Volumetric Additive Manufacturing for Cell Printing: Bridging Industry Adaptation and Regulatory Frontiers

Applications of Volumetric Additive Manufacturing in Cell Printing Academic Background Volumetric Additive Manufacturing (VAM) is a revolutionary 3D printing technology capable of rapidly creating complex three-dimensional structures, particularly in the field of cell printing. VAM can mimic the structures of natural tissues, offering new possibili...

Advanced Bioresponsive Drug Delivery Systems for Promoting Diabetic Vascularized Bone Regeneration

Advanced Bioresponsive Drug Delivery Systems for Diabetic Vascularized Bone Regeneration Background The treatment of bone defects in patients with Diabetes Mellitus (DM) remains a significant challenge, as the diabetic microenvironment severely impedes bone regeneration. Various abnormal factors in the diabetic microenvironment, such as hyperglycem...

Self-Assembled DNA−Collagen Bioactive Scaffolds Promote Cellular Uptake and Neuronal Differentiation

Self-Assembled DNA-Collagen Bioactive Scaffolds Promote Cellular Uptake and Neuronal Differentiation Academic Background In molecular biology research, the interaction between DNA and proteins has always been a crucial topic for understanding cellular processes. With the deepening understanding of DNA-protein interactions, this knowledge has been w...

Design of a Magnetic Nanoplatform Based on CD26 Targeting and HSP90 Inhibition for Apoptosis and Ferroptosis-Mediated Elimination of Senescent Cells

Design of a Magnetic Nanoplatform Based on CD26 Targeting and HSP90 Inhibition for Apoptosis and Ferroptosis-Mediated Elimination of Senescent Cells

Magnetic Nanoplatform Based on CD26 Targeting and HSP90 Inhibition for Apoptosis and Ferroptosis-Mediated Elimination of Senescent Cells Academic Background With the intensification of population aging, the accumulation of senescent cells is considered a significant hallmark of aging and age-related diseases. Senescent cells are not only associated...

Enhancing Gene Delivery to Breast Cancer with Highly Efficient siRNA Loading and pH-Responsive Small Extracellular Vesicles

Enhancing Gene Delivery to Breast Cancer with Highly Efficient siRNA Loading and pH-Responsive Small Extracellular Vesicles

Enhancing Gene Delivery to Breast Cancer with Highly Efficient siRNA Loading and pH-Responsive Small Extracellular Vesicles Academic Background In recent years, small extracellular vesicles (sEVs) have become a hot topic in the field of drug delivery due to their natural origin and inherent homing properties. sEVs are lipid nanoparticles secreted b...