Literature DB >> 22148549

Design and evaluation of multifunctional nanocarriers for selective delivery of coenzyme Q10 to mitochondria.

Anjali Sharma1, Ghareb M Soliman, Noura Al-Hajaj, Rishi Sharma, Dusica Maysinger, Ashok Kakkar.   

Abstract

Impairments of mitochondrial functions have been associated with failure of cellular functions in different tissues, leading to various pathologies. We report here a mitochondria-targeted nanodelivery system for coenzyme Q10 (CoQ10) that can reach mitochondria and deliver CoQ10 in adequate quantities. Multifunctional nanocarriers based on ABC miktoarm polymers (A = poly(ethylene glycol (PEG), B = polycaprolactone (PCL), and C = triphenylphosphonium bromide (TPPBr)) were synthesized using a combination of click chemistry with ring-opening polymerization, self-assembled into nanosized micelles, and were employed for CoQ10 loading. Drug loading capacity (60 wt %), micelle size (25-60 nm), and stability were determined using a variety of techniques. The micelles had a small critical association concentration and were colloidally stable in solution for more than 3 months. The extraordinarily high CoQ10 loading capacity in the micelles is attributed to good compatibility between CoQ10 and PCL, as indicated by the low Flory-Huggins interaction parameter. Confocal microscopy studies of the fluorescently labeled polymer analog together with the mitochondria-specific vital dye label indicated that the carrier did indeed reach mitochondria. The high CoQ10 loading efficiency allowed testing of micelles within a broad concentration range and provided evidence for CoQ10 effectiveness in two different experimental paradigms: oxidative stress and inflammation. Combined results from chemical, analytical, and biological experiments suggest that the new miktoarm-based carrier provides a suitable means of CoQ10 delivery to mitochondria without loss of drug effectiveness. The versatility of the click chemistry used to prepare this new mitochondria-targeting nanocarrier offers a widely applicable, simple, and easily reproducible procedure to deliver drugs to mitochondria or other intracellular organelles.

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Year:  2011        PMID: 22148549      PMCID: PMC4911219          DOI: 10.1021/bm201538j

Source DB:  PubMed          Journal:  Biomacromolecules        ISSN: 1525-7797            Impact factor:   6.988


  44 in total

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5.  Amphiphilic toothbrushlike copolymers based on poly(ethylene glycol) and poly(epsilon-caprolactone) as drug carriers with enhanced properties.

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8.  Simple approach to stabilized micelles employing miktoarm terpolymers and stereocomplexes with application in paclitaxel delivery.

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  18 in total

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Review 2.  Targeted nanoparticles in mitochondrial medicine.

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Journal:  Wiley Interdiscip Rev Nanomed Nanobiotechnol       Date:  2014-10-27

3.  Engineering of blended nanoparticle platform for delivery of mitochondria-acting therapeutics.

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Review 4.  Reactive Oxygen Species-Regulating Strategies Based on Nanomaterials for Disease Treatment.

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5.  Enhanced design and formulation of nanoparticles for anti-biofilm drug delivery.

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6.  Electrostimulus-triggered reactive oxygen species level in organelles revealed by organelle-targeting SERS nanoprobes.

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7.  Multifunctional decoration of alpha-tocopheryl succinate-based NP for cancer treatment: effect of TPP and LTVSPWY peptide.

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Review 8.  Nanotechnology inspired tools for mitochondrial dysfunction related diseases.

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9.  Mitochondrial delivery of doxorubicin by triphenylphosphonium-functionalized hyperbranched nanocarriers results in rapid and severe cytotoxicity.

Authors:  Theodossis A Theodossiou; Zili Sideratou; Maria E Katsarou; Dimitris Tsiourvas
Journal:  Pharm Res       Date:  2013-08-07       Impact factor: 4.200

10.  Targeting Mitochondria in Tumor-Associated Macrophages using a Dendrimer-Conjugated TSPO Ligand that Stimulates Antitumor Signaling in Glioblastoma.

Authors:  Anjali Sharma; Kevin Liaw; Rishi Sharma; Ajit G Thomas; Barbara S Slusher; Sujatha Kannan; Rangaramanujam M Kannan
Journal:  Biomacromolecules       Date:  2020-08-31       Impact factor: 6.988

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