Abstract SARS-CoV-2 evolution has reduced the efficacy of clinical monoclonal antibodies, underscoring the need for therapeutics targeting conserved viral regions. The Spike (S) heptad repeat 2 (HR2) stem helix is highly conserved across SARS-CoV-2 variants and related betacoronaviruses. Although antibodies to this region can neutralize infection, their natural occurrence and evolution remain poorly understood. We previously identified human neutralizing antibodies to a conserved peptide within this region (HR2 coldspot). Here, we show that plasma IgG reactivity to this region remains rare, even after repeated antigen exposure. Longitudinal analysis over 30 months revealed continued somatic hypermutation of HR2-specific antibodies, yet none surpassed the potency or breadth of hr2.016, which emerged shortly after primary infection. Crystal structures of four HR2 stem helix antibodies revealed convergent recognition across distinct antibody lineages. Comparison of hr2.016 with its non-neutralizing clonal relative hr2.086 showed that structural convergence masks distinct binding kinetics. Surface plasmon resonance and molecular dynamics simulations revealed a more stable interaction network for hr2.016, with slower dissociation and prolonged S residence time. Neutralization required the IgG format, supporting an avidity-driven mechanism. Together, these findings define kinetic and avidity constraints governing neutralization at the HR2 stem helix and position hr2.016 as a resilient therapeutic candidate.
West Nile virus (WNV) is a mosquito-borne pathogen of global concern that can cause fatal neuroinvasive disease, and no specific prophylaxis or treatment exists for infections by WNV and most related orthoflaviviruses. Here, we isolated and characterized antibodies from WNV convalescent individuals and report that neutralizing autoantibodies against type I interferons did not impair antiviral antibody development. Among the monoclonal antibodies with potent neutralizing activity against WNV that were identified, W010 targeted a distinct epitope within the envelope protein domain III (EDIII) and conferred both pre- and post-exposure protection in a murine WNV model, even when interferon signaling was impaired. A second protective antibody, W014, exhibited broad cross-neutralization of other pathogenic orthoflavivirus members, including Japanese encephalitis virus, Murray Valley encephalitis virus, Saint Louis encephalitis virus, and Usutu virus. These findings identify key neutralizing epitopes on WNV EDIII and provide candidates for the development of antibody-based interventions against encephalitic orthoflavivirus infections.
West Nile virus (WNV) is a mosquito-borne pathogen of global concern that can cause fatal neuroinvasive disease. No specific prophylaxis or treatment exists for WNV or related orthoflavivirus infections, and the determinants of human disease severity remain poorly understood. Here, we report that neutralizing autoantibodies against type I interferons do not impair antiviral antibody development. Among the fully human monoclonal antibodies with potent neutralizing activity against WNV that were discovered, W010 targets a unique epitope within the envelope protein domain III (EDIII) and confers both pre- and post-exposure protection in a murine WNV model, even when interferon signaling is impaired. A second protective antibody, W014, exhibits broad cross-neutralization of other pathogenic orthoflavivirus members, including Japanese encephalitis virus, Murray Valley encephalitis virus, Saint Louis encephalitis virus, and Usutu virus. These findings identify key neutralizing epitopes on WNV EDIII and provide candidates for the development of antibody-based interventions against encephalitic orthoflavivirus infections.
Regulatory factor X 7 (RFX7) nonsense mutations have been found in different human B cell malignancies. We therefore set out to study the role of RFX7 in B cell activation and lymphomagenesis. Here we show that RFX7 truncations cause loss-of-function and dominant-negative effects. Moreover, low RFX7 mRNA levels correlate with worse diffuse large B cell lymphoma prognosis. Accordingly, Rfx7 deletion in B cells accelerates pathogenesis in mouse Bcl6- and p53-loss-driven B cell lymphoma models. Rfx7-deficient B cells exhibit increased Myc activity and enhanced germinal center B cell and plasmablast responses. These alterations are reverted by Myc haploinsufficiency, which provides partial protection from nonsymptomatic p53-/-Rfx7-/- B cell lymphoma, but does not prevent detrimental Myc deregulation in aggressive disease. Deletion of Aicda, which favors genomic alterations in activated B cells, limits lymphoma development in the p53-/-Rfx7-/- double-hit mouse model. These results indicate that Rfx7 represses B cell activation, Myc activity, and Myc- and activation-induced cytidine deaminase (AID)-dependent pro-lymphomagenic processes.
