential expression analysis revealed three hub genes: ASPN (asporin), F13A1 (Coagulation Factor XIII A Chain), and SORBS2 (Sorbin and SH3 domain-containing protein 2). Immune infiltration analysis showed significant decreases in multiple immune cell subsets in HCM patients, including neutrophil and macrophages. Intercellular communication analysis revealed an approximately 50% reduction in total interactions in HCM, accompanied by markedly weakened macrophage signaling reception and loss of regulatory pathways. Single-cell validation confirmed that F13A1 expression was predominantly restricted to macrophage clusters and significantly downregulated in HCM macrophages, demonstrating strong macrophage specificity and diagnostic potential. Furthermore, a LASSO-based diagnostic model incorporating three genes (IGFBP4, FOS, CTSC) exhibited high predictive performance, with validated accuracy in both training and external validation sets. Collectively, our findings shed light on the mechanisms underlying macrophage dysfunction in HCM and offer novel insights into the cellular and molecular dynamics. Full article
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21 pages, 1341 KB  
Article
Discovery of a Secretory Granule Lumen-Enriched Serum Protein Signature in Resectable Pancreatic Ductal Adenocarcinoma
by Septimiu Alex Moldovan, Maria Iacobescu, Emil Ioan Moiș, Florin Graur, Luminiţa Furcea, Florin Zaharie, Andra Ciocan, Maria-Andreea Soporan, Ioana-Ecaterina Pralea, Simona Mirel, Mihaela Ştefana Moldovan, Andrada Seicean, Vlad Ionuț Nechita, Cristina Adela Iuga and Nadim Al Hajjar
Medicina 2026, 62(3), 605; https://doi.org/10.3390/medicina62030605 - 23 Mar 2026
Viewed by 1125
Abstract
Background and Objectives: Serum biomarker discovery in resectable pancreatic ductal adenocarcinoma (PDAC) remains a critical unmet need, as over 80% of patients present with unresectable disease. Serum proteomics offers a promising approach for identifying circulating biomarkers associated with early-stage disease; however, clinical [...] Read more.
Background and Objectives: Serum biomarker discovery in resectable pancreatic ductal adenocarcinoma (PDAC) remains a critical unmet need, as over 80% of patients present with unresectable disease. Serum proteomics offers a promising approach for identifying circulating biomarkers associated with early-stage disease; however, clinical translation has been limited by inconsistent validation and the absence of clinically relevant comparator populations. Materials and Methods: We performed a discovery-phase study using data-independent acquisition mass spectrometry-based serum proteomics in 35 patients with resectable, non-metastatic PDAC and 34 non-cancer controls without hepato-biliary-pancreatic disease. Following quality filtering (≥80% detection threshold), 407 proteins were retained for analysis. Differential abundance was assessed using Welch’s t-test with Benjamini–Hochberg correction (FDR < 0.01, |FC| ≥ 1.5). Diagnostic performance was evaluated using receiver operating characteristic (ROC) analysis and logistic regression with repeated stratified 5-fold cross-validation (100 repetitions) and bootstrap resampling (1000 iterations). Functional enrichment analysis was performed using g:Profiler. Results: Ninety proteins were significantly altered in PDAC (50 increased, 40 decreased). Inter-alpha-trypsin inhibitor heavy chain H3 (ITIH3) demonstrated the highest individual diagnostic performance (AUC = 0.90), followed by coagulation factor XIII A chain (F13A1; AUC = 0.89) and ferritin light chain (FTL; AUC = 0.86). Functional enrichment revealed significant overrepresentation of secretory granule lumen components (adjusted p = 0.001) and complement/coagulation pathways (adjusted p < 0.001). An enrichment-guided three-protein panel (ITIH3, F13A1, and FTL) achieved an AUC of 0.98 (95% CI: 0.95–1.00), with a cross-validated mean AUC of 0.96, sensitivity of 83% (95% CI: 66.4–93.4%), and specificity of 100% (95% CI: 89.7–100%) within the discovery cohort. Conclusions: This discovery-phase study identifies a biologically coherent serum protein signature enriched for secretory granule lumen components in resectable PDAC. The three-protein panel demonstrates strong internal validation performance; however, these estimates may be optimistic due to feature selection performed prior to cross-validation. External validation in independent cohorts—including chronic pancreatitis controls and parallel CA19-9 assessment—will be essential to determine clinical applicability. Full article
(This article belongs to the Section Gastroenterology & Hepatology)
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7 pages, 704 KB  
Case Report
Severe Bleeding Due to an Acquired FXIII Inhibitor in an Otherwise Healthy Patient
by Bianca Santonastaso, Hannah Spector, Christine Cahill, Khaled Refaai, Frank Akwaa, Jainulabdeen J. Ifthikharuddin, Gahyun Gim and Majed A. Refaai
LabMed 2026, 3(1), 6; https://doi.org/10.3390/labmed3010006 - 13 Feb 2026
Viewed by 1541
Abstract
A 75-year-old male was admitted with worsening anemia and spontaneous bruising in the left abdominal wall and paraspinal region. Laboratory workup revealed low factor XIII (FXIII) activity levels. Cryoprecipitate transfusions raised his FXIII level, but still fluctuated drastically, ranging from 4 to 43% [...] Read more.
