Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 13 de 13
Filter
Add more filters










Publication year range
1.
Cancer Res ; 84(9): 1410-1425, 2024 May 02.
Article in English | MEDLINE | ID: mdl-38335304

ABSTRACT

Cancer immunotherapy has revolutionized the treatment of lung adenocarcinoma (LUAD); however, a significant proportion of patients do not respond. Recent transcriptomic studies to understand determinants of immunotherapy response have pinpointed stromal-mediated resistance mechanisms. To gain a better understanding of stromal biology at the cellular and molecular level in LUAD, we performed single-cell RNA sequencing of 256,379 cells, including 13,857 mesenchymal cells, from 9 treatment-naïve patients. Among the mesenchymal cell subsets, FAP+PDPN+ cancer-associated fibroblasts (CAF) and ACTA2+MCAM+ pericytes were enriched in tumors and differentiated from lung-resident fibroblasts. Imaging mass cytometry revealed that both subsets were topographically adjacent to the perivascular niche and had close spatial interactions with endothelial cells (EC). Modeling of ligand and receptor interactomes between mesenchymal and ECs identified that NOTCH signaling drives these cell-to-cell interactions in tumors, with pericytes and CAFs as the signal receivers and arterial and PLVAPhigh immature neovascular ECs as the signal senders. Either pharmacologically blocking NOTCH signaling or genetically depleting NOTCH3 levels in mesenchymal cells significantly reduced collagen production and suppressed cell invasion. Bulk RNA sequencing data demonstrated that NOTCH3 expression correlated with poor survival in stroma-rich patients and that a T cell-inflamed gene signature only predicted survival in patients with low NOTCH3. Collectively, this study provides valuable insights into the role of NOTCH3 in regulating tumor stroma biology, warranting further studies to elucidate the clinical implications of targeting NOTCH3 signaling. SIGNIFICANCE: NOTCH3 signaling activates tumor-associated mesenchymal cells, increases collagen production, and augments cell invasion in lung adenocarcinoma, suggesting its critical role in remodeling tumor stroma.


Subject(s)
Adenocarcinoma of Lung , Cancer-Associated Fibroblasts , Lung Neoplasms , Neoplasm Invasiveness , Receptor, Notch3 , Single-Cell Analysis , Stromal Cells , Tumor Microenvironment , Humans , Adenocarcinoma of Lung/pathology , Adenocarcinoma of Lung/metabolism , Adenocarcinoma of Lung/genetics , Cancer-Associated Fibroblasts/metabolism , Cancer-Associated Fibroblasts/pathology , Cell Communication , Lung Neoplasms/pathology , Lung Neoplasms/metabolism , Lung Neoplasms/genetics , Receptor, Notch3/metabolism , Receptor, Notch3/genetics , Signal Transduction , Stromal Cells/metabolism , Stromal Cells/pathology
2.
Front Oncol ; 12: 1016307, 2022.
Article in English | MEDLINE | ID: mdl-36531014

ABSTRACT

Introduction: Colorectal cancer (CRC) is largely refractory to currently available immunotherapies such as blockade of programmed cell death protein-1 (PD-1). Results: In this study, we identified SPATA2 and its protein partner CYLD as novel regulators of CXC-ligand 10 (CXCL10), a T-cell-attractant chemokine, in CRC. By specifically deleting SPATA2 and CYLD in human and mouse CRC cell lines, we showed that these two proteins inhibit STAT1 accumulation and activation and subsequently CXCL10 expression in tumor cells. At steady-state, STAT1 is highly ubiquitinated in a SPATA2/CYLD-dependent manner. Finally, we demonstrated that tumor-specific deletion of SPATA2 and CYLD enhances anti-PD-1 response in vivo. Discussion: Our data suggest that SPATA2 and CYLD represent two potential novel targets for treatment of immune-excluded, PD-1-resistant tumors.

