18.2
細胞は粒子を内側に引き寄せ、エンドサイトーシスと呼ばれるエネルギーを必要とするプロセスで球状小胞の中に粒子を飲み込みます。 ファゴサイトーシス(「細胞を食べる」)は、3 つの主要なタイプのエンドサイトーシスのうちの 1 つです。 細胞はファゴサイトーシスを利用して、他の細胞(またはその破片)、細菌、…
エンドサイトーシス、ファゴサイトーシス、または細胞食の1つのタイプは、細胞表面の受容体が摂取される粒子に遭遇したときに発生します。
次に、セルは疑似ポッドと呼ばれる投影を拡張します。哺乳類では、物体はしばしば侵入する微生物または損傷した組織からの細胞の破片です。擬似ポッドがアイテムを取り囲み、膜が融合して粒子が内部に閉じ込められた液胞を形成します。
最終的に、液胞は再び融合しますが、今回は侵入する粒子を消化する準備ができている酵素で満たされたリソソームと
融合します。View the full transcript and gain access to JoVE Core videos
Q1: What is phagocytosis and how does it work in cells?
Phagocytosis, or cell eating, is a type of endocytosis where cells engulf large particles like bacteria, viruses, or cellular debris. When surface receptors encounter a particle, the cell extends projections called pseudopods that surround and trap the object inside a vesicle called a phagosome. This energy-requiring process allows cells to internalize materials for destruction or nutrient absorption.
Q2: How do immune cells use phagocytosis to protect the body?
Immune cells including neutrophils, macrophages, and monocytes use phagocytosis to destroy pathogens like viruses and bacteria, as well as infected host cells. These specialized phagocytes recognize unwelcome invaders through surface receptors, engulf them, and eliminate them through enzymatic degradation. This process is essential for defending the body against infections and clearing cellular debris.
Q3: What role do lysosomes play after a phagosome forms?
After a phagosome forms around an engulfed particle, it fuses with a lysosome, a spherical organelle containing degradative enzymes. This fusion creates a phagolysosome where the acidic environment and enzymes neutralize or eliminate the trapped particle. Eventually, the remaining waste forms a residual body that is released from the cell.
Q4: What are pseudopods and why are they important in phagocytosis?
Pseudopods are temporary projections of cytoplasm that extend from the cell surface during phagocytosis. These structures surround and engulf particles bound to cell surface receptors, gradually enveloping the target until it is completely enclosed and pinched off into the cytoplasm. Pseudopods are essential for the cell's ability to capture and internalize large objects.
Q5: How do phagocytes find and recognize particles to engulf?
Phagocytes locate particles through direct contact or by following chemical signals in a process called chemotaxis. Once near a particle, the phagocyte binds to it via surface receptors that may be general, responding to various stimuli, or specific to particular targets. Different types of phagocytes use distinct receptors, allowing them to recognize diverse pathogens and debris.
Q6: What organisms besides immune cells use phagocytosis?
In addition to immune system cells, amoebae, algae, and other single-celled organisms use phagocytosis to absorb nutrients from their environment. These organisms engulf food particles and other cells through the same mechanism of pseudopod extension and vesicle formation. For these organisms, phagocytosis serves primarily as a feeding mechanism rather than a defense strategy.
Q7: What is the difference between phagocytosis and receptor-mediated endocytosis?
Phagocytosis is a type of endocytosis specialized for engulfing large particles like cells and bacteria through pseudopod extension. Receptor-mediated endocytosis, by contrast, is a more selective process where specific receptors bind to particular molecules, forming smaller vesicles. While phagocytosis handles bulk particle uptake, receptor-mediated endocytosis targets specific cargo molecules with high precision.