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Cellular immunity is the collection of human autoimmune cells, which are cultured in vitro to increase their number thousands of times and target killing.
The function is enhanced, and then it is infused back into the body to kill pathogens, cancer cells, and mutated cells in the blood and tissues, and break the immune resistance.
Receive, activate and enhance the body's immunity, taking into account the dual effects of ** and health care.
Extended information: In general, the vast majority of microorganisms such as bacteria and protozoa are composed of a single cell, i.e., unicellular organisms, and more.
Plants and higher animals are multicellular organisms. Cells can be divided into two categories: prokaryotic cells and eukaryotic cells, but it has also been suggested that they should be divided into three.
class, that is, the ancient karyotic cells, which originally belonged to the prokaryotic cells, are separated as a parallel class with them. The discipline that studies cells is called cell biology.
Learn. Cells are so small that they can only be seen under a microscope and come in a variety of shapes. It is mainly composed of nucleus and cytoplasm, and has a thin surface.
Cell membranes. Higher plants have a cell wall outside the cell membrane, plastids in the cytoplasm, chloroplasts and vacuoles in the body, and mitochondria. Animal.
Cells do not have a cell wall, and centrosomes are often present in the cytoplasm, which is absent in higher plant cells. Cells have functions such as locomotion, nutrition, and reproduction.
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Cell** is an emerging ** model with significant curative effect, and it is a new ** method of autoimmune anti-cancer. It is a method of using biotechnology and biological agents to culture and expand the immune cells collected from the patient's body in vitro and then infuse them back into the patient's body to stimulate and enhance the body's autoimmune function, so as to achieve the purpose of the first class.
Cells can be used for a variety of diseases, and the effect is significant:
1. Chronic diseases (chronic renal failure, digestive disorders accompanied by decreased function of the stomach, gallbladder and pancreas, chronic constipation, chronic liver failure, intervertebral disc damage, spinal pain, premature joint wear. )
2. Degenerative diseases (disease states in which neurons of the brain and spinal cord are lost, common diseases include ataxia, cerebellar atrophy, Parkinson's, multiple sclerosis, etc.).
3. Immune diseases ("autoimmune diseases" are diseases caused by the immune system's immune system responding to its own components, causing damage. Including: lupus erythematosus, rheumatoid arthritis, juvenile diabetes, a variety of ** diseases, etc. )
4. Malignant neoplastic diseases (the principle of "killing tumor cells with the body's own immune cells" can greatly enhance the immune function of the human body and inhibit the growth of tumor cells. )
5. Anti-aging and beauty (using the regeneration and repair function of cells to replace senescent cells in tissues in time, and also activate the growth of cells.) It can be used for **, wrinkle removal, etc. )
7. Other diseases (liver cirrhosis, cerebral palsy, diabetes, hepatitis, necrosis of the femoral head, etc.) )
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Biological immunity can be applied to a variety of malignancies at different stages. It has good curative effects on malignant melanoma, kidney cancer, lung cancer, esophageal cancer, gastric cancer, pancreatic cancer, liver cancer, gallbladder cancer, bowel cancer, breast cancer, cervical cancer, ovarian cancer, glioma, prostate cancer, bladder cancer, leukemia, lymphoma (except T-cell lymphoma), multiple myeloma, soft tissue sarcoma, etc.
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Immune cells are a common name for white blood cells that are involved in or associated with an immune response. Including lymphocytes, dendritic cells, monocytes, macrophages, granulocytes, mast cells, etc. Immune cells can be divided into many types, each of which is responsible for a variety of immune functions.
Autologous immune cell technology** refers to the activation and expansion of mononuclear cells isolated from the peripheral blood of the autologous in vitro and then transfused into the patient's body to directly kill tumor cells or virus-infected cells, or regulate and enhance the body's immune function. Through the infusion of immune cells, it helps to improve the function of the immune system, and helps to remove cancerous cells or bacterial, viral and microbial infections in time, and plays an anti-tumor and anti-infection role.
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Antibody cells carried by one's own constitution may have been vaccinated.
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The role of immune cells**:
1. Immune cells can induce autologous antiviral immune response through in vitro culture, proliferation, and activation, and once the human antiviral immunity is activated, it will continuously produce antiviral substances to kill the virus.
2. Most of the T cells that have the effect of killing tumor cells become memory cells in the body after activation, and are stored in lymphoid tissues, which provides long-term protection for the complete removal of tumor cells and the prevention and treatment of metastasis.