3.
Article in English | MEDLINE | ID: mdl-31681635

ABSTRACT

Candida albicans is a ubiquitous fungal symbiont that resides on diverse human barrier surfaces. Both mammalian and fungal cells can convert arachidonic acid into the lipid mediator, prostaglandin E2 (PGE2), but the physiological significance of fungus-derived PGE2 remains elusive. Here we report that a C. albicans mutant deficient in PGE2 production suffered a loss of competitive fitness in the murine gastrointestinal (GI) tract and that PGE2 supplementation mitigated this fitness defect. Impaired fungal PGE2 production affected neither the in vitro fitness of C. albicans nor hyphal morphogenesis and virulence in either systemic or mucosal infection models. Instead, fungal production of PGE2 was associated with enhanced fungal survival within phagocytes. Consequently, ablation of colonic phagocytes abrogated the intra-GI fitness boost conferred by fungal PGE2. These observations suggest that C. albicans has evolved the capacity to produce PGE2 from arachidonic acid, a host-derived precursor, to promote its own colonization of the host gut. Analogous mechanisms might undergird host-microbe interactions of other symbiont fungi.


Subject(s)
Dinoprostone/metabolism , Fungi/physiology , Host-Pathogen Interactions , Intestinal Mucosa/metabolism , Intestinal Mucosa/microbiology , Symbiosis , Animals , Candida albicans/physiology , Macrophages/metabolism , Mice , Mice, Knockout , Mutation , Phagocytes/metabolism , Virulence/genetics
4.
Wiley Interdiscip Rev Syst Biol Med ; 11(1): e1438, 2019 01.
Article in English | MEDLINE | ID: mdl-30255552

ABSTRACT

Mammalian barrier surfaces are densely populated by symbiont fungi in much the same way the former are colonized by symbiont bacteria. The fungal microbiota, otherwise known as the mycobiota, is increasingly recognized as a critical player in the maintenance of health and homeostasis of the host. Here we discuss the impact of the mycobiota on host physiology and disease, the factors influencing mycobiota composition, and the current technologies used for identifying symbiont fungal species. Understanding the tripartite interactions among the host, mycobiota, and other members of the microbiota, will help to guide the development of novel prevention and therapeutic strategies for a variety of human diseases. This article is categorized under: Physiology > Mammalian Physiology in Health and Disease Laboratory Methods and Technologies > Genetic/Genomic Methods Models of Systems Properties and Processes > Organismal Models.


Subject(s)
Bacteria , Fungi , Mycobiome/physiology , Animals , Bacteria/classification , Bacteria/growth & development , Fungi/classification , Fungi/growth & development , Humans
5.
Science ; 362(6414): 589-595, 2018 11 02.
Article in English | MEDLINE | ID: mdl-30385579

ABSTRACT

Gut microbes live in symbiosis with their hosts, but how mutualistic animal-microbe interactions emerge is not understood. By adaptively evolving the opportunistic fungal pathogen Candida albicans in the mouse gastrointestinal tract, we selected strains that not only had lost their main virulence program but also protected their new hosts against a variety of systemic infections. This protection was independent of adaptive immunity, arose as early as a single day postpriming, was dependent on increased innate cytokine responses, and was thus reminiscent of "trained immunity." Because both the microbe and its new host gain some advantages from their interaction, this experimental system might allow direct study of the evolutionary forces that govern the emergence of mutualism between a mammal and a fungus.


