Silvia Crescioli
King's College London
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Publication
Featured researches published by Silvia Crescioli.
Cancer Research | 2017
Debra H. Josephs; Heather J. Bax; Tihomir Dodev; Mirella Georgouli; Mano Nakamura; Giulia Pellizzari; Louise Saul; Panagiotis Karagiannis; Anthony Cheung; Cecilia Herraiz; Kristina M. Ilieva; Isabel Correa; Matthew Fittall; Silvia Crescioli; Patrycja Gazinska; Natalie Woodman; Silvia Mele; Giulia Chiaruttini; Amy E. Gilbert; Alexander Koers; Marguerite G. Bracher; Christopher Selkirk; Heike Lentfer; Claire Barton; Elliott Lever; Gareth Muirhead; Sophia Tsoka; Silvana Canevari; Mariangela Figini; Ana Montes
IgE antibodies are key mediators of antiparasitic immune responses, but their potential for cancer treatment via antibody-dependent cell-mediated cytotoxicity (ADCC) has been little studied. Recently, tumor antigen-specific IgEs were reported to restrict cancer cell growth by engaging high-affinity Fc receptors on monocytes and macrophages; however, the underlying therapeutic mechanisms were undefined and in vivo proof of concept was limited. Here, an immunocompetent rat model was designed to recapitulate the human IgE-Fcε receptor system for cancer studies. We also generated rat IgE and IgG mAbs specific for the folate receptor (FRα), which is expressed widely on human ovarian tumors, along with a syngeneic rat tumor model expressing human FRα. Compared with IgG, anti-FRα IgE reduced lung metastases. This effect was associated with increased intratumoral infiltration by TNFα+ and CD80+ macrophages plus elevated TNFα and the macrophage chemoattractant MCP-1 in lung bronchoalveolar lavage fluid. Increased levels of TNFα and MCP-1 correlated with IgE-mediated tumor cytotoxicity by human monocytes and with longer patient survival in clinical specimens of ovarian cancer. Monocytes responded to IgE but not IgG exposure by upregulating TNFα, which in turn induced MCP-1 production by monocytes and tumor cells to promote a monocyte chemotactic response. Conversely, blocking TNFα receptor signaling abrogated induction of MCP-1, implicating it in the antitumor effects of IgE. Overall, these findings show how antitumor IgE reprograms monocytes and macrophages in the tumor microenvironment, encouraging the clinical use of IgE antibody technology to attack cancer beyond the present exclusive reliance on IgG. Cancer Res; 77(5); 1127-41. ©2017 AACR.
Scientific Reports | 2016
Louise Saul; Kristina M. Ilieva; Heather J. Bax; Panagiotis Karagiannis; Isabel Correa; Irene Rodriguez-Hernandez; Debra H. Josephs; Isabella Tosi; Isioma U. Egbuniwe; Sara Lombardi; Silvia Crescioli; Carl Hobbs; Federica Villanova; Anthony Cheung; Jenny Geh; Ciaran Healy; Mark Harries; Victoria Sanz-Moreno; David J. Fear; James Spicer; Katie E. Lacy; Frank O. Nestle; Sophia N. Karagiannis
B cells participate in immune surveillance in human circulation and tissues, including tumors such as melanoma. By contrast, the role of humoral responses in cutaneous immunity is underappreciated. We report circulating skin-homing CD22+CLA+B cells in healthy volunteers and melanoma patients (n = 73) and CD22+ cells in melanoma and normal skin samples (n = 189). Normal and malignant skin featured mature IgG and CD22 mRNA, alongside mRNA for the transiently-expressed enzyme Activation-induced cytidine Deaminase (AID). Gene expression analyses of publically-available data (n = 234 GEO, n = 384 TCGA) confirmed heightened humoral responses (CD20, CD22, AID) in melanoma. Analyses of 51 melanoma-associated and 29 normal skin-derived IgG sequence repertoires revealed lower IgG1/IgGtotal representation compared with antibodies from circulating B cells. Consistent with AID, comparable somatic hypermutation frequencies and class-switching indicated affinity-matured antibodies in normal and malignant skin. A melanoma-associated antibody subset featured shorter complementarity-determining (CDR3) regions relative to those from circulating B cells. Clonal amplification in melanoma-associated antibodies and homology modeling indicated differential potential antigen recognition profiles between normal skin and melanoma sequences, suggesting distinct antibody repertoires. Evidence for IgG-expressing B cells, class switching and antibody maturation in normal and malignant skin and clonally-expanded antibodies in melanoma, support the involvement of mature B cells in cutaneous immunity.
