• 제목/요약/키워드: Tumor-associated macrophage(TAM)

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암미세환경에서 종양관련대식세포의 역할 (Role of Tumor-associated Macrophage in Tumor Microenvironment)

  • 민도식
    • 생명과학회지
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    • 제28권8호
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    • pp.992-998
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    • 2018
  • 암세포는 종양의 성장을 지지하는 다양한 성분으로 구성되어 있는 환경에서 자란다. 암미세환경에 존재하는 주요 세포등은 섬유아세포, 내피세포, 면역세포들이며 이들세포들은 암세포들과 서로 소통을 하고 있다 종양조직에 유입된 면역세포중에서 대식세포가 종양미세환경의 주요성분으로서 다양한 면역현상들을 조절한다. 면역세포유입에 의한 암촉진과 항암효과 간의 복잡한 균형은 종양의 성장과 진행에 필요한 만성염증 환경을 생성시킬 수 있다. 대식세포는 M1과 M2 극성화로 규정된 미세환경 신호에 반응하여 기능적으로 다른 프로그램을 작동시킬 수 있다. 종양관련대식세포는 다양한 사이토카인, 케모카인, 단백질분해효소들을 분비함으로써 암 신생혈관형성, 증식, 전이 및 면역억제를 촉진시킨다. 최근에, 종양관련대식세포는 암줄기세포와 상호작용하여 종양의 진행, 전이 및 항암제 내성을 유도하는 것으로 알려져 있다. 종양관련대식세포는 암미세환경을 유지하기위해 면역억제 기능을 획득하며, 종양의 이질성과 가소성의 특성을 갖고 있어 암관련인자 및 감염등의 노출에 의해 서로 다른 극성형질로 리프로그래밍된다. 종양관련대식세포는 기질인자의 자극에 의해 암특이적인 케모카인들을 생성하기 때문에 케모카인은 질병의 활성을 반영하는 바이오마커로 작용할 수 있다. 종양조직에 종양관련대식세포가 많이 유입될수록 환자의 예후가 좋지 않으며 항암치료에 대한 저항성이 생긴다. 따라서 종양에서 대식세포를 표적화하는 항암치료는 유망한 치료전략이 될 수 있다.

Molecular imaging of polarized macrophages in tumors

  • Ran Ji Yoo;Yun-Sang Lee
    • 대한방사성의약품학회지
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    • 제7권1호
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    • pp.41-49
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    • 2021
  • Diversity and flexibility are two typical hallmarks of macrophages. Two types of macrophages, M1(classically activated macrophages) and M2(alternatively activated macrophages) exist at both ends of the commonly known macrophage polarization. M1 macrophages have inflammatory properties and are primarily responsible for defending against invading bacteria in our body. On the other hand, M2 macrophages are involved in anti-inflammatory responses and tissue remodeling. Polarized migration of macrophages is of increasing interest in regulating the initiation, generation, and resting phases of inflammatory diseases. In this review, it intend to discuss the properties and functions of tumor-associated macrophages based on polarized macrophages that affect inflammatory diseases. In addition, the purpose of this study is to investigate a molecular imaging approach that targets macrophages that affect tumor growth by controlling the polarization of macrophages that affect tumor diagnosis and treatment.

Regulation of tumor-associated macrophage (TAM) differentiation by NDRG2 expression in breast cancer cells

  • Lee, Soyeon;Lee, Aram;Lim, Jihyun;Lim, Jong-Seok
    • BMB Reports
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    • 제55권2호
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    • pp.81-86
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    • 2022
  • Macrophages are a major cellular component of innate immunity and are mainly known to have phagocytic activity. In the tumor microenvironment (TME), they can be differentiated into tumor-associated macrophages (TAMs). As the most abundant immune cells in the TME, TAMs promote tumor progression by enhancing angiogenesis, suppressing T cells and increasing immunosuppressive cytokine production. N-myc downstream-regulated gene 2 (NDRG2) is a tumor suppressor gene, whose expression is down-regulated in various cancers. However, the effect of NDRG2 on the differentiation of macrophages into TAMs in breast cancer remains elusive. In this study, we investigated the effect of NDRG2 expression in breast cancer cells on the differentiation of macrophages into TAMs. Compared to tumor cell-conditioned medium (TCCM) from 4T1-mock cells, TCCM from NDRG2-over-expressing 4T1 mouse breast cancer cells did not significantly change the morphology of RAW 264.7 cells. However, TCCM from 4T1-NDRG2 cells reduced the mRNA levels of TAM-related genes, including MR1, IL-10, ARG1 and iNOS, in RAW 264.7 cells. In addition, TCCM from 4T1-NDRG2 cells reduced the expression of TAM-related surface markers, such as CD206, in peritoneal macrophages (PEM). The mRNA expression of TAM-related genes, including IL-10, YM1, FIZZ1, MR1, ARG1 and iNOS, was also downregulated by TCCM from 4T1-NDRG2 cells. Remarkably, TCCM from 4T1-NDRG2 cells reduced the expression of PD-L1 and Fra-1 as well as the production of GM-CSF, IL-10 and ROS, leading to the attenuation of T cell-inhibitory activity of PEM. These data showed that compared with TCCM from 4T1-mock cells, TCCM from 4T1-NDRG2 cells suppressed the TAM differentiation and activation. Collectively, these results suggest that NDRG2 expression in breast cancer may reduce the differentiation of macrophages into TAMs in the TME.