Subject(s)
Adaptive Immunity , Candida albicans/immunology , Candida albicans/pathogenicity , Gastrointestinal Microbiome/immunology , Gastrointestinal Tract/microbiology , Host-Pathogen Interactions , Animals , Biological Evolution , Candida albicans/genetics , Candida albicans/growth & development , Fungal Proteins/genetics , Mice , Mice, Inbred C57BL , Mutation , Symbiosis , Transcription Factors/genetics , Virulence Factors/genetics
6.
Nature ; 549(7673): 528-532, 2017 09 28.
Article in English | MEDLINE | ID: mdl-28902840

ABSTRACT

Maternal immune activation (MIA) contributes to behavioural abnormalities associated with neurodevelopmental disorders in both primate and rodent offspring. In humans, epidemiological studies suggest that exposure of fetuses to maternal inflammation increases the likelihood of developing autism spectrum disorder. In pregnant mice, interleukin-17a (IL-17a) produced by T helper 17 (TH17) cells (CD4+ T helper effector cells involved in multiple inflammatory conditions) induces behavioural and cortical abnormalities in the offspring exposed to MIA. However, it is unclear whether other maternal factors are required to promote MIA-associated phenotypes. Moreover, the underlying mechanisms by which MIA leads to T cell activation with increased IL-17a in the maternal circulation are not well understood. Here we show that MIA phenotypes in offspring require maternal intestinal bacteria that promote TH17 cell differentiation. Pregnant mice that had been colonized with mouse commensal segmented filamentous bacteria or human commensal bacteria that induce intestinal TH17 cells were more likely to produce offspring with MIA-associated abnormalities. We also show that small intestine dendritic cells from pregnant, but not from non-pregnant, females secrete IL-1ß, IL-23 and IL-6 and stimulate T cells to produce IL-17a upon exposure to MIA. Overall, our data suggest that defined gut commensal bacteria with a propensity to induce TH17 cells may increase the risk of neurodevelopmental disorders in the offspring of pregnant mothers undergoing immune system activation owing to infections or autoinflammatory syndromes.


Subject(s)
Gastrointestinal Microbiome/immunology , Prenatal Exposure Delayed Effects/immunology , Prenatal Exposure Delayed Effects/microbiology , Animals , Behavior, Animal , Dendritic Cells/immunology , Female , Inflammation/immunology , Inflammation/microbiology , Interleukin-17/immunology , Interleukin-1beta/immunology , Interleukin-23/immunology , Interleukin-6/immunology , Intestine, Small/cytology , Intestine, Small/immunology , Intestine, Small/microbiology , Male , Mice , Phenotype , Pregnancy , Symbiosis , Th17 Cells/cytology , Th17 Cells/immunology
7.
Cell ; 168(5): 928-943.e11, 2017 02 23.
Article in English | MEDLINE | ID: mdl-28215708

ABSTRACT

Within the human gut reside diverse microbes coexisting with the host in a mutually advantageous relationship. Evidence has revealed the pivotal role of the gut microbiota in shaping the immune system. To date, only a few of these microbes have been shown to modulate specific immune parameters. Herein, we broadly identify the immunomodulatory effects of phylogenetically diverse human gut microbes. We monocolonized mice with each of 53 individual bacterial species and systematically analyzed host immunologic adaptation to colonization. Most microbes exerted several specialized, complementary, and redundant transcriptional and immunomodulatory effects. Surprisingly, these were independent of microbial phylogeny. Microbial diversity in the gut ensures robustness of the microbiota's ability to generate a consistent immunomodulatory impact, serving as a highly important epigenetic system. This study provides a foundation for investigation of gut microbiota-host mutualism, highlighting key players that could identify important therapeutics.


Subject(s)
Bacteria/classification , Gastrointestinal Microbiome , Gastrointestinal Tract/immunology , Gastrointestinal Tract/microbiology , Adaptive Immunity , Animals , Bacterial Physiological Phenomena , Gastrointestinal Tract/cytology , Gastrointestinal Tract/physiology , Germ-Free Life , Humans , Immunity, Innate , Mice , Mice, Inbred C57BL , Symbiosis
8.
Proc Natl Acad Sci U S A ; 113(50): E8141-E8150, 2016 12 13.
Article in English | MEDLINE | ID: mdl-27911839

