Carcinoma de pulmón fisiopatología oñe'ẽ hína umi proceso ha mecanismo fisiológico normal ñemoambue rehe, oikóva cáncer de pulmón reñói ha okakuaa aja.
Cáncer de pulmón ningo peteĩ mba'asy hasýva, heñóiva okakuaa ha oñemboja'óvo umi célula oĩva pulmón-pe.
Ko'ã célula ikatu omoheñói tumor ha isarambi ambue parte del cuerpo-pe, ombohapéva opáichagua síntoma ha complicación.
Cáncer de pulmón fisiopatología-pe oike heta factor, oikehápe mutación genética, factor ambiental ha jeikove rehegua jeiporavo.
Cáncer de pulmón ikatu oñemohenda mokõi hendaichagua: cáncer de pulmón de célula michĩva (CPPCM) ha cáncer de pulmón de célula ndaha'éiva michĩva (CPPCN).
Ko'ãichagua cáncer de pulmón patofisiología ikatu iñambue, oguereko rupi mutación genética iñambuéva ha ombohovái ambue hendáicha ñepohãnorã.
Fisiopatología cáncer de pulmón rehegua avei ojeroike hína jokupyty oĩva célula cancerígena ha tejido circundante apytépe, oikehápe sistema inmunológico.
Umi célula cancerígena ikatu okañy sistema inmunológico-gui, ohejávo okakuaa ha isarambi ojejoko'ỹre.
Avei, pe microambiente tumoral ikatu omongakuaave tumor ñemongakuaa ha metástasis ome'ẽnguévo peteĩ entorno oipytyvõkuaáva célula cancerígena-pe.
Fisiopatología cáncer de pulmón rehegua ningo peteĩ proceso hasýva ha iñambuéva, ha jehaperekahára omba'apo katui oikumby porãve hag̃ua umi mecanismo oĩva ipype omongu'e hag̃ua peteĩ tratamiento oikoporãve ha omomorãve hag̃ua hasýva ñemongu'e.
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Nurwidya F, Syahruddin E, Yunus F: Pain management in lung cancer. Adv Respir Med. 2016, 84 (6): 331-336.
Khan KA, Kennedy MP, Moore E, Crush L, Prendeville S, Maher MM, Burke L, Henry MT: Radiological characteristics, histological features and clinical outcomes of lung cancer patients with coexistent idiopathic pulmonary fibrosis. Lung. 2015, 193 (1): 71-7.
Paramanantham A, Asfiya R, Das S, McCully G, Srivastava A: Extracellular Vesicle (EVs) Associated Non-Coding RNAs in Lung Cancer and Therapeutics. Int J Mol Sci. 2022, 23 (21): .
Lee D, Kim Y, Chung C: Scientific Validation and Clinical Application of Lung Cancer Organoids. Cells. 2021, 10 (11): .
Mucchietto V, Crespi A, Fasoli F, Clementi F, Gotti C: Neuronal Acetylcholine Nicotinic Receptors as New Targets for Lung Cancer Treatment. Curr Pharm Des. 2016, 22 (14): 2160-9.
['Ñemboyke: pohã']
["Ko página web niko ñehekombo'e ha marandu rehegua añónte, ndaha'éi ñeporandu térã ñepytyvõ pohãnohárape."]
["Ko marandu oñeme'ẽva ndojeporúi va'erã ojeikuaa térã oñepohano hag̃ua peteĩ problema de salud térã mba'asy, ha umi tapicha ohekáva consejo médico ha'eñoháme oñe'ẽva'erã peteĩ pohanohára ikatupyrýva ndive."]
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["5. peteî declaración nde rejapóva, remoîva nde réra ha remoîva'erâha nde jurúpe, umi mba'e oîva ñemomarandúpe oîmbaha añetehápe ha rerekoha pokatu remoañete haguâ umi derecho oje'éva nde rehe ojepoko vaiha;"]
["Ndoikéi ramo opaite ko'ã mba'e ikatu ombohape nde denuncia ñemboguata."]
['Ñemboheraguapy']
["Remba'eporanduséramo térã ereko hag̃ua ne remiandu ehai oréve."]
What is pathophysiology of lung cancer?
The pathophysiology of lung cancer refers to the changes in the normal physiological processes and mechanisms that occur in the development and progression of lung cancer.
Lung cancer is a complex disease that arises from the uncontrolled growth and division of abnormal cells in the lungs.
These cells can form tumors and spread to other parts of the body, leading to various symptoms and complications.
The pathophysiology of lung cancer involves several factors, including genetic mutations, environmental factors, and lifestyle choices.
Genetic mutations can occur in the DNA of lung cells, leading to uncontrolled cell growth and division.
These mutations can be inherited or acquired, and they can be caused by exposure to carcinogens, such as tobacco smoke, radon, asbestos, and air pollution.
Lung cancer can be classified into two main types: small cell lung cancer (SCLC) and non-small cell lung cancer (NSCLC). NSCLC is further divided into three subtypes: adenocarcinoma, squamous cell carcinoma, and large cell carcinoma.
The pathophysiology of these types of lung cancer can differ, as they have different genetic mutations and respond differently to treatment.
The pathophysiology of lung cancer also involves the interaction between cancer cells and the surrounding tissue, including the immune system.
Cancer cells can evade the immune system, allowing them to grow and spread unchecked.
Additionally, the tumor microenvironment can promote tumor growth and metastasis by providing a supportive environment for cancer cells.
The pathophysiology of lung cancer is a complex and dynamic process, and researchers are continuously working to better understand the underlying mechanisms to develop more effective treatments and improve patient outcomes.
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