A 75-year-old male was admitted with worsening anemia and spontaneous bruising in the left abdominal wall and paraspinal region. Laboratory workup revealed low factor XIII (FXIII) activity levels. Cryoprecipitate transfusions raised his FXIII level, but still fluctuated drastically, ranging from 4 to 43% was discharged 3 days later once his bleeding was managed. Three days later, he was readmitted for severe pain and new bruising in his latissimus dorsi and lateral right thigh. CT-scan revealed hemothorax and arterial bleeding requiring an urgent angiogram with embolization. Chromogenic and functional FXIII assays were unable to elucidate an inhibitor at this time. Management included FXIII concentrate, rituximab, and prednisone; the patient was discharged 12 days later with FXIII levels of 50%. After prednisone tapering, FXIII levels decreased drastically. This case exemplified that higher levels of FXIII are required to prevent bleeding diatheses rather than the previously reported minimum of 5% activity. Despite the diagnostic uncertainty of laboratory testing, the shortened half-life of FXIII activity following replacement therapy and favorable response to immunotherapy indicates that the bleeding diathesis was caused by an acquired inhibitor. Full article
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13 pages, 500 KB  
Article
Protective Effect of Factor XIII Intron-K G Allele on Subclinical Vascular Disease
by Barbara Cogoi, Regina Esze, Sándor Somodi, Amir H. Shemirani, Zsuzsanna Bereczky, László Muszbek, György Paragh, Mónika Katkó and Miklós Káplár
Int. J. Mol. Sci. 2025, 26(21), 10293; https://doi.org/10.3390/ijms262110293 - 22 Oct 2025
Viewed by 878
Abstract
Carotid artery intima–media thickness (cIMT), a pre-clinical vascular change that accompanies atherosclerosis is considered as a cardiovascular risk factor. Coagulation factor XIII (FXIII) stabilizes the fibrin clot and increases its resistance to fibrinolysis. Regarding FXIII Val34Leu polymorphism, the protective effect of the Leu34 [...] Read more.
Carotid artery intima–media thickness (cIMT), a pre-clinical vascular change that accompanies atherosclerosis is considered as a cardiovascular risk factor. Coagulation factor XIII (FXIII) stabilizes the fibrin clot and increases its resistance to fibrinolysis. Regarding FXIII Val34Leu polymorphism, the protective effect of the Leu34 allele in the presence of elevated fibrinogen levels against myocardial infarction was demonstrated. Our aim was to investigate the effect of FXIII polymorphisms on cIMT. Patients with obesity (n = 69), type 2 diabetes mellitus (T2DM) (n = 104), and age- and sex-matched healthy controls (n = 82) were enrolled. FXIII polymorphisms (Val34Leu, His95Arg, Intron-K C>G) were determined by RT-PCR with FRET detection and melting curve analysis. cIMT was determined by B-mode ultrasound. Differences in cIMT between control (median: 0.5965, IQR: 0.5115–0.6580 mm) and T2DM (median: 0.7105, IQR: 0.5948–0.7568 mm), as well as between obese (median: 0.6105, IQR: 0.5455–0.6780 mm) and diabetic groups, were found (p < 0.0001 and p = 0.003, respectively). Genotype and allele frequencies of the studied polymorphisms did not differ between subgroups. In the study group (n = 255) after adjustment for age and sex, the presence of Intron-K G allele showed a significant and independent protective effect against cIMT progression in a separate model (p = 0.005) and after adjusting for other parameters associated with cIMT (p = 0.015). FXIII Intron-K G allele provides a protective effect against subclinical vascular disease in the studied population, and this effect is independent of the presence of obesity, as well as T2DM, Leu34 allele, and fibrinogen levels. Full article
(This article belongs to the Special Issue New Cardiovascular Risk Factors: 2nd Edition)
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11 pages, 249 KB  
Article
Recurrent Early Pregnancy Loss and Congenital Thrombophilia: A Prospective Study
by Asma Basha, Yasmine Alkhatib, Tamara Tashtoush, Maysa Yousef, Laila Oweidi, Mohammad Alkhatib, Sally Al-Aqrabawi, Yazun Jarrar and Abdalla Awidi
J. Clin. Med. 2024, 13(22), 6871; https://doi.org/10.3390/jcm13226871 - 15 Nov 2024
Cited by 4 | Viewed by 3694
Abstract
Background/Objectives: This study aims to investigate the role of congenital single nucleotide thrombophilia in young females with early recurrent pregnancy loss (RPL). Methods: We studied 120 pregnant females with RPL and 80 matched females as a control with no RPL. Females [...] Read more.
