Results 91 to 100 of about 9,966,852 (260)

Cell‐free synthetic biology: a bottom‐up approach to discovery by design [PDF]

open access: yesMolecular Systems Biology, 2006
The practitioners of the brand of synthetic biology that lies closest to engineering are fond of quoting the phrase Richard Feynman had written on his blackboard: ‘What I cannot create I do not understand’. This phrase captures both a warning about the limitations of analysis in understanding complex systems and an endorsement of the value of design in
openaire   +2 more sources

Implications of Big Data for cell biology

open access: yes, 2015
“Big Data” has surpassed “systems biology” and “omics” as the hottest buzzword in the biological sciences, but is there any substance behind the hype? Certainly, we have learned about various aspects of cell and molecular biology from the many individual
Dolinski, Kara, Troyanskaya, Olga
core   +1 more source

Geometric Effect for Biological Reactors and Biological Fluids

open access: yesBioengineering, 2018
As expressed “God made the bulk; the surface was invented by the devil„ by W. Pauli, the surface has remarkable properties because broken symmetry in surface alters the material properties.
Kazusa Beppu   +3 more
doaj   +1 more source

Structure‐forward targeting of claudins with synthetic binders

open access: yesFEBS Letters, EarlyView.
Claudins form the paracellular barriers between epithelial and endothelial tissues at tight junctions and are targets for molecular binders with the goal of modulating barrier permeability. Claudin‐binding molecules are relevant in drug delivery or in altering claudin interactions with disease‐causing proteins.
Alex J. Vecchio
wiley   +1 more source

Discerning protein pools by selective staining with self‐labeling tags

open access: yesFEBS Letters, EarlyView.
Cell surface proteins have an intra‐ and extracellular pool. Combining genetic fusion to self‐labeling tags that can be addressed with small molecule fluorophores allows separating these pools. We highlight recent developments and techniques for state‐of‐the‐art interrogation of cell surface proteins in the complex tissue setting.
Kati Fischermanns, Johannes Broichhagen
wiley   +1 more source

Nutrient/TOR signaling controls adipose mitochondrial transcription factor A (TFAM) to regulate organismal growth in Drosophila

open access: yesFEBS Letters, EarlyView.
Animals must match their growth rate to available nutrients. We show that in Drosophila larvae, the nutrient‐sensing TOR kinase controls growth by regulating levels of TFAM, a key regulator of mitochondrial function, in the adipose tissue. When nutrients are abundant, high TOR activity suppresses TFAM, lowering mitochondrial bioenergetic activity and ...
Shrivani Sriskanthadevan‐Pirahas   +4 more
wiley   +1 more source

Engineering peptides into antibodies—opportunities and strategies for therapeutic innovation

open access: yesFEBS Letters, EarlyView.
Peptides and antibodies occupy complementary therapeutic niches. Peptides recognize difficult targets in a compact format, while antibodies add specificity, long half‐life, and effector functions. This review examines strategies that merge both modalities—peptide grafting into loops, terminal and Fc fusions, and bioconjugation—highlighting how ...
Jinling Wang   +2 more
wiley   +1 more source

Shaping the science-industry-policy interface in synthetic biology

open access: yes, 2022
S.109-114Current advances in the emerging field of synthetic biology and the improvements in key technologies promise great impacts, not only on future scientific development, but also on the economy.
Gaisser, S., Reiß, T.
core   +1 more source

At-Home, Cell-Free Synthetic Biology Education Modules for Transcriptional Regulation and Environmental Water Quality Monitoring. [PDF]

open access: yesACS Synth Biol, 2023
Jung JK   +11 more
europepmc   +1 more source

Liver organoids: modelling complexity in homeostasis and disease

open access: yesFEBS Letters, EarlyView.
Studying liver in vitro has been challenging because simple 2D cell cultures fail to capture liver's cellular and architectural complexity. To bridge this gap, scientists increasingly use organoids, 3D liver models which better mimic liver composition and function. This review examines recent advances in liver organoid complexity and realism, discusses
Anna M. Dowbaj, Meritxell Huch
wiley   +1 more source

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