Results 121 to 130 of about 2,999,960 (264)

Annual Report - Marine Biological Laboratory, 1985

open access: yes, 1986
Annual report of the Marine Biological Laboratory in Woods Hole. 1985.
Marine Biological Laboratory (Woods Hole MA)
core  

Annual Report - Marine Biological Laboratory, 1933 [PDF]

open access: yes, 1933
Annual report of the Marine Biological Laboratory in Woods Hole. 1933.
Marine Biological Laboratory (Woods Hole MA)
core  

UiO‐66 metal–organic frameworks in biomedicine: From structural tunability to bioimaging, photodiagnostics, and photodynamic cancer therapy

open access: yesFEBS Open Bio, EarlyView.
UiO‐66(Zr) metal–organic frameworks are chemically stable, biocompatible, and highly tunable nanomaterials. Their modular structure enables controlled drug delivery, multimodal bioimaging, and light‐activated photodynamic therapy, supporting integrated diagnostic and therapeutic (theranostic) applications in cancer and biomedical research.
Veronika Huntošová   +2 more
wiley   +1 more source

Annual Report - Marine Biological Laboratory, 1888

open access: yes, 1889
Annual report of the Marine Biological Laboratory in Woods Hole. 1888.
Marine Biological Laboratory (Woods Hole MA)
core  

Hyperactive ice‐binding proteins stabilize cell membranes and improve resistance to dehydration stress in Caenorhabditis elegans

open access: yesFEBS Open Bio, EarlyView.
TisIBP8, a fungal‐derived hyperactive ice‐binding protein, helps Caenorhabditis elegans survive dehydration. It localizes near cell membranes, reduces cell damage, and helps maintain membrane structure during drying. These results suggest that ice‐binding proteins can protect cells from dehydration stress as well as freezing stress.
Daiki Shimose   +9 more
wiley   +1 more source

Annual Report - Marine Biological Laboratory, 1892

open access: yes, 1892
Annual report of the Marine Biological Laboratory in Woods Hole. 1892.
Marine Biological Laboratory (Woods Hole MA)
core  

Hyperosmotic stress‐induced redistribution of pre‐mRNA cleavage factor I subunits is associated with shifts in alternative polyadenylation

open access: yesFEBS Open Bio, EarlyView.
Hyperosmotic stress triggers the relocation of the CFIm complex from the nucleus to the cytoplasm. This shift creates a nuclear ‘stoichiometric bottleneck’, limiting CFIm availability for mRNA processing. Consequently, specific mRNAs like NUDT21 and DICER1 undergo targeted 3′UTR shortening, demonstrating how spatial protein dynamics drive rapid ...
Hitomi Soumiya   +2 more
wiley   +1 more source

Annual Report - Marine Biological Laboratory, 1945

open access: yes, 1946
Annual report of the Marine Biological Laboratory in Woods Hole. 1945.
Marine Biological Laboratory (Woods Hole MA)
core  

Evaluating the involvement of autolysosomes in the nuclear translocation of fluorescent proteins

open access: yesFEBS Open Bio, EarlyView.
Endogenously expressed fluorescent proteins can be degraded by autophagy and transported to cell nuclei via the nuclear pore complex. But in some cell lines, for example, HeLa cells which are positive for immunoreactivity of a receptor ligand, such as UCN I, in cell nuclei, fusion of autolysosome with the nuclear envelope is involved in the nuclear ...
Keiichi Ikeda
wiley   +1 more source

Annual Report - Marine Biological Laboratory, 1983

open access: yes, 1983
Annual report of the Marine Biological Laboratory in Woods Hole. 1983.
Marine Biological Laboratory (Woods Hole MA)
core  

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