Background/Objectives: This study aims to investigate the role of congenital single nucleotide thrombophilia in young females with early recurrent pregnancy loss (RPL). Methods: We studied 120 pregnant females with RPL and 80 matched females as a control with no RPL. Females were aged ≤ 35 years, had at least two consecutive first-trimester RPLs, and the acquired cause of RPL was excluded. A matched control group of 80 pregnant women with no RPL was studied. Coagulation tests included prothrombin time (PT), partial thromboplastin time (PTT), thrombin time (TT), a Factor XIII functional assay, and detecting IgM and IgG anti-beta2-Glycoprotein I (β2GPI) antibodies by an ELISA. The DNA samples were tested for Factor V Leiden, Factor II G20210A, Methylenetetrahydrofolate reductase (MTHFR C677T, A1298C), FXIII V34L, plasminogen activator inhibitor-1 (PAI-1) 4G/5G, endothelial protein C receptor (EPCR) A4600G, and endothelial protein C receptor (EPCR) G4678C. Results: Of the single nucleotide gene mutations investigated, the most relevant mutations were MTHFR C677T, MTHFR A1298C, heterozygous FXIII Val34Leu, and heterozygous FXIII 1694 C>T. Each of them conferred a statistically significant effect. There was a statistically significant protective role for the endothelial protein C receptor (EPCR) A2/A2, wild FXIII Val34Leu, and heterozygousFXIII1694 C>T. Conclusions: Our findings suggest the important role of congenital single nucleotide thrombophilia mutations in young Middle Eastern women with early RPL, particularly MTHFR mutations and FXIII Val34Leu. We found a protective effect of EPCR A2/A2, wild FXIIIVal34Leu, and heterozygous FXIII1694 C>T. We recommend additional studies to explore detrimental factors and protective factors. Full article
(This article belongs to the Special Issue Blood Disorders: Diagnosis, Management, and Future Opportunities)
18 pages, 803 KB  
Review
Differential Role of Factor XIII in Acute Myocardial Infarction and Ischemic Stroke
by Jan Traub, Martin S. Weber and Anna Frey
Biomedicines 2024, 12(3), 497; https://doi.org/10.3390/biomedicines12030497 - 22 Feb 2024
Cited by 5 | Viewed by 4352
Abstract
Factor XIII is a transglutaminase enzyme that plays a crucial role in hemostasis and wound healing. It crosslinks fibrin strands, stabilizing clots and promoting clot resistance to fibrinolysis. Additionally, Factor XIII has been found to have multiple other functions that extend beyond coagulation, [...] Read more.
