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We are analyzing https://link.springer.com/article/10.1186/s12964-023-01178-1.

Title:
The impact of lipid metabolism on breast cancer: a review about its role in tumorigenesis and immune escape | Cell Communication and Signaling
Description:
Background Breast cancer (BC) is the second most frequent type of cancer in the world and most common among women, configuring a major challenge to global health. BC is a complex and heterogeneous disease that can be subdivided into distinct tumor types based on the expression of molecular markers predicting patient outcomes and response to therapy. A growing number of studies have tried to expand the known markers by investigating the association of altered lipid metabolism with BC immune escape, progression, and metastasis. In this review, we describe the metabolic peculiarities of each BC subtype, understanding how this influences its aggressiveness and identifying whether these intrinsic vulnerabilities of each subtype can play a role in therapeutic management and may affect immune system cells in the tumor microenvironment. Conclusion The evidence suggests so far that when changes occur in lipid pathways, it can affect the availability of structural lipids for membrane synthesis, lipid synthesis, and degradation that contribute to energy homeostasis and cell signaling functions. These findings will guide the next steps on the path to understanding the mechanisms underlying how lipids alterations are related to disparities in chemotherapeutic response and immune escape in BC. Video Abstract
Website Age:
28 years and 1 months (reg. 1997-05-29).

Matching Content Categories {📚}

  • Health & Fitness
  • Science
  • Education

Content Management System {📝}

What CMS is link.springer.com built with?

Custom-built

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Traffic Estimate {📈}

What is the average monthly size of link.springer.com audience?

🌠 Phenomenal Traffic: 5M - 10M visitors per month


Based on our best estimate, this website will receive around 5,000,019 visitors per month in the current month.
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Keywords {🔍}

cancer, pubmed, article, cells, google, scholar, breast, lipid, cas, cell, tumor, immune, cholesterol, metabolism, expression, central, fas, patients, role, metabolic, lipids, acid, pathway, synthesis, signaling, subtypes, fatty, res, proliferation, growth, survival, tnbc, progression, published, obesity, protein, wang, subtype, receptor, luminal, evasion, disease, microenvironment, energy, compared, study, levels, high, escape, response,

Topics {✒️}

int/news-room/fact-sheets/detail/breast-cancer nuclear factor kappa-light-chain-enhancer x-inactive-specific transcript targeting pi3k/akt/mtor signaling pi3k/pten/akt/mtor pathway [84] pi3k/akt/mtor pathway inhibitors thyroid hormone-responsive protein high-cholesterol-based diet increases mda-mb-231 triple-negative bc akt/mtor pathway stimulated triple-negative breast cancer d'agostino rb jr triple-negative breast carcinomas long-chain fatty acids circular rna circwwc3 rorα/γ suppresses atherosclerosis article download pdf nayara gusmão tessarolo 27-hydroxycholesterol promotes cell-autonomous adipose tissue immunity akt-mtor pathway activation tumor-intrinsic signaling pathways fatty-acid synthase inhibition high-grade ductal histology label-free mass spectrometry pd-1/pd-l1 expression pd-1/pd-l1 expression [87] tumor-infiltrated dendritic cells anti-tumor immune response kaplan–meier survival curves metformin-induced killing pd-1/pd-l1 regulation 3-hydroxy-3-methyl-glutaryl-coenzyme gov/ct2/show/nct02595372 gov/ct2/show/nct03358017 gov/ct2/show/nct03872388 pi3k/akt pathway enzyme atp-citrate lyase significant anti-tumor response pi3k/akt/mtor tumor-infiltrating dendritic cells de novo synthesis long-term survival outcomes phosphatidil-inositol-3-kinase pr pi3k kinase promotes acute myeloid leukemia enzyme acetyl-coa carboxylase myeloid-derived suppressor cells triple-negative tumors compared 3-hydroxy-3-methylglutaryl-coa reductase

Questions {❓}

  • What does the clinical evidence tell us?
  • Why primary obesity is a disease?