Tick-borne encephalitis (TBE) is an emerging vector-borne disease in Europe, but its epidemiology remains poorly defined in Serbia. In orthoflavivirus-endemic settings, diagnostic challenges may contribute to underrecognition of TBE, particularly among patients with suspected West Nile virus (WNV) infection. We conducted a multicenter retrospective study including patients hospitalized between 2018 and 2023 with suspected WNV neuroinvasive disease or viral encephalitis of unknown etiology. Serum samples were tested for TBEV-neutralizing antibodies using a microneutralization assay. Among 79 patients, TBEV-neutralizing antibodies were detected in four (5.1%). Most reactive cases occurred in patients initially classified as having suspected WNV-associated meningoencephalitis, while TBE had not been considered in the differential diagnosis at admission. These findings suggest that TBE may be underrecognized in Serbia and highlight the importance of confirmatory testing in orthoflavivirus-endemic settings. Strengthening clinical awareness and surveillance will be essential to better define the burden of TBE and inform prevention strategies.
West Nile virus (WNV), a member of the Orthoflavivirus genus, can cause fatal encephalitis in humans. With no specific treatment available, WNV remains the leading cause of mosquito-borne disease in the continental United States, spreading globally. The antiviral antibody response is important for protection against WNV disease, while anti-interferon type I (IFN-I) autoantibodies have been linked to higher risk of WNV encephalitis. We show that the presence of anti-IFN-I autoantibodies does not impair the development of antiviral antibodies in individuals with WNV neuroinvasive disease. From selected convalescent individuals with high WNV serum neutralizing activity we isolated W010, a potent monoclonal antibody targeting the virus envelope domain III (EDIII). In a lethal mouse model, W010 provides significant protection even at low doses and when administered up to five days post-infection. Unlike previously reported antibodies, W010 is highly effective against both lineages of WNV that cause human disease. Other EDIII-specific antibodies that were discovered are broadly cross-reactive, also neutralizing other members of the Japanese encephalitis virus serocomplex in vitro (JEV, Murray Valley encephalitis virus, Saint Louis encephalitis virus, and Usutu virus). Thus, human pan-neutralizing antibodies exist that simultaneously protect against viruses of the JEV-serocomplex. The structural basis of neutralization by the lead antibodies for clinical development is revealed. Swiss National Science Foundation (no. 310030L_196866), NIH U01 AI151698 Vaccines and Immunotherapy (VAC)
Background: Human endogenous retroviruses (HERVs) are transposable elements (TE) derived from retrovirus infections that occurred millions of years ago. Despite constituting 8% of our genome, their biological role still needs to be explored. HERV-K (HML-2), a subgroup of HERVs, represents the most recent retroviruses integrated into the human germline DNA. Members of the HML-2 subgroup retain complete ORF with coding potential and have garnered the most attention in disease-related studies. HERVs exhibit physiological expression in embryonic stem cells but are heavily methylated and remain almost silent in normal adult tissues. Although the mechanisms underlying HERV-K contribution to tumor cell growth and survival remain poorly understood, aberrant expression of HERVs has been demonstrated in various human tumor tissues and lymphoma. These findings led us to explore HERV-K as a potential therapeutic target in B cell lymphomas .Methods: RNA data were analyzed with Telescope. Validations were performed by qPCR, Western blot, flow cytometry, and ELISA. Env structure was obtained with AlphaFold and peptides were purchased from GeneScript. Antibody-dependent cellular cytotoxicity (ADCC) was performed with the ADCC Reporter Bioassay (Promega). Internalization was assessed using the Incucyte Fabfluor-pH Antibody labeling reagents. Results: We assessed the TE expression in RNA-seq datasets of diffuse large B cell lymphoma (DLBCL) and B cells from healthy individuals. An MDS plot showed that TEs could separate neoplastic from healthy samples, demonstrating that tumoral and normal specimens have distinct TE and HERV expression profiles. Focusing on tumor samples, DLBCLs were divided into four clusters with different prognoses. Similar results were obtained in a 47 B-cell lymphoma cell line panel. Focusing on the HML-2 family in lymphoma patients, we identified many of them upregulated in tumors. We validated RNA and protein expression of the HML-2 envelope (env) in seventeen lymphoma cell lines, and in two of them, we also proved the protein surface expression. Env-specific