ABSTRACT

Th17 cells accrue in the intestine in response to particular microbes. In rodents, segmented filamentous bacteria (SFB) induce intestinal Th17 cells, but analogously functioning microbes in humans remain undefined. Here, we identified human symbiont bacterial species, in particular Bifidobacterium adolescentis, that could, alone, induce Th17 cells in the murine intestine. Similar to SFB, B. adolescentis was closely associated with the gut epithelium and engendered cognate Th17 cells without attendant inflammation. However, B. adolescentis elicited a transcriptional program clearly distinct from that of SFB, suggesting an alternative mechanism of promoting Th17 cell accumulation. Inoculation of mice with B. adolescentis exacerbated autoimmune arthritis in the K/BxN mouse model. Several off-the-shelf probiotic preparations that include Bifidobacterium strains also drove intestinal Th17 cell accumulation.


Subject(s)
Bifidobacterium adolescentis/immunology , Gastrointestinal Microbiome/immunology , Intestinal Mucosa/cytology , Intestinal Mucosa/microbiology , Th17 Cells/immunology , Animals , Arthritis, Experimental/etiology , Arthritis, Experimental/immunology , Arthritis, Experimental/microbiology , Bifidobacterium adolescentis/isolation & purification , Female , Gene Expression Profiling , Germ-Free Life/genetics , Germ-Free Life/immunology , Humans , Immunity, Mucosal , Inflammatory Bowel Diseases/immunology , Inflammatory Bowel Diseases/microbiology , Inflammatory Bowel Diseases/pathology , Intestinal Mucosa/immunology , Male , Mice , Mice, Inbred C57BL , Probiotics , Symbiosis/genetics , Symbiosis/immunology , Th17 Cells/cytology
9.
Proc Natl Acad Sci U S A ; 113(49): 14103-14108, 2016 12 06.
Article in English | MEDLINE | ID: mdl-27872297

ABSTRACT

Foxp3+ regulatory T (Treg) cells are crucial for restraining inflammation in a variety of autoimmune diseases, including type 1 diabetes (T1D). However, the transcriptional and functional phenotypes of Treg cells within the pancreatic lesion remain poorly understood. Here we characterized pancreas-infiltrating Treg cells in the NOD mouse model of T1D and uncovered a substantial enrichment of the Treg subpopulation expressing the chemokine receptor CXCR3. Accumulation of CXCR3+ Treg cells within pancreatic islets was dependent on the transcription factor T-BET, and genetic ablation of T-BET increased the onset and penetrance of disease, abrogating the sex bias normally seen in the NOD model. Both male and female mice lacking T-BET+ Treg cells showed a more aggressive insulitic infiltrate, reflected most prominently by elevated production of type 1 cytokines. Our results suggest the possibility of fine therapeutic targeting of Treg cells, in a tissue- and cell-subset-specific fashion, as a more focused immunotherapy for T1D.


Subject(s)
Diabetes Mellitus, Experimental/immunology , Diabetes Mellitus, Type 1/immunology , T-Lymphocytes, Regulatory/immunology , T-Lymphocytes, Regulatory/metabolism , Animals , Female , Male , Mice, Inbred NOD , Pancreas/immunology , Receptors, CXCR3/metabolism , T-Box Domain Proteins/metabolism , Transcriptome
10.
PLoS One ; 11(2): e0148252, 2016.
Article in English | MEDLINE | ID: mdl-26872145