Current Allergy and Asthma Reports | 2016
Silvia Crescioli; Isabel Correa; Panagiotis Karagiannis; Anna M. Davies; Brian J. Sutton; Frank O. Nestle; Sophia N. Karagiannis
IgG4 is the least abundant subclass of IgG in normal human serum, but elevated IgG4 levels are triggered in response to a chronic antigenic stimulus and inflammation. Since the immune system is exposed to tumor-associated antigens over a relatively long period of time, and tumors notoriously promote inflammation, it is unsurprising that IgG4 has been implicated in certain tumor types. Despite differing from other IgG subclasses by only a few amino acids, IgG4 possesses unique structural characteristics that may be responsible for its poor effector function potency and immunomodulatory properties. We describe the unique attributes of IgG4 that may be responsible for these regulatory functions, particularly in the cancer context. We discuss the inflammatory conditions in tumors that support IgG4, the emerging and proposed mechanisms by which IgG4 may contribute to tumor-associated escape from immune surveillance and implications for cancer immunotherapy.
OncoImmunology | 2017
Giulia Chiaruttini; Silvia Mele; James W. Opzoomer; Silvia Crescioli; Kristina M. Ilieva; K. Lacy; Sophia N. Karagiannis
ABSTRACT Evidence of tumor-resident mature B cell and antibody compartments and reports of associations with favorable prognosis in malignant melanoma suggest that humoral immunity could participate in antitumor defense. Likely striving to confer immunological protection while being subjected to tumor-promoting immune tolerance, B cells may engender multiple functions, including antigen processing and presentation, cytokine-mediated signaling, antibody class switching, expression and secretion. We review key evidence in support of multifaceted immunological mechanisms by which B cells may counter or contribute to malignant melanoma, and we discuss their potential translational implications. Dissecting the contributions of tumor-associated humoral responses can inform future treatment avenues.
Oncotarget | 2017
Merope Griffin; Daniele Scotto; Debra H. Josephs; Silvia Mele; Silvia Crescioli; Heather J. Bax; Giulia Pellizzari; Matthew D. Wynne; Mano Nakamura; Ricarda M. Hoffmann; Kristina M. Ilieva; Anthony Cheung; James Spicer; Sophie Papa; Katie E. Lacy; Sophia N. Karagiannis
Identification of mutations in the gene encoding the serine/threonine-protein kinase, BRAF, and constitutive activation of the mitogen-activated protein kinase (MAPK) pathway in around 50% of malignant melanomas have led to the development and regulatory approval of targeted pathway inhibitor drugs. A proportion of patients are intrinsically resistant to BRAF inhibitors, and most patients who initially respond, acquire resistance within months. In this review, we discuss pathway inhibitors and their mechanisms of resistance, and we focus on numerous efforts to improve clinical benefits through combining agents with disparate modes of action, including combinations with checkpoint inhibitor antibodies. We discuss the merits of combination strategies based on enhancing immune responses or overcoming tumor-associated immune escape mechanisms. Emerging insights into mechanisms of action, resistance pathways and their impact on host-tumor relationships will inform the design of optimal combinations therapies to improve outcomes for patients who currently do not benefit from recent treatment breakthroughs.
OncoImmunology | 2018
Ricarda M. Hoffmann; Ben G. T. Coumbe; Debra H. Josephs; Silvia Mele; Kristina M. Ilieva; Anthony Cheung; Andrew Tutt; James Spicer; David E. Thurston; Silvia Crescioli; Sophia N. Karagiannis
ABSTRACT Antibody-drug conjugates (ADCs) are emerging as effective tools in cancer therapy, combining the antibodys exquisite specificity for the target antigen-expressing cancer cell together with the cytotoxic potency of the payload. Much success stems from the rational design of “toxic warheads”, chemically linked to antibodies, and from fine-tuning the intricate properties of chemical linkers. Here, we focus on the antibody moiety of ADCs, dissecting the impact of Fab, linkers, isotype and Fc structure on the anti-tumoral and immune-activating functions of ADCs. Novel design approaches informed by antibody structural attributes present opportunities that may contribute to the success of next generation ADCs.
Allergy | 2018
Erika Jensen-Jarolim; Heather J. Bax; Rodolfo Bianchini; Silvia Crescioli; T. R. Daniels-Wells; David Dombrowicz; Edda Fiebiger; Hannah J. Gould; Sheeba Irshad; Jozef Janda; Debra H. Josephs; Francesca Levi-Schaffer; Liam O’Mahony; Giulia Pellizzari; Manuel L. Penichet; Frank A. Redegeld; Franziska Roth-Walter; Josef Singer; Eva Untersmayr; Luca Vangelista; Sophia N. Karagiannis
While desired for the cure of allergy, regulatory immune cell subsets and nonclassical Th2‐biased inflammatory mediators in the tumour microenvironment can contribute to immune suppression and escape of tumours from immunological detection and clearance. A key aim in the cancer field is therefore to design interventions that can break immunological tolerance and halt cancer progression, whereas on the contrary allergen immunotherapy exactly aims to induce tolerance. In this position paper, we review insights on immune tolerance derived from allergy and from cancer inflammation, focusing on what is known about the roles of key immune cells and mediators. We propose that research in the field of AllergoOncology that aims to delineate these immunological mechanisms with juxtaposed clinical consequences in allergy and cancer may point to novel avenues for therapeutic interventions that stand to benefit both disciplines.