siRNA reduced env expression determined a decrease in cell proliferation, suggesting a contribution to lymphoma cell growth. In silico examination of the env identified four linear regions with potential for antibody binding, and peptides covering them were synthesized. We screened 150 lymphoma patients' serum samples for IgG antibodies binding to the peptides, and all peptides showed positive hits. We used a phage display screen to obtain one nanobody, FF01, binding one peptide. FF01 induced ADCC in the cell line with high surface env expression and not in a negative one. FF01 was internalized in an expressing cell, proving the principle for using it as a component of an antibody-drug conjugate. Conclusions: Our data demonstrate that HERVs are in DLBCL patients and propose FF01 as a new candidate to target HERV Env+ lymphomas. Citation Format: Filippo Spriano, Luciano Cascione, Jacopo Sgrignani, Nikolai Bendik, Sara Napoli, Giulio Sartori, Eleonora Cannas, Tao Gongo, Alberto J. Arribas, Davide Rossi, Davide F. Robbiani, Andrea Cavalli, Francesco Bertoni. FF01: a novel humanized heavy chain antibody targeting endogenous retroviruses with anti-lymphoma activity [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2024; Part 1 (Regular Abstracts); 2024 Apr 5-10; San Diego, CA. Philadelphia (PA): AACR; Cancer Res 2024;84(6_Suppl):Abstract nr 2721.
Abstract Background: Human endogenous retroviruses (HERVs) are transposable elements (TE) derived from retrovirus infections that occurred millions of years ago. Despite constituting 8% of our genome, their biological role still needs to be explored. HERV-K (HML-2), a subgroup of HERVs, represents the most recent retroviruses integrated into the human germline DNA. Members of the HML-2 subgroup retain complete ORF with coding potential and have garnered the most attention in disease-related studies. HERVs exhibit physiological expression in embryonic stem cells but are heavily methylated and remain almost silent in normal adult tissues. Although the mechanisms underlying HERV-K contribution to tumor cell growth and survival remain poorly understood, aberrant expression of HERVs has been demonstrated in various human tumor tissues and lymphoma. These findings led us to explore HERV-K as a potential therapeutic target in B cell lymphomas .Methods: RNA data were analyzed with Telescope. Validations were performed by qPCR, Western blot, flow cytometry, and ELISA. Env structure was obtained with AlphaFold and peptides were purchased from GeneScript. Antibody-dependent cellular cytotoxicity (ADCC) was performed with the ADCC Reporter Bioassay (Promega). Internalization was assessed using the Incucyte Fabfluor-pH Antibody labeling reagents. Results: We assessed the TE expression in RNA-seq datasets of diffuse large B cell lymphoma (DLBCL) and B cells from healthy individuals. An MDS plot showed that TEs could separate neoplastic from healthy samples, demonstrating that tumoral and normal specimens have distinct TE and HERV expression profiles. Focusing on tumor samples, DLBCLs were divided into four clusters with different prognoses. Similar results were obtained in a 47 B-cell lymphoma cell line panel. Focusing on the HML-2 family in lymphoma patients, we identified many of them upregulated in tumors. We validated RNA and protein expression of the HML-2 envelope (env) in seventeen lymphoma cell lines, and in two of them, we also proved the protein surface expression. Env-specific siRNA reduced env expression determined a decrease in cell proliferation, suggesting a contribution to lymphoma cell growth. In silico examination of the env identified four linear regions with potential for antibody binding, and peptides covering them were synthesized. We screened 150 lymphoma patients' serum samples for IgG antibodies binding to the peptides, and all peptides showed positive hits. We used a phage display screen to obtain one nanobody, FF01, binding one peptide. FF01 induced ADCC in the cell line with high surface env expression and not in a negative one. FF01 was internalized in an expressing cell, proving the principle for using it as a component of an antibody-drug conjugate. Conclusions: Our data demonstrate that HERVs are in DLBCL patients and propose FF01 as a new candidate to target HERV Env+ lymphomas. Citation Format: Filippo Spriano, Luciano Cascione, Jacopo Sgrignani, Nikolai Bendik, Sara Napoli, Giulio Sartori, Eleonora Cannas, Tao Gongo, Alberto J. Arribas, Davide Rossi, Davide F. Robbiani, Andrea Cavalli, Francesco Bertoni. FF01: a novel humanized heavy chain antibody targeting endogenous retroviruses with anti-lymphoma activity [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2024; Part 1 (Regular Abstracts); 2024 Apr 5-10; San Diego, CA. Philadelphia (PA): AACR; Cancer Res 2024;84(6_Suppl):Abstract nr 2721.