Factor XIII is a transglutaminase enzyme that plays a crucial role in hemostasis and wound healing. It crosslinks fibrin strands, stabilizing clots and promoting clot resistance to fibrinolysis. Additionally, Factor XIII has been found to have multiple other functions that extend beyond coagulation, including the regulation of inflammation and tissue repair processes. Emerging evidence suggests that Factor XIII may also have differential roles in acute myocardial infarction and ischemic stroke, two common cardiovascular events with significant morbidity and mortality. In acute myocardial infarction, Factor XIII has been implicated in promoting clot stability and reducing the risk of re-occlusion. In ischemic stroke, Factor XIII may also contribute to the pathogenesis of cerebral ischemia by promoting clot formation and exacerbating neuronal damage. Several studies have investigated the association between Factor XIII and these cardiovascular events, using various approaches such as genetic polymorphism analysis, animal models, and clinical data analysis. These studies have provided important insights into the role of Factor XIII in acute myocardial infarction and ischemic stroke, highlighting its potential as a therapeutic target for interventions aimed at improving outcomes in these conditions. In this review, we will summarize the current understanding of Factor XIII’s role in acute myocardial infarction and ischemic stroke. Full article
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12 pages, 1399 KB  
Review
Exploring the Potential of Exosomal Biomarkers in Mild Traumatic Brain Injury and Post-Concussion Syndrome: A Systematic Review
by Ioannis Mavroudis, Sidra Jabeen, Ioana Miruna Balmus, Alin Ciobica, Vasile Burlui, Laura Romila and Alin Iordache
J. Pers. Med. 2024, 14(1), 35; https://doi.org/10.3390/jpm14010035 - 27 Dec 2023
Cited by 5 | Viewed by 3258
Abstract
Background: Alongside their long-term effects, post-concussion syndrome (PCS) and mild traumatic brain injuries (mTBI) are significant public health concerns. Currently, there is a lack of reliable biomarkers for diagnosing and monitoring mTBI and PCS. Exosomes are small extracellular vesicles secreted by cells that [...] Read more.
Background: Alongside their long-term effects, post-concussion syndrome (PCS) and mild traumatic brain injuries (mTBI) are significant public health concerns. Currently, there is a lack of reliable biomarkers for diagnosing and monitoring mTBI and PCS. Exosomes are small extracellular vesicles secreted by cells that have recently emerged as a potential source of biomarkers for mTBI and PCS due to their ability to cross the blood–brain barrier and reflect the pathophysiology of brain injury. In this study, we aimed to investigate the role of salivary exosomal biomarkers in mTBI and PCS. Methods: A systematic review using the PRISMA guidelines was conducted, and studies were selected based on their relevance to the topic. Results: The analyzed studies have shown that exosomal tau, phosphorylated tau (p-tau), amyloid beta (Aβ), and microRNAs (miRNAs) are potential biomarkers for mTBI and PCS. Specifically, elevated levels of exosomal tau and p-tau have been associated with mTBI and PCS as well as repetitive mTBI. Dysregulated exosomal miRNAs have also been observed in individuals with mTBI and PCS. Additionally, exosomal Prion cellular protein (PRPc), coagulation factor XIII (XIIIa), synaptogyrin-3, IL-6, and aquaporins have been identified as promising biomarkers for mTBI and PCS. Conclusion: Salivary exosomal biomarkers have the potential to serve as non-invasive and easily accessible diagnostic and prognostic tools for mTBI and PCS. Further studies are needed to validate these biomarkers and develop standardized protocols for their use in clinical settings. Salivary exosomal biomarkers can improve the diagnosis, monitoring, and treatment of mTBI and PCS, leading to improved patient outcomes. Full article
(This article belongs to the Section Disease Biomarkers)
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11 pages, 4788 KB  
Case Report
A Rare Case of Pulmonary Embolism, Deep Vein Thrombosis, Bilateral Avascular Necrosis of the Femoral Head, and Miscarriage following COVID-19 in a Patient with Multiple Genetic Coagulation Factor Deficiency—A Case Report
by Nevena Georgieva Ivanova
Life 2023, 13(12), 2240; https://doi.org/10.3390/life13122240 - 22 Nov 2023
Cited by 2 | Viewed by 2768
Abstract
The coronavirus disease (COVID-19) is caused by the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). The most common symptoms of COVID-19 are respiratory symptoms, but some patients develop severe thrombotic complications. Studies have looked into the association between the disease severity in COVID-19 [...] Read more.
