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Magnify is a universal molecular anchoring strategy for expansion microscopy
by
Gallagher, Brendan R.
, Stolz, Donna B.
, Klimas, Aleksandra
, Zhao, Yongxin
, Cambi, Franca
, Fekir, Sinda
, Watkins, Simon C.
, Barth, Alison L.
, Cheng, Zhangyu
, Moore, Christopher I.
, Brody, Steven L.
, Wijesekara, Piyumi
, DiBernardo, Emma F.
, Ren, Xi
, Horani, Amjad
in
631/1647/245/2225
/ 631/61
/ Agriculture
/ Animals
/ Basal bodies
/ Bioinformatics
/ Biomedical and Life Sciences
/ Biomedical Engineering/Biotechnology
/ Biomedicine
/ Biomolecules
/ Biotechnology
/ Cilia
/ Humans
/ Hydrogels
/ Image resolution
/ Kidney
/ Kidneys
/ Life Sciences
/ Lipids
/ Medical imaging
/ Mice
/ Microscopes
/ Microscopy
/ Microscopy - methods
/ Neuroimaging
/ Nucleic acids
/ Optical microscopes
/ Organoids
/ Paraffin
/ Proteins
2023
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Magnify is a universal molecular anchoring strategy for expansion microscopy
by
Gallagher, Brendan R.
, Stolz, Donna B.
, Klimas, Aleksandra
, Zhao, Yongxin
, Cambi, Franca
, Fekir, Sinda
, Watkins, Simon C.
, Barth, Alison L.
, Cheng, Zhangyu
, Moore, Christopher I.
, Brody, Steven L.
, Wijesekara, Piyumi
, DiBernardo, Emma F.
, Ren, Xi
, Horani, Amjad
in
631/1647/245/2225
/ 631/61
/ Agriculture
/ Animals
/ Basal bodies
/ Bioinformatics
/ Biomedical and Life Sciences
/ Biomedical Engineering/Biotechnology
/ Biomedicine
/ Biomolecules
/ Biotechnology
/ Cilia
/ Humans
/ Hydrogels
/ Image resolution
/ Kidney
/ Kidneys
/ Life Sciences
/ Lipids
/ Medical imaging
/ Mice
/ Microscopes
/ Microscopy
/ Microscopy - methods
/ Neuroimaging
/ Nucleic acids
/ Optical microscopes
/ Organoids
/ Paraffin
/ Proteins
2023
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Magnify is a universal molecular anchoring strategy for expansion microscopy
by
Gallagher, Brendan R.
, Stolz, Donna B.
, Klimas, Aleksandra
, Zhao, Yongxin
, Cambi, Franca
, Fekir, Sinda
, Watkins, Simon C.
, Barth, Alison L.
, Cheng, Zhangyu
, Moore, Christopher I.
, Brody, Steven L.
, Wijesekara, Piyumi
, DiBernardo, Emma F.
, Ren, Xi
, Horani, Amjad
in
631/1647/245/2225
/ 631/61
/ Agriculture
/ Animals
/ Basal bodies
/ Bioinformatics
/ Biomedical and Life Sciences
/ Biomedical Engineering/Biotechnology
/ Biomedicine
/ Biomolecules
/ Biotechnology
/ Cilia
/ Humans
/ Hydrogels
/ Image resolution
/ Kidney
/ Kidneys
/ Life Sciences
/ Lipids
/ Medical imaging
/ Mice
/ Microscopes
/ Microscopy
/ Microscopy - methods
/ Neuroimaging
/ Nucleic acids
/ Optical microscopes
/ Organoids
/ Paraffin
/ Proteins
2023
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Magnify is a universal molecular anchoring strategy for expansion microscopy
Journal Article
Magnify is a universal molecular anchoring strategy for expansion microscopy
2023
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Overview
Expansion microscopy enables nanoimaging with conventional microscopes by physically and isotropically magnifying preserved biological specimens embedded in a crosslinked water-swellable hydrogel. Current expansion microscopy protocols require prior treatment with reactive anchoring chemicals to link specific labels and biomolecule classes to the gel. We describe a strategy called Magnify, which uses a mechanically sturdy gel that retains nucleic acids, proteins and lipids without the need for a separate anchoring step. Magnify expands biological specimens up to 11 times and facilitates imaging of cells and tissues with effectively around 25-nm resolution using a diffraction-limited objective lens of about 280 nm on conventional optical microscopes or with around 15 nm effective resolution if combined with super-resolution optical fluctuation imaging. We demonstrate Magnify on a broad range of biological specimens, providing insight into nanoscopic subcellular structures, including synaptic proteins from mouse brain, podocyte foot processes in formalin-fixed paraffin-embedded human kidney and defects in cilia and basal bodies in drug-treated human lung organoids.
Expansion microscopy with gel-anchored molecules enables simultaneous retention of nucleic acids, proteins and lipids in diverse tissue types.
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