Michael T. Waring
Harvard University
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Publication
Featured researches published by Michael T. Waring.
Nature | 2006
Viktor Janzen; Randolf Forkert; Heather E. Fleming; Yoriko Saito; Michael T. Waring; David Dombkowski; Tao Cheng; Ronald A. DePinho; Norman E. Sharpless; David T. Scadden
Stem-cell ageing is thought to contribute to altered tissue maintenance and repair. Older humans experience increased bone marrow failure and poorer haematologic tolerance of cytotoxic injury. Haematopoietic stem cells (HSCs) in older mice have decreased per-cell repopulating activity, self-renewal and homing abilities, myeloid skewing of differentiation, and increased apoptosis with stress. Here we report that the cyclin-dependent kinase inhibitor p16INK4a, the level of which was previously noted to increase in other cell types with age, accumulates and modulates specific age-associated HSC functions. Notably, in the absence of p16INK4a, HSC repopulating defects and apoptosis were mitigated, improving the stress tolerance of cells and the survival of animals in successive transplants, a stem-cell-autonomous tissue regeneration model. Inhibition of p16INK4a may ameliorate the physiological impact of ageing on stem cells and thereby improve injury repair in aged tissue.
Nature | 2012
Partha Dutta; Gabriel Courties; Ying Wei; Florian Leuschner; Rostic Gorbatov; Clinton S. Robbins; Yoshiko Iwamoto; Brian Thompson; Alicia L. Carlson; Timo Heidt; Maulik D. Majmudar; Felix Lasitschka; Martin Etzrodt; Peter G. Waterman; Michael T. Waring; Adam T. Chicoine; Anja M. van der Laan; Hans W.M. Niessen; Jan J. Piek; Barry B. Rubin; Jagdish Butany; James R. Stone; Hugo A. Katus; Sabina A. Murphy; David A. Morrow; Marc S. Sabatine; Claudio Vinegoni; Michael A. Moskowitz; Mikael J. Pittet; Peter Libby
During progression of atherosclerosis, myeloid cells destabilize lipid-rich plaques in the arterial wall and cause their rupture, thus triggering myocardial infarction and stroke. Survivors of acute coronary syndromes have a high risk of recurrent events for unknown reasons. Here we show that the systemic response to ischaemic injury aggravates chronic atherosclerosis. After myocardial infarction or stroke, Apoe−/− mice developed larger atherosclerotic lesions with a more advanced morphology. This disease acceleration persisted over many weeks and was associated with markedly increased monocyte recruitment. Seeking the source of surplus monocytes in plaques, we found that myocardial infarction liberated haematopoietic stem and progenitor cells from bone marrow niches via sympathetic nervous system signalling. The progenitors then seeded the spleen, yielding a sustained boost in monocyte production. These observations provide new mechanistic insight into atherogenesis and provide a novel therapeutic opportunity to mitigate disease progression.
Nature Immunology | 2007
Daniel E. Kaufmann; Daniel G. Kavanagh; Florencia Pereyra; John Zaunders; Elizabeth W. Mackey; Toshiyuki Miura; Sarah Palmer; Mark A. Brockman; Almas Rathod; Alicja Piechocka-Trocha; Brett Baker; Baogong Zhu; Sylvie Le Gall; Michael T. Waring; Ryan Ahern; Kristin Moss; Anthony D. Kelleher; John M. Coffin; Gordon J. Freeman; Eric S. Rosenberg; Bruce D. Walker
In progressive viral infection, antiviral T cell function is impaired by poorly understood mechanisms. Here we report that the inhibitory immunoregulatory receptor CTLA-4 was selectively upregulated in human immunodeficiency virus (HIV)–specific CD4+ T cells but not CD8+ T cells in all categories of HIV-infected subjects evaluated, with the exception of rare people able to control viremia in the absence of antiretroviral therapy. CTLA-4 expression correlated positively with disease progression and negatively with the capacity of CD4+ T cells to produce interleukin 2 in response to viral antigen. Most HIV-specific CD4+ T cells coexpressed CTLA-4 and another inhibitory immunoregulatory receptor, PD-1. In vitro blockade of CTLA-4 augmented HIV-specific CD4+ T cell function. These data, indicating a reversible immunoregulatory pathway selectively associated with CD4+ T cell dysfunction, provide a potential target for immunotherapy in HIV-infected patients.