The coronavirus disease (COVID-19) is caused by the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). The most common symptoms of COVID-19 are respiratory symptoms, but some patients develop severe thrombotic complications. Studies have looked into the association between the disease severity in COVID-19 patients and polymorphisms in the genes encoding prothrombotic and cardiovascular risk factors. The presented rare case describes inflammatory and acute thrombotic complications with musculoskeletal involvement in a patient with combined coagulation genetic defects. A 37-year-old woman was hospitalized with a respiratory infection of coronavirus etiology complicated by pneumonia and pulmonary embolism and confirmed using computed tomography and elevated D-dimer. Sixteen days after discharge, she developed deep vein thrombosis after discontinuation of antiplatelet and anticoagulant therapy due to bleeding. Four months after infection, we found bilateral avascular necrosis of the femoral head. The patient had a miscarriage with considerable blood loss and was given genetic testing, which confirmed the presence of a combined defect with a risk of both thrombosis and bleeding—heterozygous for the Leiden G1691A mutation, homozygous for the 677C>T mutation (MTHFR), heterozygous for the Val34Leu (factor XIII) mutation, and 4G/5G polymorphism in the promoter of the plasminogen activator inhibitor 1 (PAI-1) genes. The described rare clinical case poses a serious challenge regarding the anticoagulant and antiplatelet therapy, especially in the presence of thrombotic complications in COVID-19 and the underlying genetic defect associated with a risk of bleeding, including life-threatening intracranial bleeding. More research is needed to better understand the major medical concern about antithrombotic treatment in COVID-19 patients with bleeding risk in the context of genetic coagulation disorders. The case raises the vigilance of clinicians to search for a genetic predisposition to the development of severe thrombotic events in COVID-19 patients with no other known underlying diseases. Full article
(This article belongs to the Section Medical Research)
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12 pages, 2097 KB  
Article
Cellular FXIII in Human Macrophage-Derived Foam Cells
by Laura Somodi, Emőke Horváth, Helga Bárdos, Barbara Baráth, Dávid Pethő, Éva Katona, József Balla, Nicola J. Mutch and László Muszbek
Int. J. Mol. Sci. 2023, 24(5), 4802; https://doi.org/10.3390/ijms24054802 - 2 Mar 2023
Cited by 5 | Viewed by 3206
Abstract
Macrophages express the A subunit of coagulation factor XIII (FXIII-A), a transglutaminase which cross-links proteins through Nε-(γ-L-glutamyl)-L-lysyl iso-peptide bonds. Macrophages are major cellular constituents of the atherosclerotic plaque; they may stabilize the plaque by cross-linking structural proteins and they may become transformed into [...] Read more.
Macrophages express the A subunit of coagulation factor XIII (FXIII-A), a transglutaminase which cross-links proteins through Nε-(γ-L-glutamyl)-L-lysyl iso-peptide bonds. Macrophages are major cellular constituents of the atherosclerotic plaque; they may stabilize the plaque by cross-linking structural proteins and they may become transformed into foam cells by accumulating oxidized LDL (oxLDL). The combination of oxLDL staining by Oil Red O and immunofluorescent staining for FXIII-A demonstrated that FXIII-A is retained during the transformation of cultured human macrophages into foam cells. ELISA and Western blotting techniques revealed that the transformation of macrophages into foam cells elevated the intracellular FXIII-A content. This phenomenon seems specific for macrophage-derived foam cells; the transformation of vascular smooth muscle cells into foam cells fails to induce a similar effect. FXIII-A containing macrophages are abundant in the atherosclerotic plaque and FXIII-A is also present in the extracellular compartment. The protein cross-linking activity of FXIII-A in the plaque was demonstrated using an antibody labeling the iso-peptide bonds. Cells showing combined staining for FXIII-A and oxLDL in tissue sections demonstrated that FXIII-A-containing macrophages within the atherosclerotic plaque are also transformed into foam cells. Such cells may contribute to the formation of lipid core and the plaque structurization. Full article
(This article belongs to the Special Issue Fibrinogen/Fibrin, Factor XIII and Fibrinolysis in Diseases)
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8 pages, 1567 KB  
Communication
Association of COVID-19 Vaccines ChAdOx1-S and BNT162b2 with Circulating Levels of Coagulation Factors and Antithrombin
by Amal Hasan, Hossein Arefanian, Arshad Mohamed Channanath, Irina AlKhairi, Preethi Cherian, Sriraman Devarajan, Thangavel Alphonse Thanaraj, Mohamed Abu-Farha, Jehad Abubaker and Fahd Al-Mulla
Vaccines 2022, 10(8), 1226; https://doi.org/10.3390/vaccines10081226 - 31 Jul 2022
Cited by 2 | Viewed by 3076
Abstract
Background: Severe coronavirus disease 2019 (COVID-19) is associated with increased risk of thrombosis and thromboembolism. Exposure to COVID-19 vaccines is also associated with immune thrombotic thrombocytopenia, ischemic stroke, intracerebral haemorrhage, and cerebral venous thrombosis, and it is linked with systemic activation of coagulation. [...] Read more.
