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Bombay and para-Bombay blood group phenotypes: Molecular basis, epidemiology, diagnosis, and transfusion management: An extended review
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Bombay (Oh) and Para-Bombay are rare variants of the ABO blood group system that carry significant clinical importance. They are characterized by the absence or a marked reduction in the expression of the H antigen on red blood cells (RBCs). This deficiency leads to a failure in the synthesis of A and B antigens, predisposing patients—particularly those with the Bombay phenotype—to developing potent anti-H antibodies, which can cause severe hemolytic transfusion reactions. Objective: The primary goal is to provide clinicians and laboratory specialists with a practical and comprehensive framework to prevent avoidable blood mismatch and improve clinical outcomes for patients suffering from H-deficient phenotypes. Methods: This review summarizes the underlying biology behind FUT1/FUT2 deficiency and highlights its effects on population groups and founder effects. It integrates serological and molecular tools into a practical diagnostic workflow. Furthermore, it outlines management strategies for pre-surgery, obstetrics, and emergencies, and reviews emerging translational methods, such as the enzymatic removal of H from group O red blood cells. Findings: The review emphasizes the critical nature of early engagement with rare donor networks. It identifies the biological mechanisms of H deficiency and provides a structured approach to managing the risks associated with these rare phenotypes, ensuring that high-potency antibodies do not lead to life-threatening transfusion complications. Conclusion: Implementing a practical and comprehensive framework in laboratories is essential to prevent transfusion incompatibility. By utilizing advanced diagnostic tools and early coordination with donor networks, the safety and outcomes of patients with H antigen deficiency can be significantly enhanced.

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Publication Date
Thu Apr 06 2023
Journal Name
Materials Science Forum
Study of the Effect of Ce <sup>3+</sup> on the Gas Sensitivity and Magnetic Properties of Cu<sub>x</sub>Ce<sub>0.3-X</sub>Ni<sub>0.7</sub>Fe<sub>2</sub>O<sub>4</sub> Ferrite Nanoparticles
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This study includes the preparation of the ferrite nanoparticles CuxCe0.3-XNi0.7Fe2O4 (where: x = 0, 0.05, 0.1, 0.15, 0.2, 0.25, 0.3) using the sol-gel (auto combustion) method, and citric acid was used as a fuel for combustion. The results of the tests conducted by X-ray diffraction (XRD), emitting-field scanning electron microscopy (FE-SEM), energy-dispersive X-ray analyzer (EDX), and Vibration Sample Magnetic Device (VSM) showed that the compound has a face-centered cubic structure, and the lattice constant is increased with increasing Cu ion. On the other hand, the compound has apparent porosity and spherical particles, and t

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