Tick-borne Flaviviruses (TBF) represent an emerging risk to the human population, with a notable increase in global case incidence over the past decade. Despite the existence of a vaccine for Tick-borne Encephalitis virus (TBEV), challenges related to limited vaccine coverage and irregular boosting schedules have made virus management difficult. Therefore, there is need to gain a deeper understanding of protective, antibody-mediated immune responses that could potentially be harnessed for therapeutic purposes.
The emergence of Omicron lineages and descendent subvariants continues to present a severe threat to the effectiveness of vaccines and therapeutic antibodies. We have previously suggested that an insufficient mucosal immunoglobulin A (IgA) response induced by the mRNA vaccines is associated with a surge in breakthrough infections. Here, we further show that the intramuscular mRNA and/or inactivated vaccines cannot sufficiently boost the mucosal secretory IgA response in uninfected individuals, particularly against the Omicron variant. We thus engineered and characterized recombinant monomeric, dimeric, and secretory IgA1 antibodies derived from four neutralizing IgG monoclonal antibodies (mAbs 01A05, rmAb23, DXP-604, and XG014) targeting the receptor-binding domain of the spike protein. Compared to their parental IgG antibodies, dimeric and secretory IgA1 antibodies showed a higher neutralizing activity against different variants of concern (VOCs), in part due to an increased avidity. Importantly, the dimeric or secretory IgA1 form of the DXP-604 antibody significantly outperformed its parental IgG antibody, and neutralized the Omicron lineages BA.1, BA.2, and BA.4/5 with a 25- to 75-fold increase in potency. In human angiotensin converting enzyme 2 (ACE2) transgenic mice, a single intranasal dose of the dimeric IgA DXP-604 conferred prophylactic and therapeutic protection against Omicron BA.5. Thus, dimeric or secretory IgA delivered by nasal administration may potentially be exploited for the treatment and prevention of Omicron infection, thereby providing an alternative tool for combating immune evasion by the current circulating subvariants and, potentially, future VOCs.
Flaviviruses such as dengue virus (DENV), Zika virus (ZIKV), and yellow fever virus (YFV) are spread by mosquitoes and cause human disease and mortality in tropical areas. In contrast, Powassan virus (POWV), which causes severe neurologic illness, is a flavivirus transmitted by ticks in temperate regions of the Northern hemisphere. We find serologic neutralizing activity against POWV in individuals living in Mexico and Brazil. Monoclonal antibodies P002 and P003, which were derived from a resident of Mexico (where POWV is not reported), neutralize POWV lineage I by recognizing an epitope on the virus envelope domain III (EDIII) that is shared with a broad range of tick- and mosquito-borne flaviviruses. Our findings raise the possibility that POWV, or a flavivirus closely related to it, infects humans in the tropics.
Introduction: Lyme disease (LD) affects similar to 476,000 people each year in the United States. Symptoms are variable and include rash and flu-like symptoms. Reasons for the wide variation in disease outcomes are unknown. Powassan virus (POWV) is a tick-borne flavivirus that causes disease ranging from asymptomatic infection to encephalitis, neurologic damage, and death. POWV and LD geographic case distributions overlap, with Ixodes species ticks as the common vectors. Clinical ramifications of coinfection or sequential infection are unknown.Objectives: This study's primary objective was to determine the prevalence of POWV-reactive antibodies in sera samples collected from previously studied cohorts of individuals with self-reported LD history residing in the Northeastern United States. As a secondary objective, we studied clinical differences between people with self-reported LD history and low versus high POWV antibody levels.Methods: We used an enzyme-linked immunosorbent assay (ELISA) to quantify IgG directed at the POWV envelope (E) protein domain III in 538 samples from individuals with self-reported LD history and 16 community controls. The samples were also tested with an ELISA assay to quantify IgG directed at the POWV NS1 protein.Results: The percentage of individuals with LD history and possible evidence of POWV exposure varied depending on the assay utilized. We found no significant difference in clinical symptoms between those with low or high POWV IgG levels in the in-house assay. Congruence of the EDIII and NS1 assays was low with only 12% of those positive in the in-house EDIII ELISA testing positive in the POWV NS1 ELISA.Conclusions: The results highlight the difficulty in flavivirus diagnostic testing, particularly in the retrospective detection of flavivirus exposure. The findings suggest that a prospective study with symptomatic patients using approved clinical testing is necessary to address the incidence and clinical implications of LD and POWV co-infection or sequential infection.