Background: Severe coronavirus disease 2019 (COVID-19) is associated with increased risk of thrombosis and thromboembolism. Exposure to COVID-19 vaccines is also associated with immune thrombotic thrombocytopenia, ischemic stroke, intracerebral haemorrhage, and cerebral venous thrombosis, and it is linked with systemic activation of coagulation. Methods: We assess the circulating levels of coagulation factors (factors XI, XII, XIII, and prothrombin) and antithrombin in individuals who completed two doses of either ChAdOx1-S or BNT162b2 COVID-19 vaccine, within the timeframe of two months, who had no previous history of COVID-19. Results: Elevated levels of factors XI, XII, XIII, prothrombin, and antithrombin were seen compared to unvaccinated controls. Levels of coagulation factors, antithrombin, and prothrombin to antithrombin ratio were higher with BNT162b2 compared to ChAdOx1-S vaccine. Conclusions: The clinical significance of such coagulation homeostasis disruption remains to be elucidated but it is worthy of global scientific follow-up effort. Full article
(This article belongs to the Section COVID-19 Vaccines and Vaccination)
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15 pages, 1570 KB  
Article
Factor XIII Measurement and Substitution in Trauma Patients after Admission to an Intensive Care Unit
by Moritz Katzensteiner, Martin Ponschab, Herbert Schöchl, Daniel Oberladstätter, Johannes Zipperle, Marcin Osuchowski and Christoph J. Schlimp
J. Clin. Med. 2022, 11(14), 4174; https://doi.org/10.3390/jcm11144174 - 19 Jul 2022
Cited by 9 | Viewed by 3019
Abstract
Trauma patients admitted to an intensive care unit (ICU) may potentially experience a deficiency of coagulation factor thirteen (FXIII). In this retrospective cohort study conducted at a specialized trauma center, ICU patients were studied to determine the dependency of FXIII activity levels on [...] Read more.
Trauma patients admitted to an intensive care unit (ICU) may potentially experience a deficiency of coagulation factor thirteen (FXIII). In this retrospective cohort study conducted at a specialized trauma center, ICU patients were studied to determine the dependency of FXIII activity levels on clinical course and substitution with blood and coagulation products. A total of 189 patients with a median injury severity score (ISS) of 25 (16–36, IQR) were included. Abbreviated injury scores for extremities (r = −0.38, p < 0.0001) but not ISS (r = −0.03, p = 0.45) showed a negative correlation with initial FXIII levels. Patients receiving FXIII concentrate presented with a median initial FXIII level of 54 (48–59)% vs. 88 (74–108)%, p < 0.0001 versus controls; they had fewer ICU-free days: 17 (0–22) vs. 22 (16–24), p = 0.0001; and received higher amounts of red blood cell units: 5 (2–9) vs. 4 (1–7), p < 0.03 before, and 4 (2–7) vs. 1 (0–2), p < 0.0001 after FXIII substitution. Matched-pair analyses based on similar initial FXIII levels did not reveal better outcome endpoints in the FXIII-substituted group. The study showed that a low initial FXIII level correlated with the clinical course in this trauma cohort, but a substitution of FXIII did not improve endpoints within the range of the studied FXIII levels. Future prospective studies should investigate the utility of FXIII measurement and lower threshold values of FXIII, which trigger substitution in trauma patients. Full article
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10 pages, 807 KB  
Article
Preparation and Storage of Cryoprecipitate Derived from Amotosalen and UVA-Treated Apheresis Plasma and Assessment of In Vitro Quality Parameters
by Katarina Kovacic Krizanic, Florian Prüller, Konrad Rosskopf, Jean-Marc Payrat, Silke Andresen and Peter Schlenke
Pathogens 2022, 11(7), 805; https://doi.org/10.3390/pathogens11070805 - 18 Jul 2022
Cited by 8 | Viewed by 5311
Abstract
Cryoprecipitate is a plasma-derived blood product, enriched for fibrinogen, factor VIII, factor XIII, and von Willebrand factor. Due to infectious risk, the use of cryoprecipitate in Central Europe diminished over the last decades. However, after the introduction of various pathogen-reduction technologies for plasma, [...] Read more.