Its main process is to isolate immune T cells from cancer patients, use genetic engineering technology to add a chimeric antibody that can recognize tumor cells and activate T cells to kill tumor cells at the same time, and then expand a large number of CAR T cells through in vitro culture, and then infuse the cells back into the patient.
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Biological cellular immunity is a new tumor model with significant efficacy, and it is a new type of autoimmune anti-cancer method.
Biological immunity refers to the collection of human mononuclear cells, in vitro culture, so that the number of them is multiplied, the targeted killing function is enhanced, and then infused back into the human body to kill pathogens, cancer cells, and mutated cells in blood and tissues, break immune tolerance, activate and enhance the body's immunity, and take into account the dual effects of ** and health care.
Bioimmunity** is the fourth most common oncology technology after surgery, radiotherapy and chemotherapy.
Advantages of Biological Immunity**:
1. Surgery, chemotherapy and radiotherapy combined with tumor cell immunity can accurately remove residual tumor cells, prevent metastasis, and improve the quality of life and time of patients.
2. Quickly recover the immune damage caused by surgery and improve the success rate of surgery;
3. Remove residual cancer cells after surgery to prevent metastasis;
4. Reduce the immunosuppressive effect of chemotherapy drugs;
5. Enhance the tolerance of chemoradiotherapy and reduce the toxicity of chemoradiotherapy;
6. Reduce pain and improve the quality of life of patients.
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Immune cells are a class of pluripotent cells with self-replication ability and multi-directional differentiation potential, which are the seed cells of the human body and are called by the medical community"Universal cells", immune cells and their differentiation products effectively repair the damage of important tissues and organs of the human body and cardiovascular diseases, metabolic diseases, nervous system diseases, blood system diseases, autoimmune diseases and other important diseases provide a new way, with immune cells as the core of regenerative medicine, will become another disease after drugs, surgery, so as to establish the core of a new medical revolution.
Immune cells are an important part of the innate immune system, and are important immunomodulatory cells for the body to resist infection and prevent cell malignant transformation.
At the same time, it can also produce a series of cytokines, and then regulate the body's adaptive immunity, which is a bridge connecting the body's innate immunity and specific immunity. It is not only related to anti-tumor, anti-viral infection and immunomodulation, but also in some cases involved in the occurrence of hypersensitivity reactions and autoimmune diseases, able to recognize target cells, killer mediators.
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Immune cells are designed to improve our resistance, prevent diseases and viruses from invading our immune defense line and reduce illness, and there are several types of immune cells, some of which are specifically aimed at various cancer cell viruses, which can kill cancer cells and control tumor development.
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Hello, immune cells are cells in the body that are directly or indirectly involved in the immune response and are one of the components of the immune system.
The body's immune system includes immune organs, immune cells, and immune molecules, and immune cells are one of the important components of the immune system. Immune cells can clump together to form immune organs such as lymph nodes, or they can function directly in the blood and tissues.
Immune cells include lymphocytes, monocytes, macrophages, granulocytes, mast cells, etc., which can directly engulf pathogens, abnormal cells or molecules in the human body, and can also induce the synthesis of immune molecules, so as to eliminate pathogens and remove abnormal tissues or cells in the human body. Common immune cells include T lymphocytes, B lymphocytes, and K lymphocytes, which, together with the monocytic-phagocytic cell system, form a complex and delicate immune cell system that plays a role in protecting the human body.
A healthy lifestyle such as adequate nutrition, moderate exercise, and regular work and rest can improve the body's immunity and enhance the function of immune cells.
Immune cells are closely related to our daily lives. It can inhibit the invasion of bacteria and viruses, remove cancerous and diseased cells, and has the effect of delaying the aging of the body. With the increase of age, the number and function of T cells that play the function of cellular immunity in specific immunity decreased to varying degrees, while the number of B cells that played the function of humoral immunity did not change overall.
Studies have found that the number of immune cells in the human body at the age of 40 or so will also decline sharply, and various diseases will come uninvited, and the number and activity of immune cells in tumor patients and postoperative tumor patients have undergone certain changes.
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Immune cells are cells that are involved in or associated with an immune response. Including lymphocytes, dendritic cells, monocytes, macrophages, granulocytes, mast cells, etc. Immune cells can be divided into many types, and various immune cells play an important role in the human body.
Immune cells, commonly known as white blood cells, include congenital lymphocytes, various phagocytic cells, etc., and lymphocytes that can recognize antigens and produce specific immune responses.
Differences in the functions of the two types of cells.
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