1.Fever of unknown origin: An atypical presentation of typhoid in a child with glucose-6-phosphate dehydrogenase (G6PD) deficiency
Abdul Rashid F. ; Husain N. ; Hussin H. ; Mohd Nor F.
Tropical Biomedicine 2025;42(No. 1):10-14
Typhoid is an acute febrile illness primarily caused by Salmonella enterica serotype typhi (S. Typhi) which
could be challenging to diagnose in children, owing to its non-specific clinical signs and symptoms which
may resemble other febrile illnesses. Here, we present a case of typhoid which was atypically presented as
fever of unknown origin (FUO) in a two-year-old boy with underlying glucose-6-phosphate dehydrogenase
(G6PD) deficiency. This child was initially diagnosed and managed as acute tonsillopharyngitis, however
remained febrile despite medications. A series of investigations were performed and S. Typhi was
isolated from the bone marrow culture after almost a month of admission. The antibiotic was started
based on antibiotic susceptibility testing and he recovered well. Our case underscores the challenges of
diagnosis establishment and clinical management of typhoid in paediatric patients who has underlying
disease and emphasizes the importance of having high index of clinical suspicion to ascertain timely
and proper diagnosis.
2.Cell death induced by hydroxyapatite on L929 fibroblast cells.
Inayat-Hussain SH ; Rajab NF ; Roslie H ; Hussin AA ; Ali AM ; Annuar BO
The Medical Journal of Malaysia 2004;59 Suppl B():176-177
Biomaterials intended for end-use application as bone-graft substitutes have to undergo safety evaluation. In this study, we investigated the in vitro cytotoxic effects especially to determine the mode of death of two hydroxyapatite compounds (HA2, HA3) which were synthesized locally. The methods used for cytotoxicity was the standard MTT assay whereas AO/PI staining was performed to determine the mode of cell death in HA treated L929 fibroblasts. Our results demonstrated that both HA2 and HA3 were not significantly cytotoxic as more than 75% cells after 72 hours treatment were viable. Furthermore, we found that the major mode of cell death in HA treated cells was apoptosis. In conclusion, our results demonstrated that these hydroxyapatite compounds are not cytotoxic where the mode of death was primarily via apoptosis.
Apoptosis/drug effects
;
Biocompatible Materials/*toxicity
;
Bone Substitutes/*toxicity
;
Cell Death/*drug effects
;
Durapatite/*toxicity
;
L Cells (Cell Line)
;
*Prostheses and Implants


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