2015
DOI: 10.3109/10717544.2015.1046570
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Low molecular weight heparins for current and future uses: approaches for micro- and nano-particulate delivery

Abstract: Low molecular weight heparins (LMWHs), the anticoagulant drug of choice in many indications, had been suggested as novel drug treatment for a range of diseases. Their superior pharmacokinetic properties compared to unfractionated heparin (UFH), motivated scientists to explore new delivery systems for improved therapeutic outcomes. Micro-and nano-carriers, with the versatile nature and characteristics of materials used for their fabrication, are able to surmount the challenges opposed by their native structures… Show more

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Cited by 16 publications
(10 citation statements)
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“…Chemical or enzymatic depolymerization of commercial-grade heparin produces low- molecular-weight heparins, which are sulfated oligosaccharides, carry a negative charge, and are hydrophilic in nature [ 45 ]. Table 1 describes the procedures for preparing the most frequently utilized commercial LMWHs [ 46 , 47 ]. To exert an anticoagulant effect, LMWHs catalyze Xa inactivation by binding to antithrombin [ 47 ].…”
Section: Unfractionated Heparin (Ufh) Versus Low-molecular-weight mentioning
confidence: 99%
“…Chemical or enzymatic depolymerization of commercial-grade heparin produces low- molecular-weight heparins, which are sulfated oligosaccharides, carry a negative charge, and are hydrophilic in nature [ 45 ]. Table 1 describes the procedures for preparing the most frequently utilized commercial LMWHs [ 46 , 47 ]. To exert an anticoagulant effect, LMWHs catalyze Xa inactivation by binding to antithrombin [ 47 ].…”
Section: Unfractionated Heparin (Ufh) Versus Low-molecular-weight mentioning
confidence: 99%
“…To translate the administration route from injection to oral delivery, it is quite crucial to increase the oral absorption of LMWH [ 7 , 8 ]. With the advances in nanotechnology, polymer- and lipid-based nanocarriers such as polymeric micelles [ 9 ], polymeric nanoparticles [ 10 ], lipid nanocapsules [ 11 ], microemulsions [ 12 ], and solid lipid nanoparticles [ 13 ] have been intensively used to facilitate the oral absorption of LMWH. Rationally designed nanocarriers are able to overcome the hurdles encountered during the absorption process through following ways, including (1) protecting drugs from acidic degradation in the stomach; (2) increasing the intestinal epithelial permeability; (3) facilitating intestinal lymphatic transport [ 13 , 14 , 15 , 16 , 17 , 18 ].…”
Section: Introductionmentioning
confidence: 99%
“…Studies assert that the drug can be nanoencapsulated to improve its pharmacokinetic profile, improve treatment efficacy, minimize side effects and increase its chemical and conformational stability, confirming the efficiency of the nanoencapsulation of anticoagulant drugs. 7,8 Therefore, the purpose of this paper was to evaluate the anticoagulant activity of pectin isolated and later chemically sulfated and, from these results, produce and characterize a nanocarrier system to expand its therapeutic potential.…”
Section: Introductionmentioning
confidence: 99%