Harnessing Next‐Generation 3D Cancer Models to Elucidate Tumor‐Microbiome Crosstalk
Centralizes the microbiome within 3D tumor‐microbiome model platforms, including spheroids, organoids, 3D‐bioprinted constructs, and microfluidic chips, each enabling structured host‐tumor‐microbe studies. These systems support bacterial colonization, facilitating investigation of microbial impacts on tumor growth, immunity, and therapy. The microbiome
Marina Green Buzhor +12 more
wiley +1 more source
Hiding in Plain Sight: Pulmonary Vein Stenosis Following Pediatric Heart Transplantation. [PDF]
O'Halloran CP +3 more
europepmc +1 more source
THE DIFFERENTIATION OF EYE PIGMENTS IN DROSOPHILA AS STUDIED BY TRANSPLANTATION [PDF]
G W Beadle, Boris Ephrussi
openalex +1 more source
Microphysiological Systems of Lymphatics and Immune Organs
This review surveys recent progress in engineering lymphatic microenvironments and immune organoids within microphysiological systems, emphasizing innovative strategies to recreate the biochemical and biophysical complexity of native lymphatic tissues.
Ishita Jain +2 more
wiley +1 more source
Temporal trends in malignancy incidence and outcomes among kidney transplantation recipients: a multi-center real-world evidence study using the TriNetX network (2000-2010 vs. 2010-2021). [PDF]
Lai GS +9 more
europepmc +1 more source
Progressive Insights into 3D Bioprinting for Corneal Tissue Restoration
This review explores the potential of 3D bioprinting to replicate the complex structure and function of the human cornea. It highlights key advances in bioink development, printing modalities, and in vivo performance, while addressing current challenges and emerging strategies. The review emphasizes bioprinting's promise to overcome donor shortages and
Ilayda Namli +6 more
wiley +1 more source
Experience with second allogeneic hematopoietic stem cell transplantation in Chilean patients: A single-center study. [PDF]
Flores Y +13 more
europepmc +1 more source
Biodegradable Implantable Electronics with Wireless Technology for Real‐Time Clinical Applications
The article explores how bioresorbable implantable electronics merge wireless communication and power delivery with biodegradable materials to enable real‐time clinical applications. It highlights advances in materials, system design, and medical uses across neural, cardiovascular, digestive, immune, and drug‐delivery systems.
Myeongki Cho +4 more
wiley +1 more source