Science | 2012
Philipp J. Rauch; Aleksey Chudnovskiy; Clinton S. Robbins; Georg F. Weber; Martin Etzrodt; Ingo Hilgendorf; Elizabeth Tiglao; Jose-Luiz Figueiredo; Yoshiko Iwamoto; Igor Theurl; Rostic Gorbatov; Michael T. Waring; Adam T. Chicoine; Majd Mouded; Mikael J. Pittet; Matthias Nahrendorf; Ralph Weissleder; Filip K. Swirski
Immune Sentinels A classic paradigm in immunology holds that the immune response occurs in two waves: Rapidly responding cells of the innate immune system help to contain the invading pathogen and alert lymphocytes. These cells of the adaptive immune system then help to clear the infection and go on to form long-lasting memory. However, some specialized populations of lymphocytes can also respond quickly to an infection and carry out functions that overlap with the innate immune system. Now, Rauch et al. (p. 597, published online 12 January) describe one such cell type—innate response activator (IRA) B cells. IRA B cells recognize bacterial liposaccharide through Toll-like receptor 4 and, in response, produce the cytokine GM-CSF, which activates other innate immune cells. Deletion of IRA B cells in mice impaired their ability to clear a bacterial infection and promoted septic shock. A specialized population of B lymphocytes is important for controlling bacterial infections and preventing sepsis. Recognition and clearance of a bacterial infection are a fundamental properties of innate immunity. Here, we describe an effector B cell population that protects against microbial sepsis. Innate response activator (IRA) B cells are phenotypically and functionally distinct, develop and diverge from B1a B cells, depend on pattern-recognition receptors, and produce granulocyte-macrophage colony-stimulating factor. Specific deletion of IRA B cell activity impairs bacterial clearance, elicits a cytokine storm, and precipitates septic shock. These observations enrich our understanding of innate immunity, position IRA B cells as gatekeepers of bacterial infection, and identify new treatment avenues for infectious diseases.
Blood | 2009
Mark A. Brockman; Douglas S. Kwon; Daniel P. Tighe; David F. Pavlik; Pamela C. Rosato; Jennifer Sela; Filippos Porichis; Sylvie Le Gall; Michael T. Waring; Kristin Moss; Heiko Jessen; Florencia Pereyra; Daniel G. Kavanagh; Bruce D. Walker; Daniel E. Kaufmann
Murine models indicate that interleukin-10 (IL-10) can suppress viral clearance, and interventional blockade of IL-10 activity has been proposed to enhance immunity in chronic viral infections. Increased IL-10 levels have been observed during HIV infection and IL-10 blockade has been shown to enhance T-cell function in some HIV-infected subjects. However, the categories of individuals in whom the IL-10 pathway is up-regulated are poorly defined, and the cellular sources of IL-10 in these subjects remain to be determined. Here we report that blockade of the IL-10 pathway augmented in vitro proliferative capacity of HIV-specific CD4 and CD8 T cells in individuals with ongoing viral replication. IL-10 blockade also increased cytokine secretion by HIV-specific CD4 T cells. Spontaneous IL-10 expression, measured as either plasma IL-10 protein or IL-10 mRNA in peripheral blood mononuclear cells (PBMCs), correlated positively with viral load and diminished after successful antiretroviral therapy. IL-10 mRNA levels were up-regulated in multiple PBMC subsets in HIV-infected subjects compared with HIV-negative controls, particularly in T, B, and natural killer (NK) cells, whereas monocytes were a major source of IL-10 mRNA in HIV-infected and -uninfected individuals. These data indicate that multiple cell types contribute to IL-10-mediated immune suppression in the presence of uncontrolled HIV viremia.
Journal of Virology | 2007
Mathias Lichterfeld; Xu G. Yu; Stanley K. Mui; Katie Williams; Alicja Trocha; Mark A. Brockman; Rachel L. Allgaier; Michael T. Waring; Tomohiko Koibuchi; Mary N. Johnston; Daniel E. Cohen; Todd M. Allen; Eric S. Rosenberg; Bruce D. Walker; Marcus Altfeld
ABSTRACT Human immunodeficiency virus type 1 (HIV-1)-specific CD8+ T cells in early infection are associated with the dramatic decline of peak viremia, whereas their antiviral activity in chronic infection is less apparent. The functional properties accounting for the antiviral activity of HIV-1-specific CD8+ T cells during early infection are unclear. Using cytokine secretion and tetramer decay assays, we demonstrated in intraindividual comparisons that the functional avidity of HIV-1-specific CD8+ T cells was consistently higher in early infection than in chronic infection in the presence of high-level viral replication. This change of HIV-1-specific CD8+ T-cell avidity between early and chronic infections was linked to a substantial switch in the clonotypic composition of epitope-specific CD8+ T cells, resulting from the preferential loss of high-avidity CD8+ T-cell clones. In contrast, the maintenance of the initially recruited clonotypic pattern of HIV-1-specific CD8+ T cells was associated with low-level set point HIV-1 viremia. These data suggest that high-avidity HIV-1-specific CD8+ T-cell clones are recruited during early infection but are subsequently lost in the presence of persistent high-level viral replication.
