Acidohilic bacteria are those that thrives in acidic medium..... basophilic are those that thrives in basic medium
The basophilic appearance of the matrix of hyaline cartilage is due to the presence of proteoglycans, which are rich in negatively charged sulfate and carboxyl groups. These molecules attract basic dyes used in tissue staining, giving the matrix a basophilic (blue/purple) color when viewed under a microscope.
Proerythroblasts eventually differentiate into basophilic erythroblasts, which are precursor cells in the process of red blood cell formation. Through several stages of maturation, basophilic erythroblasts will ultimately develop into mature red blood cells.
Basophilic degeneration is a pathological condition characterized by the presence of increased basophilic (blue-staining) material in cells or tissues, often due to the accumulation of abnormal proteins like amyloid. It can occur in various organs and may be associated with certain diseases or aging processes. Treatment depends on the underlying cause.
Basophilic cytoplasm refers to a cell's cytoplasm that stains blue-purple when exposed to certain dyes or stains in a laboratory setting. This staining pattern is typically seen in cells that have high amounts of ribosomal RNA and protein production, such as in actively secreting cells or cells with high metabolic activity.
Yes, Thiobacillus species are acidophilic bacteria that can survive and thrive in extremely acidic environments, including sulfuric acid. They are capable of using sulfur compounds as an energy source and can tolerate high levels of acidity.
Parietal cells are acidophilic because they contain a large number of mitochondria. The mitochondria, which are needed to pump hydrogen ions against their concentration gradient, are acidophilic; therefore, parietal cells are acidophilic as well.
Mitochondria is acidophilic because it has membrane proteins which have a net positive charge . Any structures are acidophilic if they stain with eosin, which is a negatively charged dye that stains pink to red.
Basophilic erythroblasts are immature red blood cells in the bone marrow that contain basophilic granules, which are a type of cytoplasmic organelle. These granules are involved in the synthesis of hemoglobin, which is essential for oxygen transport in the body. Basophilic erythroblasts eventually mature into erythrocytes (red blood cells) as they progress through stages of development in the bone marrow.
Mitochondria is acidophilic because it has membrane proteins which have a net positive charge . Any structures are acidophilic if they stain with eosin, which is a negatively charged dye that stains pink to red.
oxytocin
The basophilic appearance of the matrix of hyaline cartilage is due to the presence of proteoglycans, which are rich in negatively charged sulfate and carboxyl groups. These molecules attract basic dyes used in tissue staining, giving the matrix a basophilic (blue/purple) color when viewed under a microscope.
it appears the order goes like this from my A&P Book - Hemocytoblast --> Myeloid Stem Cell --> Myeloblast --> Promyelocyte --> Basophilic myelocite --> Basophilic band cells --> Basophils hope this helps. Anything in the rear of basophils can be a precursor.
basophilic drythroblast normoblast reticulocyte
Proerythroblasts eventually differentiate into basophilic erythroblasts, which are precursor cells in the process of red blood cell formation. Through several stages of maturation, basophilic erythroblasts will ultimately develop into mature red blood cells.
Basophilic degeneration is a pathological condition characterized by the presence of increased basophilic (blue-staining) material in cells or tissues, often due to the accumulation of abnormal proteins like amyloid. It can occur in various organs and may be associated with certain diseases or aging processes. Treatment depends on the underlying cause.
Basophilia is the condition of being basophilic - describing biological tissue which stains readily with basic dyes.
Yes, the anterior pituitary secretes growth hormone. It's made by the acidophilic cells.