Results 181 to 190 of about 3,991,247 (327)
Simulation of the nutritional requirements and energy balance of adult cows in a northern temperate grassland. [PDF]
Yu T, Yan R, Xin X, Zhang X, Yin G.
europepmc +1 more source
The release of COL6A3 by fibroblasts is sensed by the CD44 receptor on melanocytes, activating glutathione (GSH) metabolism and increasing melanocyte survival during skin organoid culture. SEMA3C released by bulge cells binds to the NRP1 receptor on melanocytes, regulating microtubule stability and promoting melanocyte recruitment and function during ...
Tingting Li+17 more
wiley +1 more source
The study reveals that PAXIP1‐associated glutamate‐rich protein 1 (PAGR1), a glucose‐responsive regulator in skeletal muscle, modulates systemic glucose homeostasis and hepatic metabolism. Muscle‐specific PAGR1 deletion enhances insulin signaling, promotes glucose transporter 4 (GLUT4) translocation, and protects against high‐fat‐diet‐induced insulin ...
Chenyun Ding+19 more
wiley +1 more source
Differences in adult nutritional requirements impact the population growth and survival of two related species of rice leaffolders to produce interspecific differentiation. [PDF]
Ding L+7 more
europepmc +1 more source
NUTRITIONAL REQUIREMENTS OF LACTOBACILLUS 30a FOR GROWTH AND HISTIDINE DECARBOXYLASE PRODUCTION [PDF]
Beverly M. Guirard, Esmond E. Snell
openalex +1 more source
Wearable Bioelectronics for Home‐Based Monitoring and Treatment of Muscle Atrophy
As an inevitable disease, muscle atrophy has received more attention. Because the factors that induce this disease are diverse, achieving a complete cure is still impossible. Wearable bioelectronics provides a more comfortable, low‐cost, and efficient way of home care for the monitoring and treatment of muscle atrophy. Therefore, this review summarizes
Shuai Zhang+4 more
wiley +1 more source
STUDIES ON THE NUTRITIONAL REQUIREMENTS OF BACTERIA VII. PYRIDINE-3-SULFONIC ACID AS A GROWTH FACTOR
Den’ichi Mizuno, Tomie Nojima
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Bidirectional Interaction Between the Brain and Bone in Traumatic Brain Injury
Traumatic brain injury (TBI) disrupts the blood–brain barrier and activates neuroimmune responses, causing metabolic disturbances and long‐term bone mass loss. Concurrent fractures accelerate healing and enhance osteogenesis but disrupt regulatory mechanisms, leading to altered bone dynamics and exacerbating neuroinflammation, complicating recovery ...
Wei Zhang, Jun Zou, Lingli Zhang
wiley +1 more source