반하 추출물의 종양연관대식세포 조절을 통한 암세포 이동능 저해 효과 (The Tuber Extract of Pinellia ternata (Thunb.) Brei Suppresses Cancer Cell Migration by Regulating Tumor-associated Macrophages)

  • 박신형
    • 동의생리병리학회지
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    • 제36권1호
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    • pp.1-6
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    • 2022
  • The tuber of Pinellia ternata (Thunb.) Brei (TPT) used in traditional Oriental medicine for the treatment of cough, sputum, vomiting, and insomnia, possesses antioxidant, antibacterial, and anti-inflammatory effects. Although recent studies have reported the anticancer effects of TPT in several cancer cells, it is still unclear whether TPT regulates tumor-associated macrophage (TAM) characterized by the immunosuppressive M2 macrophage phenotype. Our results showed that the ethanol extract of TPT (ETPT) suppressed the migration of RAW264.7 mouse macrophage cells and THP-1 human monocytes differentiated into macrophages towards the conditioned media (CM) collected from lung cancer cells, suggesting that ETPT would attenuate the recruitment of macrophages into tumors. In addition, ETPT suppressed the interleukin (IL)-4 or IL-6-induced M2 macrophage polarization in RAW264.7 cells. ETPT treatment not only downregulated the mRNA expression of M2 macrophage markers including arginase-1, mannose receptor C type 1 (MRC-1), and IL-10, but also inhibited the phosphorylation of signal transducer and activator of transcription 3 (STAT3) and STAT6, general regulators of M2 macrophage polarization. Finally, the transwell assay results showed that the CM from M2-polarized RAW264.7 cells increased the migration of mouse lewis lung carcinoma (LLC) cells, while those from RAW264.7 cells co-treated with ETPT and IL-6 significantly reduced the migration of LLC cells. Taken together, our observations clearly demonstrate that ETPT suppressed the cancer cell migration by regulating macrophage recruitment and M2 macrophage polarization.

Quantitative Changes in Tumor-Associated M2 Macrophages Characterize Cholangiocarcinoma and their Association with Metastasis

  • Thanee, Malinee;Loilome, Watcharin;Techasen, Anchalee;Namwat, Nisana;Boonmars, Thidarut;Pairojkul, Chawalit;Yongvanit, Puangrat
    • Asian Pacific Journal of Cancer Prevention
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    • 제16권7호
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    • pp.3043-3050
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    • 2015
  • The tumor microenvironment (TME) includes numerous non-neoplastic cells such as leukocytes and fibroblasts that surround the neoplasm and influence its growth. Tumor-associated macrophages (TAMs) and cancerassociated fibroblasts (CAFs) are documented as key players in facilitating cancer appearance and progression. Alteration of the macrophage (CD68, CD163) and fibroblast (${\alpha}-SMA$, FSP-1) cells in Opisthorchis viverrini (Ov) -induced cholangiocarcinoma (CCA) was here assessed using liver tissues from an established hamster model and from 43 human cases using immunohistochemistry. We further investigated whether M2-activated TAMs influence CCA cell migration ability by wound healing assay and Western blot analysis. Macrophages and fibroblasts change their phenotypes to M2-TAMs (CD68+, CD163+) and CAFs (${\alpha}-SMA+$, FSP-1+), respectively in the early stages of carcinogenesis. Interestingly, a high density of the M2-TAMs CCA in patients is significantly associated with the presence of extrahepatic metastases (p=0.021). Similarly, CD163+ CCA cells are correlated with metastases (p=0.002), and they may be representative of an epithelial-to-mesenchymal transition (EMT) with increased metastatic activity. We further showed that M2-TAM conditioned medium can induce CCA cell migration as well as increase N-cadherin expression (mesenchymal marker). The present work revealed that significant TME changes occur at an early stage of Ov-induced carcinogenesis and that M2-TAMs are key factors contributing to CCA metastasis, possibly via EMT processes.