Cells
Scope & Guideline
Exploring Innovative Pathways in Molecular Biology
Introduction
Aims and Scopes
- Cellular Mechanobiology:
Studies investigating how mechanical properties of cells influence their behavior, including migration, differentiation, and response to external stimuli. - Stem Cell Research:
Exploration of stem cell biology, including differentiation pathways, regenerative potential, and applications in therapy for various diseases. - Cancer Biology:
Research focused on the cellular and molecular mechanisms underlying cancer development, progression, and response to therapies. - Neurobiology:
Investigations into the cellular mechanisms of neurodegenerative diseases, neuronal development, and the role of glial cells in brain health. - Immunology:
Studies on immune cell function, the tumor microenvironment, and the interactions between immune cells and other cell types. - Regenerative Medicine:
Research on cellular therapies, including the use of stem cells and their derivatives for tissue repair and disease treatment. - Extracellular Vesicles:
Studies examining the role of extracellular vesicles in intercellular communication, their potential as biomarkers, and therapeutic agents. - Gene Editing and CRISPR Technologies:
Research on the applications of gene editing technologies in basic research and therapeutic development.
Trending and Emerging
- Single-Cell Transcriptomics:
An increasing number of studies focus on single-cell sequencing technologies to understand cellular heterogeneity and dynamics, particularly in cancer and developmental biology. - Extracellular Vesicles as Biomarkers:
There's a growing interest in the role of extracellular vesicles in disease diagnostics and therapeutic applications, reflecting their potential in regenerative medicine. - Advanced Gene Editing Techniques:
Research utilizing CRISPR and other gene editing technologies to explore genetic modifications and their implications in treating diseases is on the rise. - Neuroinflammation and Neurodegeneration:
Studies exploring the relationship between immune responses in the brain and neurodegenerative diseases are increasingly prevalent, emphasizing the importance of the immune system in neurological health. - Metabolomics in Cancer Research:
The application of metabolomics to understand metabolic alterations in cancer cells and their microenvironment is emerging as a vital area of research. - Personalized Medicine Approaches:
Research aimed at tailoring therapies based on individual patient profiles, including genetic and epigenetic factors, is gaining momentum. - Microbiome Research:
The exploration of the gut-brain axis and its implications for health and disease is trending, reflecting an interdisciplinary approach to understanding complex biological interactions.
Declining or Waning
- Plant Cellular Biology:
Research related to plant cell biology has seen a decrease in published articles, potentially due to a shift towards more human health-related studies. - Traditional Pharmacological Studies:
Papers focused on conventional pharmacology without integrating novel technologies or approaches are becoming less prevalent, as the field moves towards more innovative therapeutic strategies. - Basic Mechanistic Studies without Clinical Relevance:
There is a waning interest in purely mechanistic studies that do not translate into clinical applications or therapeutic insights. - Animal Models in Basic Research:
Research using traditional animal models without incorporating advanced techniques (like organoids or humanized models) is less frequently published, reflecting a preference for more relevant human applications.
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