Illustration depicting leukocyte-endothelial interactions.
stable arrest,
and transmigration into tissues.
The diagram includes representations of selectin and integrin interactions.
The context involves immune response and inflammation mechanisms.
Nrf2 is central to pathways modulated by anthocyanins.
Highlights key enzymes HO-1,
SOD,
CAT,
Mainly focuses on antioxidant mechanisms.
Schematic representation of biochemical pathways involving cyanidin-3-glucoside.
Bacteria entering blood stream,
attaching to heart valve.
Close-up view of microparticles and detailed structures.
Heart shape within bacteria.
One bird is feeding the other.
They are perched on a tree branch surrounded by green leaves.
Schematic of PRH function in cell regulation.
Include labels for CCLP Tumor Cell and cell cycle regulation.
Highlight potential dysregulation.
3D medical illustration of a tumor outside a blood vessel.
Clean neutral background.
Focus on tumor and blood vessel interaction.
Realistic biological textures,
sharp lighting.
Representation of lipid carriers in a scientific context.
Depiction of structures that deliver therapeutic agents.
Highlighting drug delivery systems and nanotechnology applications.
This image illustrates the interaction between T and B immune cells.
The focal point is the connection between the two types of cells,
The background features a dark,
slightly blurred setting to emphasize the cells' vibrancy.
This composition effectively captures the complexity of the immune response in a visually engaging manner.
Flowchart illustrates bacterial translocation pathway involving MMP activation from epithelial apoptosis and oxidative stress.
Shows MMP-2 and MMP-9 effects on tight junctions.
Depicts immune feedback loop leading to sepsis.
Highlights clinical consequences.
Close-up view of capillaries in the human body.
Textured walls of the capillary are visible.
Image should capture the complexity of blood vessels.
The figure illustrates the innate immune response to infection through a centralized sun-like figure highlighting activation,
recruitment,
and control.
It outlines how the immune response is activated,
It also describes inflammatory mediators secreted upon infection.
The outer sections detail the recruitment of cellular and non-cellular immune components to the infection site.
Additionally,
The image depicts a close-up of a virus,
represented in a vivid,
detailed manner.
This illustration highlights the intricate details of the virus's morphology.
The background is dark,
allowing the virus to stand out brightly.
Such images are commonly used in medical literature to explain infections,
specifically focusing on immune responses related to bacteria and viruses.
Shallow depth of field and dramatic lighting used.
Microscopic image showing various blood cells.
Detailed examination of cellular structures in blood samples.
Focus on cell arrangement and coloration.
Educational illustration for understanding blood biology.
Focus on viral structure and details against a dark background.
Realistic 3D rendering of a monolayer of epithelial cells.
Attached to visible basement membrane.
E-cadherin molecules bridging cell membranes.
Include zoomed-in view highlighting E-cadherin at contact sites.
Use clean bright colors to emphasize cell structures.
Image suitable for educational and research purposes.
Diagram showing the relationship between TCR and IL12 in initiating Glycolysis.
Glycolysis sub-pathway produces O-GlcNAc on STAT1 at Ser499 and Thr510.
Resulting stable pSTAT1 Ser727 increases IFNgamma.
Glycolysis also activates pSTAT1 Tyr701.
pSTAT1 Tyr701 triggers T-Bet activation and production of IFNgamma.
pSTAT1 Tyr701 leads to Th1 differentiation while pSTAT1 Ser727 supports Th1 lineage stability.
Key structural markers include CD44 and Tamm-Horsfall Protein (THP).
Released markers show how the body reacts to infection,
including Prosaposin and NGF.
Bacterial cell markers like TLR2 help recognize pathogens.
Immune response markers such as interleukins indicate inflammation levels.
Metabolite markers provide insights into both host and bacteria activity,
whereas acute phase reactants highlight inflammation and injury.
This detailed illustration aids in understanding complex biological interactions.
Each cell has apical and basal polarity.
Neighboring cells' sides show adhesion junctions using E-cadherin molecules.
Sections and magnifications highlight E-cadherin bridging cell membranes.
Overall bright colors give a clean appearance.
Visualizes cell polarity and adhesion structure clearly.
Suitable for education and research.
Accurate science and clear visuals combine in a realistic 3D rendering.
Detailed medical illustration shows a blood vessel cross-section.
Tumor is located outside the vessel.
Tumor connects to the vessel through small branches.
Labeled in Japanese.
Clean white background.
This illustration depicts an antibody binding to a cell,
showcasing the intricate relationship between them.
The antibody is represented in bright yellow,
symbolizing its role in the immune response.
The cell is depicted in a vivid blue,
highlighting its surface features.
The background features soft gradients,
contributing to a scientific yet artistic ambiance.
This image can be used in various educational and medical contexts to explain cellular interactions.