Tumor heterogeneity is a major challenge for breast cancer researchers who have struggled to find effective treatments despite recent advances in oncology. Although the use of 2D cell culture methods in breast cancer research has been effective, it cannot model the heterogeneity of breast cancer as found within the body. The development of 3D culture of tumor cells and breast cancer organoids has provided a new approach in breast cancer research, allowing the identification of biomarkers, study of the interaction of tumor cells with the microenvironment, and for drug screening and discovery. In addition, the possibility of gene editing in organoids, especially using the CRISPR/Cas9 system, is convenient, and has allowed a more detailed stud...
Abstract Organoids are established through in vitro 3D culture, and they can mimic the structure and...
Although the current advances in breast cancer (BC) research, it is still one of the leading causes ...
Recent progress in the field of organoid-based cell culture systems has enabled the use of patient-d...
Tumor heterogeneity is a major challenge for breast cancer researchers who have struggled to find ef...
Organoid cultures have emerged as powerful model systems accelerating discoveries in cellular and ca...
The recent advances in in vitro 3D culture technologies, such as organoids, have opened new avenues ...
While mouse models and two-dimensional (2D) cell culture systems have dominated as research tools fo...
Breast cancer (BC) comprises multiple distinct subtypes that differ genetically, pathologically, and...
Abstract. Organoids are three-dimensional cellular structures with self-organizing and self-differen...
Breast cancer (BC) comprises multiple distinct subtypes that differ genetically, pathologically, and...
Organoid technology has rapidly transformed basic biomedical research and contributed to significant...
Abstract During the past decade, the three-dimensional organoid technology has sprung up and become ...
11noTumor organoids are tridimensional cell culture systems that are generated in vitro from surgica...
Organoids are microscopic self-organizing, three-dimensional structures that are grown from stem cel...
Organotypic models of patient-specific tumours are revolutionizing our understanding of cancer heter...
Abstract Organoids are established through in vitro 3D culture, and they can mimic the structure and...
Although the current advances in breast cancer (BC) research, it is still one of the leading causes ...
Recent progress in the field of organoid-based cell culture systems has enabled the use of patient-d...
Tumor heterogeneity is a major challenge for breast cancer researchers who have struggled to find ef...
Organoid cultures have emerged as powerful model systems accelerating discoveries in cellular and ca...
The recent advances in in vitro 3D culture technologies, such as organoids, have opened new avenues ...
While mouse models and two-dimensional (2D) cell culture systems have dominated as research tools fo...
Breast cancer (BC) comprises multiple distinct subtypes that differ genetically, pathologically, and...
Abstract. Organoids are three-dimensional cellular structures with self-organizing and self-differen...
Breast cancer (BC) comprises multiple distinct subtypes that differ genetically, pathologically, and...
Organoid technology has rapidly transformed basic biomedical research and contributed to significant...
Abstract During the past decade, the three-dimensional organoid technology has sprung up and become ...
11noTumor organoids are tridimensional cell culture systems that are generated in vitro from surgica...
Organoids are microscopic self-organizing, three-dimensional structures that are grown from stem cel...
Organotypic models of patient-specific tumours are revolutionizing our understanding of cancer heter...
Abstract Organoids are established through in vitro 3D culture, and they can mimic the structure and...
Although the current advances in breast cancer (BC) research, it is still one of the leading causes ...
Recent progress in the field of organoid-based cell culture systems has enabled the use of patient-d...