Iron(III)-hydroxide polymaltose complex (IPC) is an iron preparation with non-ionic iron and polymaltose in a stable complex. The usefulness of IPC in the treatment of iron deficiency anemia (IDA) has recently been a topic of much debate. By reviewing the published literature an overview is provided of the existing comparative evidence vs. ferrous sulfate as reference. For this purpose the standard methods and criteria as described by the Cochrane group are employed. The aim was to establish whether there are differences concerning efficacy (primary end-point: hemoglobin after approx. 2 months of treatment) and concerning safety (number of patients with adverse drug reactions [ADRs]). From an initial group of 14 comparative trials identified, 6 comparative studies (1 double blind) conducted in adults could be retained for analysis. Four pediatric studies initially selected had to be rejected because of heterogeneity of data at baseline. In adults (319 IPC, 238 ferrous sulfate) at the end of the study period (8-13 weeks) the mean hemoglobin values were 12.13 +/- 1.19 g/dl with IPC vs. 11.94 +/- 1.84 g/dl with ferrous sulfate (weighted mean difference WMD = 0.01 [95% CI -0.23, 0.21] g/dl). Not all studies reported on ferremia (higher with IPC), transferrin saturation (no difference) or ferritin (lower with IPC). Adverse drug reactions were reported less frequently with IPC (14.9%) than with ferrous sulfate (34.1%; p < 0.001), particularly upper digestive troubles, stained teeth and diarrhea. The meta-analysis of studies conducted in adult patients with iron deficiency anemia, comparing IPC with ferrous sulfate in equivalent doses, showed that the two compounds attained similar hemoglobin levels, thus suggesting similar efficacy. The tolerance of IPC in adults was clearly better than that of ferrous sulfate; the differences were also significant for the individual adverse reactions. This probably reflects a better risk/benefit ratio of IPC in adults. Properly conducted randomized controlled trials, particularly in pediatrics, are needed.
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http://dx.doi.org/10.1055/s-0031-1296692 | DOI Listing |
J Family Med Prim Care
December 2024
Department of HIV and Blood Borne Viruses, Milton Keynes University Hospital, NHS Foundation Trust, Milton Keynes, UK.
We report a case of a 49-year-old female with a history of HIV infection for 12 years. The patient had excellent compliance with antiretroviral medications, raltegravir 400 mg twice daily and truvada once daily for HIV. Over the years, she maintained an undetectable viral load with a CD4+ count >200 cells/μL.
View Article and Find Full Text PDFHeliyon
December 2024
Department of Applied Chemistry and Chemical Engineering, Islamic University, Kushtia, Bangladesh.
Hematite (α-FeO) nanoparticles have been synthesized from waste source of iron which contains a prominent amount of iron (93.2 %) and investigated the effect of low temperature calcination. The two-step synthesis method involved preparing ferrous sulfate through acid leaching process followed by oxidation and calcination at temperatures ranging from 200 to 400 °C to produce the desired α-FeO in nano form.
View Article and Find Full Text PDFBackground: Recent biomedical research has shown the unusual, multisystem effects of coronavirus disease 2019 in humans. One specific sequela of a primary severe acute respiratory syndrome coronavirus 2 infection is the reactivation of latent viruses in various tissues, such as Epstein-Barr virus. Epstein-Barr virus has been identified in many inflammatory gastrointestinal lesions, such as microscopic gastritides and colitides.
View Article and Find Full Text PDFJ Adv Res
December 2024
Institute of Animal Nutrition, Sichuan Agricultural University, Chengdu 611130, China; Key Laboratory for Animal Disease-resistance Nutrition of China Ministry of Education, Sichuan Agricultural University, Chengdu 611130, China. Electronic address:
Introduction: Iron overload disrupts gut microbiota and induces ferroptosis, contributing to colitis. However, whether gut microbiota directly drives iron overload-induced colitis and its underlying mechanism remain unclear.
Objectives: The study aimed to explore whether gut microbiota can directly regulate iron overload-induced colitis and its underling mechanism.
J Environ Manage
January 2025
Key Laboratory for Utility of Environment-Friendly Composites and Biomass in Universities of Gansu Province, Lanzhou, 730000, China; Key Laboratory of Environment-Friendly Composites of the State Ethnic Affairs Commission, Lanzhou, 730000, China. Electronic address:
The treatment of biodegradable plastics through composting has garnered increasing attention. This study aimed to investigate the effects of Biochar FN1 bacteria and ferrous sulfate on nitrogen retention, greenhouse gas emissions, and degradable plastics during composting and to elucidate their synergistic mechanisms on microbial communities. Compared with the control, applying biochar-loaded FN1 bacteria composites combined with Ferrous sulfate (SGC) markedly accelerated organic matter degradation and reduced cumulative CO and NH emissions.
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