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methoxy poly(ethylene glycol-co-epsilon-caprolactone)

Known as: MePEG-PCL, mPEG-PCL, methoxy poly(ethylene glycol)-block-poly(caprolactone) 
 
National Institutes of Health

Papers overview

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Review
2018
Review
2018
Tissue engineering is a promising approach to repair tendon and muscle when natural healing fails. Biohybrid constructs obtained… Expand
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Highly Cited
2014
Highly Cited
2014
PURPOSE Among the potent anticancer agents, curcumin is known as a very efficacious against many different types of cancer cells… Expand
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Highly Cited
2013
Highly Cited
2013
Systemic administration of chemotherapy for cancer often has toxic side effects, limiting the doses that can be used in its… Expand
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Highly Cited
2012
Highly Cited
2012
Encapsulation of hydrophobic agents in polymer micelles can improve the water solubility of cargos, contributing to develop novel… Expand
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Highly Cited
2012
Highly Cited
2012
In this paper, methoxypoly(ethylene glycol)-poly(ε-caprolactone) (MPEG-PCL) micelle formulations as promising nano-carriers for… Expand
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Highly Cited
2011
Highly Cited
2011
Curcumin is an effective and safe anticancer agent, but its hydrophobicity inhibits its clinical application. Nanotechnology… Expand
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Highly Cited
2009
Highly Cited
2009
Iron oxide nanoparticles are effective contrast agents for enhancement of magnetic resonance imaging at tissue, cellular or even… Expand
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Highly Cited
2009
Highly Cited
2009
PurposeHonokiol showed potential application in cancer treatment, but its poor water solubility restricts its clinical… Expand
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Highly Cited
2005
Highly Cited
2005
The amphiphilic copolymer of poly(methoxy-polyethyleneglycol polycaprolactone) (MePEG-PCL) was synthesized. Micelles loading… Expand
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Highly Cited
2002
Highly Cited
2002
A series of diblock copolymers based on methoxypolyethylene glycol-block-poly(caprolactone) (MePEG-b-PCL) was synthesized and… Expand