- Research Article
- 10.1016/j.peptides.2026.171479
EPI-X4 is a peptide antagonist of CXCR4 with therapeutic prospects for cancer and inflammatory disorders.
- Mar 01, 2026
- Peptides
- Micah N Sagini + 4 more +4
Publications from 2021 to 2026
Showing 5 of 5 papers
EPI-X4 is a peptide antagonist of CXCR4 with therapeutic prospects for cancer and inflammatory disorders.
Long-term antimicrobial trends in people living with chronic lung disease: An AMR-Lung ERS clinical research collaborative proof-of-concept study
<bold>Background:</bold> In this study, AMR-LUNG (an ERS clinical research collaborative) explored the ability of routinely collected antibiotic susceptibility testing (AST) to map AMR dynamics in people living with chronic lung disease. <bold>Methods:</bold> Retrospective analysis of AST results in sputum samples in two large respiratory services in the UK (Adult CF centre and a community respiratory service). Data were available for 2017-2023. <bold>Results:</bold> Data were available for 17,821 sputum samples positive for <italic>P. aeruginosa</italic>, <italic>H. influenzae</italic> or <italic>M. catarrhalis</italic>. Overall antibiotic resistance dynamics were divergent between pathogens, Fig 1. For example, <italic>M. catarrhalis</italic> resistance was stable (Fig 1B), whereas <italic>H. influenzae</italic> resistance to amoxicillin-clavulanic acid increased between 2017 and 2023 (Fig 1D). For <italic>P. aeruginosa</italic>, resistance was generally increasing in people living with CF (Fig 1A) but was stable those with bronchiectasis or COPD (Fig 1C) (MAR index 0.33 to 0.43 and 0.09 to 0.08 respectively for 2018-22) <bold>Conclusion:</bold> We identified distinct AMR trajectories associated with different pathogens in people living with CF, bronchiectasis and COPD. These data provide proof-of-concept for readily available microbiology data-sources to provide informative longitudinal resistance trends in key respiratory pathogens. This approach could provide the basis for international mapping of respiratory-relevant AMR. <fig><object-id>erj;64/suppl_68/PA4193/F1</object-id><object-id>F1</object-id><object-id>F1</object-id><graphic></graphic></fig>
Read moreAsKC11, a Kunitz Peptide from Anemonia sulcata, Is a Novel Activator of G Protein-Coupled Inward-Rectifier Potassium Channels
(1) Background: G protein-coupled inward-rectifier potassium (GIRK) channels, especially neuronal GIRK1/2 channels, have been the focus of intense research interest for developing drugs against brain diseases. In this context, venom peptides that selectively activate GIRK channels can be seen as a new source for drug development. Here, we report on the identification and electrophysiological characterization of a novel activator of GIRK1/2 channels, AsKC11, found in the venom of the sea anemone Anemonia sulcata. (2) Methods: AsKC11 was purified from the sea anemone venom by reverse-phase chromatography and the sequence was identified by mass spectrometry. Using the two-electrode voltage-clamp technique, the activity of AsKC11 on GIRK1/2 channels was studied and its selectivity for other potassium channels was investigated. (3) Results: AsKC11, a Kunitz peptide found in the venom of A. sulcata, is the first peptide shown to directly activate neuronal GIRK1/2 channels independent from Gi/o protein activity, without affecting the inward-rectifier potassium channel (IRK1) and with only a minor effect on KV1.6 channels. Thus, AsKC11 is a novel activator of GIRK channels resulting in larger K+ currents because of an increased chord conductance. (4) Conclusions: These discoveries provide new insights into a novel class of GIRK activators.
Read moreNatural Cystatin C fragments inhibit GPR15-mediated HIV and SIV infection without interfering with GPR15L signaling
SUMMARYGPR15 is a G protein-coupled receptor proposed to play a role in mucosal immunity that also serves as entry cofactor for HIV and SIV. To discover novel endogenous GPR15 ligands, we screened a hemofiltrate-derived peptide library for inhibitors of GPR15-mediated SIV infection. Our approach identified a C-terminal fragment of Cystatin C (CysC95-146) that specifically inhibits GPR15-dependent HIV-1, HIV-2 and SIV infection. In contrast, GPR15L, the chemokine ligand of GPR15, failed to inhibit virus infection. We found that Cystatin C fragments preventing GPR15-mediated viral entry do not interfere with GPR15L signaling and are generated by proteases activated at sites of inflammation. The antiretroviral activity of CysC95-146 was confirmed in primary CD4+ T cells and is conserved in simian hosts of SIV infection. Thus, we identified a potent endogenous inhibitor of GPR15-mediated HIV and SIV infection that does not interfere with the physiological function of this G protein-coupled receptor.
Read moreA Placenta Derived C-Terminal Fragment of β-Hemoglobin With Combined Antibacterial and Antiviral Activity.
The placenta acts as physical and immunological barrier against the transmission of viruses and bacteria from mother to fetus. However, the specific mechanisms by which the placenta protects the developing fetus from viral and bacterial pathogens are poorly understood. To identify placental peptides and small proteins protecting from viral and bacterial infections, we generated a peptide library from 10 kg placenta by chromatographic means. Screening the resulting 250 fractions against Herpes-Simplex-Virus 2 (HSV-2), which is rarely transmitted through the placenta, in a cell-based system identified two adjacent fractions with significant antiviral activity. Further rounds of chromatographic purification and anti-HSV-2 testing allowed to purify the bioactive peptide. Mass spectrometry revealed the presence of a 36-mer derived from the C-terminal region of the hemoglobin β subunit. The purified and corresponding chemically synthesized peptide, termed HBB(112–147), inhibited HSV-2 infection in a dose-dependent manner, with a mean IC50 in the median μg/ml range. Full-length hemoglobin tetramer had no antiviral activity. HBB(112–147) did not impair infectivity by direct targeting of the virions but prevented HSV-2 infection at the cell entry level. The peptide was inactive against Human Immunodeficiency Virus Type 1, Rubella and Zika virus infection, suggesting a specific anti-HSV-2 mechanism. Notably, HBB(112–147) has previously been identified as broad-spectrum antibacterial agent. It is abundant in placenta, reaching concentrations between 280 and 740 μg/ml, that are well sufficient to inhibit HSV-2 and prototype Gram-positive and -negative bacteria. We here additionally show, that HBB(112–147) also acts potently against Pseudomonas aeruginosa strains (including a multi-drug resistant strain) in a dose dependent manner, while full-length hemoglobin is inactive. Interestingly, the antibacterial activity of HBB(112–147) was increased under acidic conditions, a hallmark of infection and inflammatory conditions. Indeed, we found that HBB(112–147) is released from the hemoglobin precursor by Cathepsin D and Napsin A, acidic proteases highly expressed in placental and other tissues. We propose that upon viral or bacterial infection, the abundant hemoglobin precursor is proteolytically processed to release HBB(112–147), a broadly active antimicrobial innate immune defense peptide.
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