10,181 to 10,190 of 10,342 Results
Plain Text - 76.0 KB -
MD5: 450e188f7d827c689c5069e48f062f7b
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Jan 9, 2025
Love, Celina; Steinkühler, Jan; Gonzales, David Thomas; Yandrapalli, Naresh; Robinson, Tom; Dimova, Rumina; Tang, T-Y Dora, 2025, "Reversible pH-Responsive Coacervate Formation in Lipid Vesicles Activates Dormant Enzymatic Reactions data", https://doi.org/10.17617/3.DC72LD, Edmond, V1
In situ, reversible coacervate formation within lipid vesicles represents a key step in the development of responsive synthetic cellular models. Herein, we exploit the pH responsiveness of a polycation above and below its pKa , to drive liquid-liquid phase separation, to form single coacervate droplets within lipid vesicles. The process is complete... |
Jan 9, 2025 -
Reversible pH-Responsive Coacervate Formation in Lipid Vesicles Activates Dormant Enzymatic Reactions data
Gzip Archive - 989.7 MB -
MD5: d4399618d529443395868d0aea4bf68e
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Jan 9, 2025 -
Reversible pH-Responsive Coacervate Formation in Lipid Vesicles Activates Dormant Enzymatic Reactions data
Gzip Archive - 19.1 MB -
MD5: 5413c1f448385bf77320c780c64b31f8
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Jan 9, 2025 -
Reversible pH-Responsive Coacervate Formation in Lipid Vesicles Activates Dormant Enzymatic Reactions data
Gzip Archive - 485.0 MB -
MD5: bd5c55a0ec0c9cd83d03b4e81459e6af
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Jan 9, 2025 -
Reversible pH-Responsive Coacervate Formation in Lipid Vesicles Activates Dormant Enzymatic Reactions data
Gzip Archive - 11.1 GB -
MD5: e0fb62f90b6398ff28a9663be6aa22056bbe69e6
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Jan 9, 2025 -
Reversible pH-Responsive Coacervate Formation in Lipid Vesicles Activates Dormant Enzymatic Reactions data
Gzip Archive - 6.5 GB -
MD5: 7fc31d1d86b902f8c881a09011c3e0f12afba3cd
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Jan 9, 2025
Weigert, Martin; Schmidt, Uwe; Boothe, Tobias; Müller, Andreas; Dibrov, Alexandr; Jain, Akanksha; Wilhelm, Benjamin; Schmidt, Deborah; Broaddus, Coleman; Culley, Siân; Rocha-Martins, Mauricio; Segovia-Miranda, Fabián; Norden, Caren; Henriques, Ricardo; Zerial, Marino; Solimena, Michele; Rink, Jochen; Tomancak, Pavel; Royer, Loïc Alain; Jug, Florian; Myers, Eugene, 2025, "Content Aware Image Restoration: Pushing the Limits of Fluorescence Microscopy data", https://doi.org/10.17617/3.FDFZOF, Edmond, V1
Fluorescence microscopy is a key driver of discoveries in the life-sciences, with observable phenomena being limited by the optics of the microscope, the chemistry of the fluorophores, and the maximum photon exposure tolerated by the sample. These limits necessitate trade- offs between imaging speed, spatial resolution, light exposure, and imaging... |
Python Source Code - 1.6 KB -
MD5: 16ca2833763bbe41de1ef3d3e406dac4
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PNG Image - 854.2 KB -
MD5: cd1333165eb55fa74ace0cf742d6169c
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