Developing an Erythrocyte-MHC-I Conjugate for Cancer Treatment

Developing an Erythrocyte-MHC-I Conjugate for Cancer Treatment

Developing a Novel Erythrocyte-MHC-I Conjugate for Cancer Treatment: A Revolutionary Immunotherapy Research Background: Traditional Roles and Newly Discovered Potential Erythrocytes, or red blood cells, are the most abundant cells in the human body, comprising approximately 70% of total cell count in adults. Traditionally recognized for their role ...

Adipose-Derived Stem Cells as Carrier of Pro-Apoptotic Oncolytic Myxoma Virus: To Cross the Blood–Brain Barrier and Treat Murine Glioma

Crossing the Blood–Brain Barrier: Study on Adipose-Derived Stem Cells as Carriers for Pro-Apoptotic Oncolytic Myxoma Virus in the Treatment of Murine Glioblastoma Background and Objective Glioblastoma (GBM) is among the most invasive and aggressive brain tumors, characterized by high recurrence rates and poor prognosis. Despite multimodal intervent...

Population-wide DNA Methylation Polymorphisms at Single-Nucleotide Resolution in 207 Cotton Accessions Reveal Epigenomic Contributions to Complex Traits

Cotton Population-Level DNA Methylation Polymorphism Study Reveals Epigenomic Contributions to Complex Traits Background and Research Motivation In recent decades, genome and genetic diversity have been extensively studied through genome-wide association studies (GWAS), providing a theoretical foundation for understanding crop trait variations. How...

A Conditional Protein Diffusion Model Generates Artificial Programmable Endonuclease Sequences with Enhanced Activity

A Conditional Protein Diffusion Model Generates Artificial Programmable Endonuclease Sequences with Enhanced Activity

Deep Learning-Driven Protein Design: Generating Functional Protein Sequences Using Conditional Diffusion Models Proteins are at the core of life sciences research and applications, offering countless possibilities due to their diversity and functional complexity. With advancements in deep learning technologies, protein design has reached a new pinn...

Deciphering the Topological Landscape of Glioma: A Framework Based on Network Theory

Deciphering the Topological Landscape of Glioma: A Study Based on a Network Theory Framework Glioma stem cells (GSCs) are recognized as key factors in glioma recurrence and treatment resistance, making them an important focus for new therapeutic approaches. However, the limited understanding of the role of GSCs in the hierarchy of glioma has sparke...

Stem Cell Transplantation Extends the Reproductive Lifespan of Naturally Aging Cynomolgus Monkeys

Stem Cell Transplantation Extends the Reproductive Lifespan of Naturally Aging Cynomolgus Monkeys Background of the Study The ovary is a crucial organ for female reproduction and health, responsible for producing oocytes and secreting sex hormones. As women age, ovarian reserves gradually decline, eventually leading to menopause, which brings about...

A Human Pluripotent Stem Cell-Based Somitogenesis Model Using Microfluidics

Study of Somite Formation Model Based on Microfluidic System Background and Research Motivation The formation of somites plays a crucial role in vertebrate embryonic development, significantly influencing the layout and functionality of the embryonic musculoskeletal system. Somite formation involves the segmentation of bilateral presomitic mesoderm...

Epitope Editing Protects Hematopoietic Cells from CD123 Immunotherapy for Acute Myeloid Leukemia

Epitope Prime Editing Shields Hematopoietic Cells from CD123 Immunotherapy: A Novel Therapeutic Strategy for Acute Myeloid Leukemia Research Background and Problem Statement Acute Myeloid Leukemia (AML) is a malignant blood disease characterized by the abnormal differentiation of myeloid hematopoietic stem and progenitor cells (HSPCs). Its incidenc...

Embryonic Macrophages Support Endocrine Commitment During Human Pancreatic Differentiation

The Role of Embryonic Macrophages in Human Pancreatic Development Background and Research Motivation Pancreatic development involves complex interactions between various cell types. In recent years, the influence of multiple cells within the pancreatic microenvironment has gained attention; however, the role of immune cells in pancreatic organogene...

Construction of Multilayered Small Intestine-like Tissue by Reproducing Interstitial Flow

Multilayered Tissue Construction of a Micro-intestinal System Reproduces Mesenchymal Flow Research Background In recent years, constructing in vitro models of the human small intestine has made significant progress; however, fully replicating its complex structural and functional characteristics remains challenging. The goal of micro-intestinal tis...