Direct monitoring of lipid transfer on exposure of citrem nanoparticles to an ethanol solution containing soybean phospholipids by combining synchrotron SAXS with microfluidics

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Direct monitoring of lipid transfer on exposure of citrem nanoparticles to an ethanol solution containing soybean phospholipids by combining synchrotron SAXS with microfluidics. / Khaliqi, K.; Ghazal, A.; Mat Azmi, Intan Diana; Amenitsch, Heinz; Mortensen, K.; Salentinig, Stefan; Yaghmur, A.

In: The Analyst, Vol. 142, No. 17, 2017, p. 3118-3126.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Khaliqi, K, Ghazal, A, Mat Azmi, ID, Amenitsch, H, Mortensen, K, Salentinig, S & Yaghmur, A 2017, 'Direct monitoring of lipid transfer on exposure of citrem nanoparticles to an ethanol solution containing soybean phospholipids by combining synchrotron SAXS with microfluidics', The Analyst, vol. 142, no. 17, pp. 3118-3126. https://doi.org/10.1039/C7AN00860K

APA

Khaliqi, K., Ghazal, A., Mat Azmi, I. D., Amenitsch, H., Mortensen, K., Salentinig, S., & Yaghmur, A. (2017). Direct monitoring of lipid transfer on exposure of citrem nanoparticles to an ethanol solution containing soybean phospholipids by combining synchrotron SAXS with microfluidics. The Analyst, 142(17), 3118-3126. https://doi.org/10.1039/C7AN00860K

Vancouver

Khaliqi K, Ghazal A, Mat Azmi ID, Amenitsch H, Mortensen K, Salentinig S et al. Direct monitoring of lipid transfer on exposure of citrem nanoparticles to an ethanol solution containing soybean phospholipids by combining synchrotron SAXS with microfluidics. The Analyst. 2017;142(17):3118-3126. https://doi.org/10.1039/C7AN00860K

Author

Khaliqi, K. ; Ghazal, A. ; Mat Azmi, Intan Diana ; Amenitsch, Heinz ; Mortensen, K. ; Salentinig, Stefan ; Yaghmur, A. / Direct monitoring of lipid transfer on exposure of citrem nanoparticles to an ethanol solution containing soybean phospholipids by combining synchrotron SAXS with microfluidics. In: The Analyst. 2017 ; Vol. 142, No. 17. pp. 3118-3126.

Bibtex

@article{c7cd93028a6c46b590b84ca4281074fd,
title = "Direct monitoring of lipid transfer on exposure of citrem nanoparticles to an ethanol solution containing soybean phospholipids by combining synchrotron SAXS with microfluidics",
abstract = "Lipid exchange among citrem nanoparticles and an ethanol micellar solution containing soy phosphatidylcholine was investigated in situ by coupling small angle X-ray scattering with a microfluidic device. The produced soy phosphatidylcholine/citrem nanoparticles have great potential in the development of hemocompatible nanocarriers for drug delivery.",
author = "K. Khaliqi and A. Ghazal and {Mat Azmi}, {Intan Diana} and Heinz Amenitsch and K. Mortensen and Stefan Salentinig and A. Yaghmur",
year = "2017",
doi = "10.1039/C7AN00860K",
language = "English",
volume = "142",
pages = "3118--3126",
journal = "The Analyst",
issn = "0003-2654",
publisher = "Royal Society of Chemistry",
number = "17",

}

RIS

TY - JOUR

T1 - Direct monitoring of lipid transfer on exposure of citrem nanoparticles to an ethanol solution containing soybean phospholipids by combining synchrotron SAXS with microfluidics

AU - Khaliqi, K.

AU - Ghazal, A.

AU - Mat Azmi, Intan Diana

AU - Amenitsch, Heinz

AU - Mortensen, K.

AU - Salentinig, Stefan

AU - Yaghmur, A.

PY - 2017

Y1 - 2017

N2 - Lipid exchange among citrem nanoparticles and an ethanol micellar solution containing soy phosphatidylcholine was investigated in situ by coupling small angle X-ray scattering with a microfluidic device. The produced soy phosphatidylcholine/citrem nanoparticles have great potential in the development of hemocompatible nanocarriers for drug delivery.

AB - Lipid exchange among citrem nanoparticles and an ethanol micellar solution containing soy phosphatidylcholine was investigated in situ by coupling small angle X-ray scattering with a microfluidic device. The produced soy phosphatidylcholine/citrem nanoparticles have great potential in the development of hemocompatible nanocarriers for drug delivery.

U2 - 10.1039/C7AN00860K

DO - 10.1039/C7AN00860K

M3 - Journal article

VL - 142

SP - 3118

EP - 3126

JO - The Analyst

JF - The Analyst

SN - 0003-2654

IS - 17

ER -

ID: 182324913