Lymphomas continue to pose therapeutic challenges, with a considerable portion of patients facing refractory disease. This study focuses on Diffuse Large B-cell Lymphoma (DLBCL), the most prevalent lymphoma type. Within the human genome, transposable elements (TEs), particularly Human Endogenous Retroviruses (HERVs), constitute a significant yet understudied portion. Among HERVs, the HERV-K family, specifically HERV-K113 and HERV-K115, has intact open reading frames. Epigenetic regulation tightly controls HERV expression, and aberrant expression has been observed in various cancers, including lymphomas.This research investigates the potential of HERV-K as a therapeutic target in DLBCL. The study encompasses comprehensive methods, including RNA extraction, PCR detection, flow cytometry, immunoblotting, peptide prediction, phage display, surface plasmon resonance, ELISA, antibody-dependent cell-mediated cytotoxicity, internalization assays, and bioinformatic analysis. Results reveal the presence and expression of HERVs in lymphoma patients and cell lines, with the HERV-K envelope protein identified as a crucial contributor to lymphoma cell growth. Moreover, the study identifies immunogenic regions of HERV-K, leading to the development of a humanized camelid nanobody (FF-01) with potential therapeutic applications. Furthermore, bioinformatic analysis differentiates DLBCL subgroups based on TE expression, providing insights into prognostic variations. Patients with high HERV-K113 expression show activation of pathways related to antiviral responses, suggesting a viral mimicry state.In conclusion, the study highlights the clinical relevance of HERVs in lymphomas, proposing them as novel therapeutic targets. The newly developed nanobody FF-01 demonstrates anti-lymphoma activity through antibody-dependent cellular cytotoxicity and internalization. This research opens avenues for exploring endogenous retroviruses as targets for immunotherapy in lymphomas, showcasing the potential of FF-01 as a promising candidate for further investigation.### Competing Interest StatementThe IOR and IRB Foundations have filed a patent regarding reagents against human endogenous retroviruses to target cancer cells, in which Filippo Spriano, Jacopo Sgrignani, Andrea Cavalli, and Francesco Bertoni are listed as co-inventors. Alberto J. Arribas: travel grant from Astra Zeneca, consultant for PentixaPharm. Luciano Cascione: travel grant from HTG. Davide Rossi: honoraria from AstraZeneca, AbbVie, BeiGene, BMS/Celgene, Janssen; research funding from AstraZeneca, AbbVie, BeiGene, Janssen. Francesco Bertoni: institutional research funds from ADC Therapeutics, Bayer AG, BeiGene, Floratek Pharma, Helsinn, HTG Molecular Diagnostics, Ideogen AG, Idorsia Pharmaceuticals Ltd., Immagene, ImmunoGen, Menarini Ricerche, Nordic Nanovector ASA, Oncternal Therapeutics, Spexis AG; consultancy fee from BIMINI Biotech, Helsinn, Menarini; advisory board fees to institution from Novartis; expert statements provided to HTG Molecular Diagnostics; travel grants from Amgen, Astra Zeneca, Beigene, iOnctura. The other Authors have nothing to disclose.
Tick-borne encephalitis (TBE) virus (TBEV) is transmitted to humans via tick bites. Infection is benign in >90% of the cases but can cause mild (<5%), moderate (<4%), or severe (<1%) encephalitis. We show here that ∼10% of patients hospitalized for severe TBE in cohorts from Austria, Czech Republic, and France carry auto-Abs neutralizing IFN-α2, -β, and/or -ω at the onset of disease, contrasting with only ∼1% of patients with moderate and mild TBE. These auto-Abs were found in two of eight patients who died and none of 13 with silent infection. The odds ratios (OR) for severe TBE in individuals with these auto-Abs relative to those without them in the general population were 4.9 (95% CI: 1.5-15.9, P < 0.0001) for the neutralization of only 100 pg/ml IFN-α2 and/or -ω, and 20.8 (95% CI: 4.5-97.4, P < 0.0001) for the neutralization of 10 ng/ml IFN-α2 and -ω. Auto-Abs neutralizing type I IFNs accounted for ∼10% of severe TBE cases in these three European cohorts.