Cryoprecipitate is a plasma-derived blood product, enriched for fibrinogen, factor VIII, factor XIII, and von Willebrand factor. Due to infectious risk, the use of cryoprecipitate in Central Europe diminished over the last decades. However, after the introduction of various pathogen-reduction technologies for plasma, cryoprecipitate production in blood centers is a feasible alternative to pharmaceutical fibrinogen concentrate with a high safety profile. In our study, we evaluated the feasibility of the production of twenty-four cryoprecipitate units from pools of two units of apheresis plasma pathogen reduced using amotosalen and ultraviolet light A (UVA) (INTERCEPT® Blood System). The aim was to assess the compliance of the pathogen-reduced cryoprecipitate with the European Directorate for the Quality of Medicines (EDQM) guidelines and the stability of coagulation factors after frozen (≤−25 °C) storage and five-day liquid storage at ambient temperature post-thawing. All pathogen-reduced cryoprecipitate units fulfilled the European requirements for fibrinogen, factor VIII and von Willebrand factor content post-preparation. After five days of liquid storage, content of these factors exceeded the minimum values in the European requirements and the content of other factors was sufficient. Our method of production of cryoprecipitate using pathogen-reduced apheresis plasma in a jumbo bag is feasible and efficient. Full article
(This article belongs to the Special Issue Pathogen Reduction of Blood Bank Components)
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16 pages, 1156 KB  
Article
Coagulation Factor XIII Val34Leu Polymorphism in the Prediction of Premature Cardiovascular Events—The Results of Two Meta-Analyses
by Beata Sarecka-Hujar, Danuta Łoboda, Elżbieta Paradowska-Nowakowska and Krzysztof S. Gołba
J. Clin. Med. 2022, 11(12), 3454; https://doi.org/10.3390/jcm11123454 - 15 Jun 2022
Cited by 3 | Viewed by 2940
Abstract
Background: Polymorphisms within the gene that encodes for coagulation factor XIII (FXIII) have been suggested to be involved in the pathogeneses of ischemic stroke (IS) and myocardial infarction (MI). The Val34Leu polymorphism is one of the most commonly analysed FXIII polymorphisms. However, studies [...] Read more.
Background: Polymorphisms within the gene that encodes for coagulation factor XIII (FXIII) have been suggested to be involved in the pathogeneses of ischemic stroke (IS) and myocardial infarction (MI). The Val34Leu polymorphism is one of the most commonly analysed FXIII polymorphisms. However, studies on the role of the Val34Leu polymorphism in the aetiology of vascular diseases often show contradictory results. In the present meta-analysis, we aimed to pool data from available articles to assess the relationship between the FXIII Val34Leu polymorphism and the susceptibilities to IS of undetermined source and premature MI in patients aged below 55 years. Methods: We searched databases (PubMed, Embase, Google Scholar, SciELO, and Medline) using specific keywords (the last search was in January 2022). Eventually, 18 studies (627 cases and 1639 controls for IS; 2595 cases and 4255 controls for MI) met the inclusion criteria. Data were analysed using RevMan 5.4 and StatsDirect 3 link software. The relation between Val34Leu polymorphism and disease was analysed in five genetic models, i.e., dominant, recessive, additive, heterozygous, and allelic. Results: No relation between Val34Leu polymorphism and IS in young adults was observed in all analysed genetic models. For premature MI, significant pooled OR was found between the carrier state of the Leu allele (Val/Leu + Leu/Leu vs. Val/Val) and a lack of MI, suggesting its protective role (OR = 0.80 95%CI 0.64–0.99, p = 0.04). A similar finding was observed for the heterozygous model in MI (Val/Leu vs. Val/Val) (OR = 0.77 95%CI 0.61–0.98, p = 0.03). No relation was found for the recessive, additive, and allelic models in MI. Conclusions: In the population of young adults, no positive correlation was found between the FXIII Val34Leu polymorphism and IS of undetermined source in any of the analysed genetic models. In turn, the carrier state of the 34Leu allele as well as FXIII heterozygotes themselves were found to play a protective role in relation to premature MI. Full article
(This article belongs to the Section Hematology)
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11 pages, 2679 KB  
Article
New Mechanisms of Bromelain in Alleviating Non-Alcoholic Fatty Liver Disease-Induced Deregulation of Blood Coagulation
by Po-An Hu, Sz-Han Wang, Chia-Hui Chen, Bei-Chia Guo, Jenq-Wen Huang and Tzong-Shyuan Lee
Nutrients 2022, 14(11), 2329; https://doi.org/10.3390/nu14112329 - 1 Jun 2022
Cited by 15 | Viewed by 13868
Abstract
Bromelain, an enzyme extracted from the stems of pineapples, exerts anticoagulant effects; however, the regulatory mechanisms are not fully understood. Here, we aimed to investigate the effects of bromelain on non-alcoholic fatty liver disease (NAFLD)-induced deregulation of blood coagulation and the underlying molecular [...] Read more.