Journal of Proteomics | 2017
Laura Montero-Morales; Daniel Maresch; Alexandra Castilho; Aysegül Turupcu; Kristina M. Ilieva; Silvia Crescioli; Sophia N. Karagiannis; Christian Lupinek; Chris Oostenbrink; Friedrich Altmann; Herta Steinkellner
The increasing biotechnological interest in human IgE antibodies demands advanced systems which allow their proper expression. However, this is still a challenge due to the complexity of the molecule, particularly regarding the diverse N-glycosylation pattern. Here, we present the expression of recombinant IgE in wild type and glycan-engineered Nicotiana benthamiana plants and in-depth N-glycosylation analyses. Mass spectrometric profiling revealed that plant IgE has a site occupancy rate that ranges from non-occupied at glycosite 6 (GS6) to 100% occupancy at GS1 and 2. Similarly to human cell-derived IgE, plant versions carry complex N-glycans at GS1-5 and oligomannosidic structures at GS7. Computational modelling suggests that spatial position (or orientation) of glycans can impair processing or site occupancy on adjacent glycosites. IgE expressed in glycoengineered and wild type plants carry, respectively, GnGn and plant-typical GnGnXF structures at large homogeneity. This contrasts with the glycan diversity of HEK cell-derived IgE, carrying at least 20 different glycoforms. Importantly, IgE glycoengineering allows the control of its glycosylation, a so far unmet need when using well-established expression systems. This enables the elucidation of possible carbohydrate-dependent IgE functions. SIGNIFICANCE Targeted glycosylation of recombinant proteins may provide an advantage in therapeutic applications. Despite increasing biotechnological interest in IgE antibodies, knowledge and impact of glycosylation on this antibody class are scarce. With the ability to glyco-engineer recombinant IgE, we provide an important step towards the generation of IgE with other targeted N-glycans. This will facilitate detailed structure-function studies and may lead to the production of IgE with optimized activities.
Frontiers in Immunology | 2018
Kristina M. Ilieva; Anthony Cheung; Silvia Mele; Giulia Chiaruttini; Silvia Crescioli; Merope Griffin; Mano Nakamura; James Spicer; Sophia Tsoka; Katie E. Lacy; Andrew Tutt; Sophia N. Karagiannis
Overexpression of the chondroitin sulfate proteoglycan 4 (CSPG4) has been associated with the pathology of multiple types of such as melanoma, breast cancer, squamous cell carcinoma, mesothelioma, neuroblastoma, adult and pediatric sarcomas, and some hematological cancers. CSPG4 has been reported to exhibit a role in the growth and survival as well as in the spreading and metastasis of tumor cells. CSPG4 is overexpressed in several malignant diseases, while it is thought to have restricted and low expression in normal tissues. Thus, CSPG4 has become the target of numerous anticancer treatment approaches, including monoclonal antibody-based therapies. This study reviews key potential anti-CSPG4 antibody and immune-based therapies and examines their direct antiproliferative/metastatic and immune activating mechanisms of action.
Frontiers in Immunology | 2017
Kristina M. Ilieva; Judit Fazekas-Singer; Daniela Achkova; Tihomir Dodev; Silvia Mele; Silvia Crescioli; Heather J. Bax; Anthony Cheung; Panagiotis Karagiannis; Isabel Correa; Mariangela Figini; Rebecca Marlow; Debra H. Josephs; Andrew J. Beavil; John Maher; James Spicer; Erika Jensen-Jarolim; Andrew Tutt; Sophia N. Karagiannis
Monoclonal antibodies find broad application as therapy for various types of cancer by employing multiple mechanisms of action against tumors. Manipulating the Fc-mediated functions of antibodies that engage immune effector cells, such as NK cells, represents a strategy to influence effector cell activation and to enhance antibody potency and potentially efficacy. We developed a novel approach to generate and ascertain the functional attributes of Fc mutant monoclonal antibodies. This entailed coupling single expression vector (pVitro1) antibody cloning, using polymerase incomplete primer extension (PIPE) polymerase chain reaction, together with simultaneous Fc region point mutagenesis and high yield transient expression in human mammalian cells. Employing this, we engineered wild type, low (N297Q, NQ), and high (S239D/I332E, DE) FcR-binding Fc mutant monoclonal antibody panels recognizing two cancer antigens, HER2/neu and chondroitin sulfate proteoglycan 4. Antibodies were generated with universal mutagenic primers applicable to any IgG1 pVitro1 constructs, with high mutagenesis and transfection efficiency, in small culture volumes, at high yields and within 12 days from design to purified material. Antibody variants conserved their Fab-mediated recognition of target antigens and their direct anti-proliferative effects against cancer cells. Fc mutations had a significant impact on antibody interactions with Fc receptors (FcRs) on human NK cells, and consequently on the potency of NK cell activation, quantified by immune complex-mediated calcium mobilization and by antibody-dependent cellular cytotoxicity (ADCC) of tumor cells. This strategy for manipulation and testing of Fc region engagement with cognate FcRs can facilitate the design of antibodies with defined effector functions and potentially enhanced efficacy against tumor cells.