Analytical ultracentrifugation (AUC) analysis shows that the SARS-CoV-2 trimeric Spike (S) protein adopts different quaternary conformations in solution. The relative abundance of the "open" and "close" conformations is temperature-dependent, and samples with different storage temperature history have different open/close distributions. Neutralizing antibodies (NAbs) targeting the S receptor binding domain (RBD) do not alter the conformer populations; by contrast, a NAb targeting a cryptic conformational epitope skews the Spike trimer toward an open conformation. The results highlight AUC, which is typically applied for molecular mass determination of biomolecules as a powerful tool for detecting functionally relevant quaternary protein conformations.
The emergence of highly immune-escape Omicron variants of the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), such as BQ and XBB, has led to concerns about the efficacy of vaccines. Using lentivirus-based pseudovirus neutralizing assay, we showed that heterologous vaccination involving parental mRNA vaccine as a booster or second booster in individuals that received two or three doses of inactivated vaccines strongly augments the neutralizing activity against emerging Omicron subvariants, including BF.7, BQ.1.1, and XBB.1, by 4.3-to 219-folds. Therefore, a heterologous boosting strategy with mRNA-based vaccines should be considered in populations where inactivated vaccines were primarily used.### Competing Interest StatementThe authors have declared no competing interest.### Funding StatementThis work was supported by The European Unions Horizon 2020 research and innovation program (ATAC, 101003650, D.F.R., M.H., L.H., H.M., Q.P.H), the Center for Innovative Medicine at the Karolinska Institutet (FoUI-963219, Q.P.H), the Swedish Research Council (2019-01302, 2020-06116, Q.P.H), the Knut and Alice Wallenberg Foundation (KAW2020.0102, L.H., Q.P.H), and the Magnus Bergvalls Stiftelse (2022-111, F.Z).### Author DeclarationsI confirm all relevant ethical guidelines have been followed, and any necessary IRB and/or ethics committee approvals have been obtained.YesThe details of the IRB/oversight body that provided approval or exemption for the research described are given below:The study was approved by the ethics committees in institutional review board (IRB) of Stockholm, and the Tehran University of Medical Sciences.I confirm that all necessary patient/participant consent has been obtained and the appropriate institutional forms have been archived, and that any patient/participant/sample identifiers included were not known to anyone (e.g., hospital staff, patients or participants themselves) outside the research group so cannot be used to identify individuals.YesI understand that all clinical trials and any other prospective interventional studies must be registered with an ICMJE-approved registry, such as ClinicalTrials.gov. I confirm that any such study reported in the manuscript has been registered and the trial registration ID is provided (note: if posting a prospective study registered retrospectively, please provide a statement in the trial ID field explaining why the study was not registered in advance).YesI have followed all appropriate research reporting guidelines and uploaded the relevant EQUATOR Network research reporting checklist(s) and other pertinent material as supplementary files, if applicable.YesThe data that support the findings of this study are available within the Article. All other data are available from the corresponding author upon reasonable request.
Infection with severe acute respiratory syndrome coronavirus 2 associates with diverse symptoms, which can persist for months. While antiviral antibodies are protective, those targeting interferons and other immune factors are associated with adverse coronavirus disease 2019 (COVID-19) outcomes. Here we discovered that antibodies against specific chemokines were omnipresent post-COVID-19, were associated with favorable disease outcome and negatively correlated with the development of long COVID at 1 yr post-infection. Chemokine antibodies were also present in HIV-1 infection and autoimmune disorders, but they targeted different chemokines compared with COVID-19. Monoclonal antibodies derived from COVID-19 convalescents that bound to the chemokine N-loop impaired cell migration. Given the role of chemokines in orchestrating immune cell trafficking, naturally arising chemokine antibodies may modulate the inflammatory response and thus bear therapeutic potential.