Delivery systems for improving iron uptake in anemia

被引:20
作者
Trivedi, Riddhi [1 ]
Barve, Kalyani [1 ]
机构
[1] SVKMs NMIMS, Shobhaben Pratapbhai Patel Sch Pharm & Technol Ma, VL Mehta Rd, Mumbai 400056, Maharashtra, India
关键词
Transporter; Hemoglobin; RBC; Enterocyte; Ferritin; DEFICIENCY ANEMIA; FERRIC CARBOXYMALTOSE; ABSORPTION; COMPLEX; SAFETY; BIOAVAILABILITY; HEPCIDIN; NANOPARTICLES; FERUMOXYTOL; HOMEOSTASIS;
D O I
10.1016/j.ijpharm.2021.120590
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Anemia poses a threat to a broad population globally as depleted hemoglobin leads to a plethora of conditions, and the most common cause includes iron deficiency. Iron is an essential element important for erythropoiesis, DNA synthesis, protection of the immune system, energy production, and cognitive function and hence should be maintained at appropriate levels. Various proteins are involved in transporting and absorption of iron, activation of heme synthesis, and RBC production that could be possible targets to improve iron delivery. Oral supplementation of iron either from dietary or synthetic sources has been the frontline therapy for treating iron deficiency in anemia. At the same time, intravenous administration is provided in chronic anemia, such as chronic kidney diseases (CKD). This review focuses on the strategies developed to overcome the disadvantages of available iron therapies and increase iron absorption and uptake in the body to restore iron content. Nanotechnology combined with the food fortification processes gained attention as they help develop new delivery systems to improve iron uptake by enterocytes. Furthermore, naturally obtained products such as polysaccharides, peptides, proteins, and new synthetic molecules have been used in fabrication of iron-carrier systems. The establishment of transdermal iron delivery systems such as microneedle arrays or iontophoresis, or the discovery of new molecules also proved to be an effective way for delivering iron in patients non-compliant to oral therapy.
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页数:11
相关论文
共 89 条
[81]   Preparation, characterization, bioavailability in vitro and in vivo of tea polysaccharides-iron complex [J].
Tang, Minmin ;
Wang, Dongfeng ;
Hou, Yangfeng ;
Buchili, Petter ;
Sun, Liping .
EUROPEAN FOOD RESEARCH AND TECHNOLOGY, 2013, 236 (02) :341-350
[82]   Effects of heme iron enriched peptide on iron deficiency anemia in rats [J].
Tang, Ning ;
Chen, Le-qun ;
Zhuang, Hong .
FOOD & FUNCTION, 2014, 5 (02) :390-399
[83]   THE EFFECT OF CYSTEINE-CONTAINING PEPTIDES RELEASED DURING MEAT DIGESTION ON IRON-ABSORPTION IN HUMANS [J].
TAYLOR, PG ;
MARTINEZTORRES, C ;
ROMANO, EL ;
LAYRISSE, M .
AMERICAN JOURNAL OF CLINICAL NUTRITION, 1986, 43 (01) :68-71
[84]  
Tripathi K., 2013, Essentials of Medical Pharmacology
[85]   Constant voltage 'Iron'tophoresis [J].
Vaka, Siva Ram Kiran ;
Shivakumar, H. N. ;
Murthy, S. Narasimha .
PHARMACEUTICAL DEVELOPMENT AND TECHNOLOGY, 2011, 16 (05) :483-488
[86]   Iron phosphate nanoparticles for food fortification: Biological effects in rats and human cell lines [J].
von Moos, Lea M. ;
Schneider, Mirjam ;
Hilty, Florentine M. ;
Hilbe, Monika ;
Arnold, Myrtha ;
Ziegler, Nathalie ;
Mato, Diogo Sales ;
Winkler, Hans ;
Tarik, Mohamed ;
Ludwig, Christian ;
Naegeli, Hanspeter ;
Langhans, Wolfgang ;
Zimmermann, Michael B. ;
Sturla, Shana J. ;
Trantakis, Ioannis A. .
NANOTOXICOLOGY, 2017, 11 (04) :496-506
[87]  
Wang NY, 2019, FOOD FUNCT, V10, P6711, DOI [10.1039/c9fo01795j, 10.1039/C9FO01795J]
[88]   Effect of Angelica sinensis polysaccharide-iron complex on iron deficiency anemia in rats [J].
Wang Pei-pei ;
Zhang Yu ;
Dai Li-quan ;
Wang Kai-ping .
CHINESE JOURNAL OF INTEGRATIVE MEDICINE, 2007, 13 (04) :297-300
[89]   Frataxin-mediated iron delivery to ferrochelatase in the final step of heme biosynthesis [J].
Yoon, T ;
Cowan, JA .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (25) :25943-25946