Introduction: A second generation of prophylactic human papillomavirus (HPV) vaccines based on the minor capsid protein L2 has entered clinical trials as promising alternative to meet the gaps left out by the current vaccines concerning type-restricted protection, high costs and low penetrance in immunization programs of lowand middle-income countries. Most of the serological assays available to assess anti-HPV humoral responses are, however, not well suited for measuring vaccine-induced anti-L2 antibody responses.
Methods: In this work, we have advanced our automated, purely add-on High-Throughput Pseudovirion-Based Neutralization Assay (HT-PBNA) in an L2-oriented approach for measuring antibody-mediated neutralization of HPV types 6/16/18/31/33/52/58.
Results And Discussion: With the optimized settings, we observed 24- to 120-fold higher sensitivity for detection of neutralizing Ab to the L2 protein of HPV6, HPV16, HPV18, and HPV31, compared to the standard HT-PBNA. Alternatively, we have also developed a highly sensitive, cell-free, colorimetric L2-peptide capture ELISA for which the results were strongly concordant with those of the advanced neutralization assay, named HT-fc-PBNA. These two high-throughput scalable assays represent attractive approaches to determine antibody-based correlates of protection for the HPV L2 vaccines that are to come.
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http://dx.doi.org/10.3389/fimmu.2023.1272018 | DOI Listing |
Dengue virus (DENV) is an increasingly important human pathogen, with already half of the globe's population living in environments with transmission potential. Since only a minority of cases are captured by direct detection methods (RT-PCR or antigen tests), serological assays play an important role in the diagnostic process. However, individual assays can suffer from low sensitivity and specificity and interpreting results from multiple assays remains challenging, particularly because interpretations from multiple assays may differ, creating uncertainty over how to generate finalized interpretations.
View Article and Find Full Text PDFAcute encephalitis syndrome (AES) is a significant public health issue in India, attributed to various etiologies. In eastern Uttar Pradesh, Japanese encephalitis (JE) was the leading cause of AES (10-14% of total AES) until scrub typhus (ST), caused by , was identified in cerebrospinal fluid and blood samples of AES patients contributing more than 60% of AES cases. This study investigates the prevalence of JE-ST coinfection and compares clinical outcomes among JE mono-infection, ST mono-infection, and JE-ST coinfection.
View Article and Find Full Text PDFInt Immunopharmacol
December 2024
Immunoregulation Research Center, Shahed University, Tehran, Iran. Electronic address:
Sulfur mustard (SM), known as the "king of toxic agents," continues to pose a potential danger due to its ability to cause widespread damage, including ongoing corrosive effects. We aimed to determine the rheumatologic markers in SM veterans suffering from severe pulmonary manifestations. The serologic markers, including ANA, anti-DNA, rheumatoid factor (RF), and CRP, between SM-exposed veterans (n = 229) with severe problems and not-SM-exposed residents with no pulmonary disease history (n = 63), 25-30 years after SM exposure were compared.
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Department of General Surgery, Peking Union Medical College Hospital, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, China.
Background: Preoperative biliary drainage (PBD) for selected patients with severe juandice has been shown to improve clinical conditions for pancreaticoduodenectomy (PD) and reduce the risk of post-pancreatectomy hemorrhage (PPH). However, the determination of an optimal end-point for PBD remains unclear. The aim of this research is to introduce the concept of goal-oriented biliary drainage, which may serve as a reasonable target and identify the optimal surgery time window.
View Article and Find Full Text PDFAm J Transplant
December 2024
Division for Paediatric Gastroenterology and Hepatology, Department of Paediatric Kidney, Liver, and Metabolic Diseases, Hannover Medical School, 30625 Hannover, Germany.
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