Bromelain, an enzyme extracted from the stems of pineapples, exerts anticoagulant effects; however, the regulatory mechanisms are not fully understood. Here, we aimed to investigate the effects of bromelain on non-alcoholic fatty liver disease (NAFLD)-induced deregulation of blood coagulation and the underlying molecular mechanisms. C57BL/6 mice were fed a high-fat diet (HFD), with or without bromelain (20 mg/kg/day) administration, for 12 weeks. Treatment with bromelain decreased thrombus formation in the liver and prolonged HFD-induced shortened prothrombin, activated partial thromboplastin, and fibrinogen times. Moreover, liquid chromatography-mass spectrometry/mass spectrometry and Western blot analysis showed that bromelain inhibited NAFLD-induced activation of the intrinsic, extrinsic, and common pathways by upregulating the protein expression of antithrombin III, serpin family G member 1, and α1-antitrypsin, and downregulating the protein expression of fibrinogen in the liver and plasma. Bromelain also upregulated the level of plasminogen and downregulating factor XIII expression in the liver and plasma. Collectively, these findings suggest that bromelain exerts anticoagulant effects on NAFLD-induced deregulation of coagulation by inhibiting the activation of the coagulation cascade, decreasing the stability of clots, and promoting fibrinolytic activity. The present study provides new insights into the potential therapeutic value of bromelain for the prevention and treatment of thrombosis-related diseases. Full article
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Article
Exploring Diverse Coagulation Factor XIII Subunit Expression Datasets: A Bioinformatic Analysis
by Muhammad Ahmer Jamil, Sneha Singh, Osman El-Maarri, Johannes Oldenburg and Arijit Biswas
Int. J. Mol. Sci. 2022, 23(9), 4725; https://doi.org/10.3390/ijms23094725 - 25 Apr 2022
Cited by 11 | Viewed by 4088
Abstract
Coagulation factor XIII (FXIII) circulates in plasma as a pro-transglutaminase heterotetrameric complex (FXIIIA2B2), which upon activation by thrombin and calcium covalently crosslinks preformed fibrin polymers. The heterotetrameric complex is composed of a catalytic FXIIIA2 subunit and a protective/regulatory [...] Read more.
Coagulation factor XIII (FXIII) circulates in plasma as a pro-transglutaminase heterotetrameric complex (FXIIIA2B2), which upon activation by thrombin and calcium covalently crosslinks preformed fibrin polymers. The heterotetrameric complex is composed of a catalytic FXIIIA2 subunit and a protective/regulatory FXIII-B2 subunit coded by F13A1 and F13B genes, respectively. The catalytic FXIIIA2 subunit is encoded by the F13A1 gene, expressed primarily in cells of mesenchymal origin, whereas the FXIIIB subunit encoded by the F13B gene is expressed and secreted from hepatocytes. The plasma FXIIIA2 subunit, which earlier was believed to be secreted from cells of megakaryocytic lineage, is now understood to result primarily from resident macrophages. The regulation of the FXIII subunits at the genetic level is still poorly understood. The current study adopts a purely bioinformatic approach to analyze the temporal, time-specific expression array-data corresponding to both the subunits in specific cell lineages, with respect to the gene promoters. We analyze the differentially expressed genes correlated with F13A1 and F13B expression levels in an array of cell types, utilizing publicly available microarray data. We attempt to understand the regulatory mechanism underlying the variable expression of FXIIIA2 subunit in macrophages (M0, M1, M2 and aortic resident macrophages). Similarly, the FXIIIB2 subunit expression data from adult, fetal hepatocytes and embryonic stem cells derived hepatoblasts (hESC-hepatoblast) was analyzed. The results suggest regulatory dependence between the two FXIII subunits at the transcript level. Our analysis also predicts the involvement of the FXIIIA2 subunit in macrophage polarization, plaque stability, and inflammation. Full article
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