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Introduction: Tuberculosis (TB) remains a deadliest infectious disease. Lack of rapid test with low cost is one of the important challenges to eradicate the TB. The objective of the study was to analyze the laboratory costs of conventional and newer molecular tests, for diagnosis of presumptive multidrug-resistant TB (MDR-TB) patients.
Methods: A detailed laboratory cost of various conventional tests (Ziehl - Neelsen [ZN] microscopy, light-emitting diode-fluorescent microscopy [LED-FM], culture and drug susceptibility testing [DST] using solid Lowenstein-Jensen media and liquid media [BACTEC MGIT 960]) was compared with rapid methods (GenoType MTBDR line probe assay [LPA] and GeneXpert MTB/RIF assay). Laboratory cost was also calculated in terms of cost per TB and MDR-TB case detected by using different diagnostic scenarios.
Results: Cost per test for ZN microscopy, LED-FM, LPA, GeneXpert MTB/RIF assay, solid culture plus DST, liquid culture plus DST was found as $2.5 (INR 156.8), $2.0 (INR128.9), $18.6 (INR1210), $13.8 (INR 895.2), $21.5 (INR 1396.6), and $29.1 (INR 1888.2), respectively. The laboratory cost for detecting TB and MDR-TB by diagnostic scenarios involving molecular DST was found to be less as compared to involving only conventional liquid culture-based test.
Conclusions: The implementation of rapid molecular tests with selective use of liquid culture-based DST may be less in cost as compared to the use of culture-based DST alone, at high burden reference TB laboratory.
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http://dx.doi.org/10.4103/jgid.jgid_309_21 | DOI Listing |
Biotechnol J
September 2025
Joint International Research Laboratory of Agriculture and Agri-Product Safety of the Ministry of Education, Yangzhou University, Yangzhou, China.
Vaccines are pivotal in mitigating infectious diseases by reducing infection rates, severity, and mortality. Plant-derived vaccines-engineered to express antigens in plants, offer distinctive advantages, including cost-efficient production, enhanced biosafety profiles, superior thermal stability, and simplified logistics. Recent advances in plant biotechnology have enabled the large-scale production of plant-based vaccines, positioning them as a viable and transformative alternative to conventional vaccine platforms.
View Article and Find Full Text PDFMol Plant
September 2025
National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, Wuhan 430070, China; Hubei Hongshan Laboratory, Wuhan 430070, China. Electronic address:
This study introduces Multi-Dimensional Environment (MDE) zoning to enhance maize resilience and improve stagnant yields in China amidst climate change. Utilizing comprehensive environmental and yield data, MDE zoning accurately identifies areas for targeted, climate-adaptive breeding. The tool provides a flexible framework for updates using annual variety testing and daily environmental data, optimizing production and resource allocation.
View Article and Find Full Text PDFKidney Blood Press Res
August 2025
Primary hyperoxaluria type 1 (PH1) is a rare autosomal recessive disorder caused by a deficiency of the hepatic peroxisomal enzyme alanine-glyoxylate aminotransferase (AGT), which catalyses the conversion of glyoxylate to glycine, resulting in increased oxalate production. The clinical consequences of the progressive build up of oxalates include nephrocalcinosis, nephrolithiasis, chronic kidney disease and ultimately renal failure with extra-renal involvement. The diagnosis of PH1 is challenging due to the non-specific nature of its symptoms and the need for costly genetic testing.
View Article and Find Full Text PDFZoonoses Public Health
September 2025
College of Veterinary Medicine, Sudan University of Science and Technology, Khartoum, Sudan.
Introduction: Toxoplasma gondii is a zoonotic parasite of significant public health concern, particularly in regions where consumption of undercooked meat is common. Despite the importance of sheep as a potential source of human infection, understanding of T. gondii seroprevalence and tissue distribution in sheep in the Red Sea State in Sudan remains limited.
View Article and Find Full Text PDFNature
September 2025
Centre for Evolution and Cancer, Institute of Cancer Research, London, UK.
Cancer development and response to treatment are evolutionary processes, but characterizing evolutionary dynamics at a clinically meaningful scale has remained challenging. Here we develop a new methodology called EVOFLUx, based on natural DNA methylation barcodes fluctuating over time, that quantitatively infers evolutionary dynamics using only a bulk tumour methylation profile as input. We apply EVOFLUx to 1,976 well-characterized lymphoid cancer samples spanning a broad spectrum of diseases and show that initial tumour growth rate, malignancy age and epimutation rates vary by orders of magnitude across disease types.
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