Results 141 to 150 of about 6,837,049 (299)
New ways for tissue engineering in dentistry
The objective of this paper is to provide an insight of the different materials and techniques that can be used in engineering oral tissues and their potential employment in dentistry. An overview of the traditional methods of recovering lost oral tissue
Khaffaf, Havrest
core
Unraveling the epigenetic code in cancer cell–tumor microenvironment crosstalk
Epigenetic regulation is a key driver of cancer development and progression. Diverse epigenetic alterations in cancer cells and components of the tumor microenvironment (TME) orchestrate their communication through multiple mechanisms. We discuss how the epigenetic code coordinates bidirectional cancer cell–TME crosstalk to promote cancer progression ...
Ji Hoon Park, Mi‐Young Kim
wiley +1 more source
Arginine methylation can be viewed as a persistence‐prone post‐translational modification regulated by a network of PRMTs. Competitive and compensatory interactions among PRMTs can redistribute methylation across substrate pools shaped by sequence, structural, spatial, and environmental layers, reinforcing RNA‐processing, chromatin, and signaling ...
So Hyun Kwon, Ji Min Lee
wiley +1 more source
Siti Balqis Adnan,1 Fang Lim,1 Haslina Ahmad,2,3 Manira Maarof,1,4,5 Mh Busra Fauzi,1,4,6 Nur Izzah Md Fadilah1,4 1Department of Tissue Engineering and Regenerative Medicine (DTERM), Faculty of Medicine, Universiti Kebangsaan Malaysia, Cheras, Kuala ...
Adnan SB +5 more
doaj
Mechanisms and therapeutic opportunities of the ribotoxic stress response in cancer
Cancer cells' high translational demand creates opportunities to therapeutically target ribosome function. Ribosome stalling and collisions activate ZAKα and the ribotoxic stress response (RSR), which can trigger rapid, p53‐independent apoptosis in cancer.
Anastassiya Kim +7 more
wiley +1 more source
Skeletal muscle tissue engineering is relatively new field exploiting knowledge of histology, cell biology, medicine, chemistry and engineering to regenerate, reconstruct and replace damaged or lost muscles.
GARGIOLI, CESARE
core
Novel Poly(amidoamine)-Based Hydrogels as Scaffolds for Tissue Engineering
F. Chiellini +4 more
core +1 more source
This study integrates publicly available transcriptomic datasets to identify molecular signatures associated with response to neoadjuvant chemoradiotherapy in locally advanced rectal cancer. By analyzing a combination of multiple cohorts with bioinformatics approaches, we reveal biological pathways and immune‐related features that may improve ...
Aleksandra Stanojevic +10 more
wiley +1 more source
One of the main goals of bone tissue engineering is to develop suitable bio-acceptable materials for bone graft substitutes, especially for filling large defects In the present study, porous poly(lactic-co-glycolic acid) (PLGA)-silica scaffolds were ...
Lee, SH +10 more
core
Biomechanics Analysis in Tissue Engineering. [PDF]
Ruben RB, Carvalho M, Trabelsi O.
europepmc +1 more source

