Bioinspired soft robots for deep-sea exploration

G Li, TW Wong, B Shih, C Guo, L Wang, J Liu… - Nature …, 2023 - nature.com
The deep ocean, Earth's untouched expanse, presents immense challenges for exploration
due to its extreme pressure, temperature, and darkness. Unlike traditional marine robots that …

Gut microbiota and cardiovascular disease

M Witkowski, TL Weeks, SL Hazen - Circulation research, 2020 - ahajournals.org
Fecal microbial community changes are associated with numerous disease states, including
cardiovascular disease (CVD). However, such data are merely associative. A causal …

Effects of crowding and cosolutes on biomolecular function at extreme environmental conditions

J Peters, R Oliva, A Caliò, P Oger, R Winter - Chemical Reviews, 2023 - ACS Publications
The extent of the effect of cellular crowding and cosolutes on the functioning of proteins and
cells is manifold and includes the stabilization of the biomolecular systems, the excluded …

[KNYGA][B] The hadal zone: life in the deepest oceans

A Jamieson - 2015 - books.google.com
The hadal zone represents one of the last great frontiers in marine science, accounting for
45% of the total ocean depth range. Despite very little research effort since the 1950s, the …

Dining in the deep: the feeding ecology of deep-sea fishes

JC Drazen, TT Sutton - Annual review of marine science, 2017 - annualreviews.org
Deep-sea fishes inhabit∼ 75% of the biosphere and are a critical part of deep-sea food
webs. Diet analysis and more recent trophic biomarker approaches, such as stable isotopes …

Temperature, hydrostatic pressure, and osmolyte effects on liquid–liquid phase separation in protein condensates: physical chemistry and biological implications

H Cinar, Z Fetahaj, S Cinar, RM Vernon… - … A European Journal, 2019 - Wiley Online Library
Liquid–liquid phase separation (LLPS) of proteins and other biomolecules play a critical role
in the organization of extracellular materials and membrane‐less compartmentalization of …