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91.
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Simon Milette Pierre O Fiset Logan A Walsh Jonathan D Spicer Daniela F Quail 《The Journal of pathology》2019,247(5):589-605
Lung malignancies are the leading cause of cancer-related mortality. By virtue of its unique physiological function, the lung microenvironment is highly dynamic and constantly subjected to mechanical, chemical and pathogenic stimuli. Thus, the airways rely on highly organized innate defense mechanisms to rapidly protect against pathogens and maintain pulmonary homeostasis. However, in the context of lung malignancy, these defenses often provide collateral inflammatory insults that can foster tumor progression. This review summarizes the interactions between cancer cells, recruited immune cells and tissue-resident cell subpopulations, such as airway epithelial cells and alveolar macrophages, during homeostasis and disease. Furthermore, we examine the role of the lung immune landscape in response to current therapeutic interventions for cancer. Given the prevalence of lung malignancies, we propose that consideration of lung physiology as a whole is necessary to understand and treat these lethal diseases. Copyright © 2019 Pathological Society of Great Britain and Ireland. Published by John Wiley & Sons, Ltd. 相似文献
93.
Maren Voglstaetter Andreas R Thomsen Jerome Nouvel Arend Koch Paul Jank Elena Grueso Navarro Tanja Gainey-Schleicher Richa Khanduri Andrea Groß Florian Rossner Carina Blaue Clemens M Franz Marina Veil Gerhard Puetz Andreas Hippe Jochen Dindorf Jubin Kashef Wilko Thiele Bernhard Homey Celine Greco Claude Boucheix Andreas Baur Thalia Erbes Cornelius F Waller Marie Follo Ghamartaj Hossein Christine Sers Jonathan Sleeman Irina Nazarenko 《The Journal of pathology》2019,248(4):421-437
Tspan8 exhibits a functional role in many cancer types including pancreatic, colorectal, oesophagus carcinoma, and melanoma. We present a first study on the expression and function of Tspan8 in breast cancer. Tspan8 protein was present in the majority of human primary breast cancer lesions and metastases in the brain, bone, lung, and liver. In a syngeneic rat breast cancer model, Tspan8+ tumours formed multiple liver and spleen metastases, while Tspan8− tumours exhibited a significantly diminished ability to metastasise, indicating a role of Tspan8 in metastases. Addressing the underlying molecular mechanisms, we discovered that Tspan8 can mediate up-regulation of E-cadherin and down-regulation of Twist, p120-catenin, and β-catenin target genes accompanied by the change of cell phenotype, resembling the mesenchymal–epithelial transition. Furthermore, Tspan8+ cells exhibited enhanced cell–cell adhesion, diminished motility, and decreased sensitivity to irradiation. As a regulator of the content and function of extracellular vesicles (EVs), Tspan8 mediated a several-fold increase in EV number in cell culture and the circulation of tumour-bearing animals. We observed increased protein levels of E-cadherin and p120-catenin in these EVs; furthermore, Tspan8 and p120-catenin were co-immunoprecipitated, indicating that they may interact with each other. Altogether, our findings show the presence of Tspan8 in breast cancer primary lesion and metastases and indicate its role as a regulator of cell behaviour and EV release in breast cancer. © 2019 The Authors. The Journal of Pathology published by John Wiley & Sons Ltd on behalf of Pathological Society of Great Britain and Ireland. 相似文献
94.
Neil Romberg Carole Le Coz Salomé Glauzy Jean-Nicolas Schickel Melissa Trofa Brian E. Nolan Michele Paessler Mina L. Xu Michele P. Lambert Saquib A. Lakhani Mustafa K. Khokha Soma Jyonouchi Jennifer Heimall Patricia Takach Paul J. Maglione Jason Catanzaro F. Ida Hsu Kathleen E. Sullivan Eric Meffre 《The Journal of allergy and clinical immunology》2019,143(1):258-265
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Daniela P. Lage Amanda S. Machado Fernanda F. Ramos Patrícia C. Silveira Daniel S. Dias Patrícia A.F. Ribeiro Grasiele S.V. Tavares Lourena E. Costa Thaís T.O. Santos Bethina T. Steiner Mírian I. Fagundes Miguel A. Chávez-Fumagalli Sandra Lyon Ricardo L.F. Moreira Mariana C. Duarte Daniel Menezes-Souza Rachel B. Caligiorne Ricardo A. Machado-de-Ávila Eduardo A.F. Coelho 《Immunobiology》2019,224(4):477-484
The measures for leishmaniasis control include the precise diagnosis of disease. However, although several recombinant antigens have been tested with this biotechnological purpose, no effective product exists, which could detects patients with the active disease, as well as differentiates them from cured and treated patients. In this study, a conserved Leishmania hypothetical protein, which was identified in Leishmania infantum parasites, but evaluated to presents high homology in the amino acid sequences between distinct parasite species, was evaluated for the diagnosis of tegumentary and visceral leishmaniasis. In addition, PBMCs collected from treated and untreated mucosal leishmaniasis (ML) and visceral leishmaniasis (VL) patients, as well as in healthy subjects living in endemic region of disease, were in vitro stimulated, when IFN-γ, IL-4 and IL-10 levels were evaluated in the cell supernatant. Regarding the serological analyses, ELISA experiments using the recombinant protein (rLiHyL) and a human serological panel revealed high sensitivity and specificity values to detect both diseases, while control antigens showed worst results. Regarding the cellular response, results showed that rLiHyL-stimulated cells produced higher IFN-γ and lower IL-4 and IL-10 levels in the supernatants. Also, the anti-protein antibody production was evaluated in these patients, and data showed higher IgG2 and lower IgG1 levels found in the treated patients and healthy controls, demonstrating the stimulation of a Th1-type response induced by the rLiHyL protein. In conclusion, this hypothetical protein can be considered as antigenic in TL and VL, as well as a vaccine candidate to be tested in future studies to protect against disease. 相似文献
98.
Kevin S. Cashman Scott A. Jenks Matthew C. Woodruff Deepak Tomar Christopher M. Tipton Christopher D. Scharer F. Eun‐Hyung Lee Jeremy M. Boss Iaki Sanz 《Immunological reviews》2019,292(1):76-89
The maintenance of immunological tolerance of B lymphocytes is a complex and critical process that must be implemented as to avoid the detrimental development of autoreactivity and possible autoimmunity. Murine models have been invaluable to elucidate many of the key components in B‐cell tolerance; however, translation to human homeostatic and pathogenic immune states can be difficult to assess. Functional autoreactive, flow cytometric, and single‐cell cloning assays have proven to be critical in deciphering breaks in B‐cell tolerance within autoimmunity; however, newer approaches to assess human B‐cell tolerance may prove to be vital in the further exploration of underlying tolerance defects. In this review, we supply a comprehensive overview of human immune tolerance checkpoints with associated mechanisms of enforcement, and highlight current and future methodologies which are likely to benefit future studies into the mechanisms that become defective in human autoimmune conditions. 相似文献
99.