ABSTRACT

Fibroblast growth factor 21 (FGF21) is an important endocrine metabolic regulator expressed in multiple tissues including liver and adipose tissue. Although highest levels of expression are in pancreas, little is known about the function of FGF21 in this tissue. In order to understand the physiology of FGF21 in the pancreas, we analyzed its expression and regulation in both acinar and islet tissues. We found that acinar tissue express 20-fold higher levels than that observed in islets. We also observed that pancreatic FGF21 is nutritionally regulated; a marked reduction in FGF21 expression was noted with fasting while obesity is associated with 3-4 fold higher expression. Acinar and islet cells are targets of FGF21, which when systemically administered, leads to phosphorylation of the downstream target ERK 1/2 in about half of acinar cells and a small subset of islet cells. Chronic, systemic FGF21 infusion down-regulates its own expression in the pancreas. Mice lacking FGF21 develop significant islet hyperplasia and periductal lymphocytic inflammation when fed with a high fat obesogenic diet. Inflammatory infiltrates consist of TCRb+ Thy1+ T lymphocytes with increased levels of Foxp3+ regulatory T cells. Increased levels of inflammatory cells were coupled with elevated expression of cytokines such as TNFα, IFNγ and IL1ß. We conclude that FGF21 acts to limit islet hyperplasia and may also prevent pancreatic inflammation.


Subject(s)
Diet, High-Fat , Fibroblast Growth Factors/genetics , Hyperplasia/genetics , Islets of Langerhans/metabolism , Obesity/genetics , Pancreatitis/genetics , Acinar Cells/metabolism , Acinar Cells/pathology , Animals , Dietary Fats/adverse effects , Fasting , Fibroblast Growth Factors/metabolism , Forkhead Transcription Factors/genetics , Forkhead Transcription Factors/metabolism , Gene Expression Regulation , Hyperplasia/etiology , Hyperplasia/metabolism , Hyperplasia/pathology , Inflammation , Interferon-gamma/genetics , Interferon-gamma/metabolism , Islets of Langerhans/pathology , Male , Mice , Mice, Inbred C57BL , Mitogen-Activated Protein Kinase 1/genetics , Mitogen-Activated Protein Kinase 1/metabolism , Mitogen-Activated Protein Kinase 3/genetics , Mitogen-Activated Protein Kinase 3/metabolism , Obesity/etiology , Obesity/metabolism , Obesity/pathology , Organ Specificity , Pancreatitis/etiology , Pancreatitis/metabolism , Pancreatitis/pathology , Receptors, Antigen, T-Cell, alpha-beta/genetics , Receptors, Antigen, T-Cell, alpha-beta/metabolism , Signal Transduction , Thy-1 Antigens/genetics , Thy-1 Antigens/metabolism , Tumor Necrosis Factor-alpha/genetics , Tumor Necrosis Factor-alpha/metabolism
11.
Cell ; 155(6): 1282-95, 2013 Dec 05.
Article in English | MEDLINE | ID: mdl-24315098

ABSTRACT

Long recognized to be potent suppressors of immune responses, Foxp3(+)CD4(+) regulatory T (Treg) cells are being rediscovered as regulators of nonimmunological processes. We describe a phenotypically and functionally distinct population of Treg cells that rapidly accumulated in the acutely injured skeletal muscle of mice, just as invading myeloid-lineage cells switched from a proinflammatory to a proregenerative state. A Treg population of similar phenotype accumulated in muscles of genetically dystrophic mice. Punctual depletion of Treg cells during the repair process prolonged the proinflammatory infiltrate and impaired muscle repair, while treatments that increased or decreased Treg activities diminished or enhanced (respectively) muscle damage in a dystrophy model. Muscle Treg cells expressed the growth factor Amphiregulin, which acted directly on muscle satellite cells in vitro and improved muscle repair in vivo. Thus, Treg cells and their products may provide new therapeutic opportunities for wound repair and muscular dystrophies.


