Gastrointestinal (GI) cancers constitute the largest portion of all human cancers and represent a significant health burden on modern society. Conventional therapeutic approaches such as chemotherapy and surgical resections often fail due to poor treatment response or tumour relapse. Unfortunately, drug discovery for GI cancers has stalled as current cancer models fail to recapitulate critical features of the parent tumour, leading to poor translation from bench to bedside. Recent advances in three-dimensional (3D) cell culturing techniques have driven the surge of interest in stem cell-derived organoid models, a promising platform with a plethora of potential applications due to its ability to retain crucial architectural, genomic and tran...
Liver cancer is the second most lethal malignancy worldwide. Cell lines and murine models are the mo...
Organoid models allow for the study of key pathophysiological processes such as cancer biology in vi...
Recent advances in our understanding of the intestinal stem cell niche and the role of key signaling...
Abstract It is postulated as a general concept of cancer stem cells (CSCs) that they can produce can...
Organoid cultures have emerged as powerful model systems accelerating discoveries in cellular and ca...
BACKGROUND: The prognosis of patients with different gastrointestinal cancers varies widely. Despite...
Background: The prognosis of patients with different gastrointestinal cancers varies widely. Despite...
Human gastrointestinal cancer (e.g., gastric cancer and colorectal cancer) has been a leading cause ...
Liver cancer, a common and intractable liver-related disease, is a malignant tumor with a high morbi...
Abstract During the past decade, the three-dimensional organoid technology has sprung up and become ...
The recent advances in in vitro 3D culture technologies, such as organoids, have opened new avenues ...
Simple Summary Despite significant strides in multimodal therapy, cancers still rank within the fir...
Simple Summary Despite significant strides in multimodal therapy, cancers still rank within the fir...
Primary liver cancers (PLC), including hepatocellular carcinoma (HCC) and cholangiocarcinoma (CCA), ...
Abstract Organoids are established through in vitro 3D culture, and they can mimic the structure and...
Liver cancer is the second most lethal malignancy worldwide. Cell lines and murine models are the mo...
Organoid models allow for the study of key pathophysiological processes such as cancer biology in vi...
Recent advances in our understanding of the intestinal stem cell niche and the role of key signaling...
Abstract It is postulated as a general concept of cancer stem cells (CSCs) that they can produce can...
Organoid cultures have emerged as powerful model systems accelerating discoveries in cellular and ca...
BACKGROUND: The prognosis of patients with different gastrointestinal cancers varies widely. Despite...
Background: The prognosis of patients with different gastrointestinal cancers varies widely. Despite...
Human gastrointestinal cancer (e.g., gastric cancer and colorectal cancer) has been a leading cause ...
Liver cancer, a common and intractable liver-related disease, is a malignant tumor with a high morbi...
Abstract During the past decade, the three-dimensional organoid technology has sprung up and become ...
The recent advances in in vitro 3D culture technologies, such as organoids, have opened new avenues ...
Simple Summary Despite significant strides in multimodal therapy, cancers still rank within the fir...
Simple Summary Despite significant strides in multimodal therapy, cancers still rank within the fir...
Primary liver cancers (PLC), including hepatocellular carcinoma (HCC) and cholangiocarcinoma (CCA), ...
Abstract Organoids are established through in vitro 3D culture, and they can mimic the structure and...
Liver cancer is the second most lethal malignancy worldwide. Cell lines and murine models are the mo...
Organoid models allow for the study of key pathophysiological processes such as cancer biology in vi...
Recent advances in our understanding of the intestinal stem cell niche and the role of key signaling...