1.
Comparative study of the oral absorption of microencapsulated ferric saccharate and ferrous sulfate in humans
by Contreras, Carlos
European journal of nutrition, 2013-07-27, Vol.53 (2), p.567-574

2.
Iron Absorption following a Single Oral Dose of Ferrous Sulfate or Ferric Gluconate in Patients with Gastrectomy
by Santarpia, L
Annals of nutrition and metabolism, 2013-01-01, Vol.63 (1/2), p.55-59

3.
The role of iron supplementation during epoietin treatment for cancer-related anemia
by Hedenus, M
Medical oncology (Northwood, London, England), 2008-05-13, Vol.26 (1), p.105-115

4.
ISDD: A computational model of particle sedimentation, diffusion and target cell dosimetry for in vitro toxicity studies
by Hinderliter, Paul M
Particle and fibre toxicology, 2010-11-30, Vol.7 (1), p.36-36

5.
Preclinical evaluation of two 68Ga-siderophores as potential radiopharmaceuticals for Aspergillus fumigatus infection imaging
by Petrik, M
European journal of nuclear medicine and molecular imaging, 2012, Vol.39 (7), p.1175-1183

6.
Iron bioavailability from fresh cheese fortified with iron-enriched yeast
by Sabatier, Magalie
European journal of nutrition, 2016-03-30, Vol.56 (4), p.1551-1560

7.
Magnetic nanoparticle biodistribution following intratumoral administration
by Giustini, A J
Nanotechnology, 2011-08-26, Vol.22 (34), p.345101-1-5

8.
The bioavailability of iron picolinate is comparable to iron sulfate when fortified into a complementary fruit yogurt: a stable iron isotope study in young women
by Sabatier, Magalie
European journal of nutrition, 2019-06-11, Vol.59 (4), p.1371-1378

9.
Comparison of the magnetic, radiolabeling, hyperthermic and biodistribution properties of hybrid nanoparticles bearing CoFe2O4 and Fe3O4 metal cores
by Psimadas, D
Nanotechnology, 2013-12-12, Vol.25 (2)

10.
Iron bioavailability from commercially available iron supplements
by Christides, Tatiana
European journal of nutrition, 2014-12-20, Vol.54 (8), p.1345-1352

11.
Adsorption of hematite nanoparticles onto Caco-2 cells and the cellular impairments: effect of particle size
by Zhang, Wen
Nanotechnology, 2010-09-03, Vol.21 (35), p.355103-355103

12.
Canine Model of Convection-Enhanced Delivery of Cetuximab-Conjugated Iron-Oxide Nanoparticles Monitored With Magnetic Resonance Imaging
by Platt, Simon
Neurosurgery, 2012-10-01, Vol.59 (CN_Suppl_1), p.107-113

13.
CD68-Positive Cells in Hepatic Angiomyolipoma
by Tochio, Hitoshi
Oncology, 2017, Vol.92 Suppl 1 (Suppl 1), p.35-39

14.

15.
Are ferric compounds useful in treatment of iron deficiency anemia?
by Arvas, A
Turkish journal of pediatrics, 2000-10, Vol.42 (4), p.352-353

16.
Comparison of ferrous sulfate and ferrous glycinate chelate for the treatment of iron deficiency anemia in gastrectomized patients
by Mimura, Érika C. Mayumi, M.D
Nutrition (Burbank, Los Angeles County, Calif.), 2008, Vol.24 (7), p.663-668

17.
Comparative Bioavailability of Ferrous Succinate Tablet Formulations Without Correction for Baseline Circadian Changes in Iron Concentration in Healthy Chinese Male Subjects: A Sin...
by Cao, Guo-Ying, MD
Clinical therapeutics, 2011, Vol.33 (12), p.2054-2059

18.
Sodium ferric gluconate (SFG) in complex with sucrose for IV infusion: bioequivalence of a new generic product with the branded product in healthy volunteers
by Baribeault, David
Current medical research and opinion, 2011-08, Vol.27 (8), p.1653-1657

19.
Use of ferrous fumarate to fortify foods for infants and young children
by Hurrell, Richard
Nutrition reviews, 2010-09, Vol.68 (9), p.522-530

20.
Iron (III) isomaltoside 1000
by Mace, Thomas AR
Expert review of hematology, 2013-06-01, Vol.6 (3), p.239-246