Subject(s)
Muscle, Skeletal/cytology , Muscle, Skeletal/physiology , Regeneration , T-Lymphocytes, Regulatory/physiology , Amphiregulin , Animals , EGF Family of Proteins , Glycoproteins/metabolism , Intercellular Signaling Peptides and Proteins/metabolism , Lymphoid Tissue/cytology , Mice , Mice, Inbred C57BL , Muscle, Skeletal/immunology , Muscle, Skeletal/injuries , Muscular Dystrophies/pathology , Muscular Dystrophies/physiopathology , Muscular Dystrophies/therapy , Receptors, Antigen, T-Cell/metabolism , T-Lymphocytes, Regulatory/cytology , T-Lymphocytes, Regulatory/immunology , Transcriptome
12.
J Clin Invest ; 120(6): 2030-9, 2010 Jun.
Article in English | MEDLINE | ID: mdl-20501944

ABSTRACT

Although metastasis is the leading cause of cancer-related death, it is not clear why some patients with localized cancer develop metastatic disease after complete resection of their primary tumor. Such relapses have been attributed to tumor cells that disseminate early and remain dormant for prolonged periods of time; however, little is known about the control of these disseminated tumor cells. Here, we have used a spontaneous mouse model of melanoma to investigate tumor cell dissemination and immune control of metastatic outgrowth. Tumor cells were found to disseminate throughout the body early in development of the primary tumor, even before it became clinically detectable. The disseminated tumor cells remained dormant for varying periods of time depending on the tissue, resulting in staggered metastatic outgrowth. Dormancy in the lung was associated with reduced proliferation of the disseminated tumor cells relative to the primary tumor. This was mediated, at least in part, by cytostatic CD8+ T cells, since depletion of these cells resulted in faster outgrowth of visceral metastases. Our findings predict that immune responses favoring dormancy of disseminated tumor cells, which we propose to be the seed of subsequent macroscopic metastases, are essential for prolonging the survival of early stage cancer patients and suggest that therapeutic strategies designed to reinforce such immune responses may produce marked benefits in these patients.


Subject(s)
Cellular Structures/immunology , Cellular Structures/pathology , Melanoma/immunology , Monitoring, Immunologic , T-Lymphocytes/immunology , Animals , Humans , Mice , Mice, Transgenic , T-Lymphocytes/pathology
13.
Vaccine ; 28(23): 3977-89, 2010 May 21.
Article in English | MEDLINE | ID: mdl-20347630

ABSTRACT

Toxoplasma gondii is an intracellular parasite that causes severe neurologic and ocular disease in immune-compromised and congenitally infected individuals. There is no vaccine protective against human toxoplasmosis. Herein, immunization of L(d) mice with HF10 (HPGSVNEFDF) with palmitic acid moieties or a monophosphoryl lipid A derivative elicited potent IFN-gamma production from L(d)-restricted CD8(+) T cells in vitro and protected mice. CD8(+) T cell peptide epitopes from T. gondii dense granule proteins GRA 3, 6, 7, and Sag 1, immunogenic in humans for HLA-A02(+), HLA-A03(+), and HLA-B07(+) cells were identified. Since peptide repertoire presented by MHC class I molecules to CD8(+) T cells is shaped by endoplasmic reticulum-associated aminopeptidase (ERAAP), polymorphisms in the human ERAAP gene ERAP1 were studied and associate with susceptibility to human congenital toxoplasmosis (p<0.05). These results have important implications for vaccine development.


Subject(s)
Adjuvants, Immunologic/pharmacology , Antigens, Protozoan/immunology , Epitopes, T-Lymphocyte/immunology , Protozoan Proteins/immunology , Protozoan Vaccines/immunology , Toxoplasmosis/genetics , Aminopeptidases/genetics , Animals , CD8-Positive T-Lymphocytes/immunology , Female , Genetic Predisposition to Disease , HLA-A Antigens/immunology , HLA-B Antigens/immunology , Humans , Interferon-gamma/immunology , Leukocytes, Mononuclear/immunology , Lipopeptides/immunology , Mice , Mice, Inbred BALB C , Mice, Transgenic , Minor Histocompatibility Antigens , Models, Molecular , Polymorphism, Genetic , Toxoplasma/immunology , Toxoplasmosis/immunology , Toxoplasmosis, Congenital/genetics , Toxoplasmosis, Congenital/immunology
SELECTION OF CITATIONS
SEARCH DETAIL
...