Scientists have engineered a lab-on-a-chip system capable of applying precisely controlled mechanical forces to biological materials that mimic the extracellular matrix.
A comprehensive review published in Spine Research synthesizes evidence on aggrecan, the core molecule responsible for hydration in spinal discs. The authors present the first comprehensive, 4-part ...
Post-traumatic osteoarthritis develops rapidly after joint injury, yet current treatments largely address symptoms rather ...
This study reports an important and novel finding that TENT5A, an enzyme involved in fine-tuning poly(A) tail length on selected mRNAs, is required for proper enamel mineralization in mice. The ...
The partnership combines RRG’s FDA-registered, CLIA-certified laboratory and industry-leading biologic products with ...
Pelvic organ prolapse (POP) represents a highly prevalent condition among women, particularly following childbirth and during aging, with recurrence ...
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Study sheds light on potential therapeutic strategies for post-traumatic osteoarthritis
Post-traumatic osteoarthritis often affects younger, active individuals and progresses quickly following ligament or cartilage injury. Chondrocytes, the sole cell type in articular cartilage, survive ...
Thymagen has emerged as a notable compound in contemporary peptide science due to its structural relationship to ...
Neurons placed inside engineered living bodies built from frog cells self-organize, become active, and reshape movement ...
A feature of pancreatic cancer cells' surroundings determines whether they grow fast or become resistant to chemotherapy, a ...
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