The Journal of Infectious Diseases | 2006
Hendrik Streeck; Heiko Jessen; Galit Alter; Nickolas Teigen; Michael T. Waring; Arne Jessen; Ingrid Stahmer; Jan van Lunzen; Mathias Lichterfeld; Xiaojiang Gao; Todd M. Allen; Mary Carrington; Bruce D. Walker; J. Rockstroh; Marcus Altfeld
The immunological and virological impact of short-term treatment initiated during acute human immunodeficiency virus type 1 (HIV-1) infection was assessed prospectively in 20 subjects, 12 of whom initiated highly active antiretroviral therapy (HAART) for 24 weeks and then terminated treatment. Treatment resulted in suppression of viremia, an increase in the CD4+ T cell count, enhanced differentiation of HIV-1-specific CD8(+) T cells from effector memory to effector cells at week 24 of HAART, and significantly higher virus-specific interferon- gamma+ CD8+ T cell responses after viral rebound (at week 48). However, despite these immunological changes, no differences in viremia or in the CD4+ T cell count were found 6 months after HAART was stopped, when treated subjects were compared with untreated subjects.
Blood | 2008
Mathias Lichterfeld; Danlei Mou; Thai Duong Hong Cung; Katie Williams; Michael T. Waring; Jinghe Huang; Florencia Pereyra; Alicja Trocha; Gordon J. Freeman; Eric S. Rosenberg; Bruce D. Walker; Xu G. Yu
Exhaustion of virus-specific T cells may play an important role in the pathophysiology of chronic viral infections. Here, we analyzed telomere length and telomerase activity in HIV-1-specific CD8+ T cells from progressors or controllers to determine underlying molecular pathways of T-cell exhaustion and senescence. Telomere lengths of HIV-1-specific CD8+ T cells from progressors were significantly shorter compared with autologous cytomegalovirus (CMV)/Epstein-Barr virus (EBV)-specific CD8+ T cells or bulk CD8+ T cells, while telomere lengths from controllers significantly exceeded those of autologous bulk CD8+ T cells and reached a similar level as HIV-1-specific CD8+ T cells collected during primary HIV-1 infection. Telomere length stabilization in controllers corresponded to high levels of constitutive telomerase activity, which was associated with preservation of cytotoxic and proliferative properties. Conversely, limited constitutive telomerase activity was observed in HIV-1-specific CD8+ T cells from progressors, although an increase in both telomere length and telomerase activity was achieved in antigenic-peptide-stimulated cells from progressors after blocking the PD-1/PD ligand 1 (PD-L1) pathway. Collectively, these data suggest a causal role of telomere shortening for the functional deficiencies of HIV-1-specific CD8+ T cells in chronic progressive infection, while high constitutive telomerase activities appears to contribute to maintenance of polyfunctional HIV-1-specific CD8+ T cells from HIV-1 controllers.
The Journal of Physiology | 2000
Kathleen M. Buckley; Haley E. Melikian; Chester J. Provoda; Michael T. Waring
Protein trafficking plays a central role in many aspects of neuronal function, from the release of neurotransmitters by exocytosis and the recycling of synaptic vesicle proteins to the regulation of receptor signalling. Synaptic function can be significantly modified on a short time scale by alterations in the levels of receptors, ion channels and transporters both pre‐ and postsynaptically. In many cases, these alterations appear to be mediated by acute changes in the rates at which the proteins are endocytosed from and exocytosed to the cell surface from intracellular pools. While our current understanding of the signalling mechanisms and the intracellular pathways responsible for these acute changes is still in its infancy, intriguing details are beginning to emerge from a number of systems.
Journal of Immunology | 2005
Tonia Woodberry; Todd J. Suscovich; Leah M. Henry; Meredith August; Michael T. Waring; Amitinder Kaur; Christoph Hess; Jeffery L. Kutok; Fred Wang; David T. Scadden; Christian Brander
The characterization of antiviral CTL responses has largely been limited to assessing Ag-specific immune responses in the peripheral blood. Consequently, there is an incomplete understanding of the cellular immune responses at mucosal sites where many viruses enter and initially replicate and how the Ag specificity and activation status of CTL derived from these mucosal sites may differ from that of blood-derived CTL. In this study, we show that EBV-specific CTL responses in the tonsils are of comparable specificity and breadth but of a significantly higher magnitude compared with responses in the peripheral blood. EBV-specific, tonsil-resident, but not PBMC-derived, T cells expressed the integrin/activation marker CD103 (αEβ7), consistent with the detection of its ligand, E-cadherin, on tonsillar squamous cells. These CD8-positive, CD103-positive, tonsil-derived CTL were largely CCR7- and CD45RA- negative effector-memory cells and responded to lower Ag concentrations in in vitro assays than their CD103-negative PBMC-derived counterparts. Thus, EBV-specific CTL in the tonsil, a crucial site for EBV entry and replication, are of greater magnitude and phenotypically distinct from CTL in the peripheral blood and may be important for effective control of this orally transmitted virus.