Schema {🗺️}

WebPage:
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         headline:The impact of lipid metabolism on breast cancer: a review about its role in tumorigenesis and immune escape
         description:Breast cancer (BC) is the second most frequent type of cancer in the world and most common among women, configuring a major challenge to global health. BC is a complex and heterogeneous disease that can be subdivided into distinct tumor types based on the expression of molecular markers predicting patient outcomes and response to therapy. A growing number of studies have tried to expand the known markers by investigating the association of altered lipid metabolism with BC immune escape, progression, and metastasis. In this review, we describe the metabolic peculiarities of each BC subtype, understanding how this influences its aggressiveness and identifying whether these intrinsic vulnerabilities of each subtype can play a role in therapeutic management and may affect immune system cells in the tumor microenvironment. The evidence suggests so far that when changes occur in lipid pathways, it can affect the availability of structural lipids for membrane synthesis, lipid synthesis, and degradation that contribute to energy homeostasis and cell signaling functions. These findings will guide the next steps on the path to understanding the mechanisms underlying how lipids alterations are related to disparities in chemotherapeutic response and immune escape in BC.
         datePublished:2023-06-27T00:00:00Z
         dateModified:2023-06-27T00:00:00Z
         pageStart:1
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         license:http://creativecommons.org/publicdomain/zero/1.0/
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            Lipid metabolism
            Immune escape
            Tumorigenesis
            Breast cancer
            Cell Biology
            Protein-Ligand Interactions
            Receptors
            Cytokines and Growth Factors
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      headline:The impact of lipid metabolism on breast cancer: a review about its role in tumorigenesis and immune escape
      description:Breast cancer (BC) is the second most frequent type of cancer in the world and most common among women, configuring a major challenge to global health. BC is a complex and heterogeneous disease that can be subdivided into distinct tumor types based on the expression of molecular markers predicting patient outcomes and response to therapy. A growing number of studies have tried to expand the known markers by investigating the association of altered lipid metabolism with BC immune escape, progression, and metastasis. In this review, we describe the metabolic peculiarities of each BC subtype, understanding how this influences its aggressiveness and identifying whether these intrinsic vulnerabilities of each subtype can play a role in therapeutic management and may affect immune system cells in the tumor microenvironment. The evidence suggests so far that when changes occur in lipid pathways, it can affect the availability of structural lipids for membrane synthesis, lipid synthesis, and degradation that contribute to energy homeostasis and cell signaling functions. These findings will guide the next steps on the path to understanding the mechanisms underlying how lipids alterations are related to disparities in chemotherapeutic response and immune escape in BC.
      datePublished:2023-06-27T00:00:00Z
      dateModified:2023-06-27T00:00:00Z
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         Lipid metabolism
         Immune escape
         Tumorigenesis
         Breast cancer
         Cell Biology
         Protein-Ligand Interactions
         Receptors
         Cytokines and Growth Factors
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            name:Diandra Zipinotti dos Santos
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                  name:Federal University of EspĂ­rito Santo
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                     type:PostalAddress
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            name:Leticia B. A. Rangel
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                  name:Federal University of Espirito Santo
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               name:Viral Vector Laboratory, Center for Translational Investigation in Oncology, Cancer Institute of SĂŁo Paulo/LIM24, University of SĂŁo Paulo School of Medicine, SĂŁo Paulo, (SĂŁo Paulo), Brazil
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               type:PostalAddress
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      name:Leticia B. A. Rangel
      affiliation:
            name:Federal University of EspĂ­rito Santo
            address:
               name:Biotechnology Program/RENORBIO, Health Sciences Center, Federal University of EspĂ­rito Santo, Vitoria (EspĂ­rito Santo), Brazil
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            name:Federal University of Espirito Santo
            address:
               name:Department of Pharmaceutical Sciences, Federal University of Espirito Santo, MaruĂ­peEspĂ­rito Santo, Brazil
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      name:Department of Pharmaceutical Sciences, Federal University of Espirito Santo, MaruĂ­peEspĂ­rito Santo, Brazil
      name:Department of Pharmaceutical Sciences, Federal University of Espirito Santo, MaruĂ­peEspĂ­rito Santo, Brazil
      name:Department of Pharmaceutical Sciences, Federal University of Espirito Santo, MaruĂ­peEspĂ­rito Santo, Brazil
      name:Department of Pharmaceutical Sciences, Federal University of Espirito Santo, MaruĂ­peEspĂ­rito Santo, Brazil
      name:Viral Vector Laboratory, Center for Translational Investigation in Oncology, Cancer Institute of SĂŁo Paulo/LIM24, University of SĂŁo Paulo School of Medicine, SĂŁo Paulo, (SĂŁo Paulo), Brazil
      name:Moffitt Cancer Center, Tampa, US
      name:Department of Morphology, Health Sciences Center, Federal University of Espirito Santo, Vitoria, Brazil
      name:Biotechnology Program/RENORBIO, Health Sciences Center, Federal University of EspĂ­rito Santo, Vitoria (EspĂ­rito Santo), Brazil
      name:Department of Pharmaceutical Sciences, Federal University of Espirito Santo, MaruĂ­peEspĂ­rito Santo, Brazil
      name:Biochemistry Program, Health Sciences Center, Federal University of Espirito Santo, Vitoria, Brazil

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