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1.
BMC Microbiol ; 24(1): 55, 2024 Feb 10.
Article in English | MEDLINE | ID: mdl-38341536

ABSTRACT

BACKGROUND: The emergence of carbapenem-resistant and extensively drug-resistant (XDR) Acinetobacter baumannii as well as inadequate effective antibiotics calls for an urgent effort to find new antibacterial agents. The therapeutic efficacy of two human scFvs, EB211 and EB279, showing growth inhibitory activity against A. baumannii in vitro, was investigated in immunocompromised mice with A. baumannii pneumonia. RESULTS: The data revealed that infected mice treated with EB211, EB279, and a combination of the two scFvs showed better survival, reduced bacterial load in the lungs, and no marked pathological abnormalities in the kidneys, liver, and lungs when compared to the control groups receiving normal saline or an irrelevant scFv. CONCLUSIONS: The results from this study suggest that the scFvs with direct growth inhibitory activity could offer promising results in the treatment of pneumonia caused by XDR A. baumannii.


Subject(s)
Acinetobacter Infections , Acinetobacter baumannii , Pneumonia , Single-Chain Antibodies , Humans , Animals , Mice , Single-Chain Antibodies/pharmacology , Single-Chain Antibodies/therapeutic use , Acinetobacter Infections/drug therapy , Acinetobacter Infections/microbiology , Anti-Bacterial Agents/pharmacology , Anti-Bacterial Agents/therapeutic use , Pneumonia/drug therapy , Pneumonia/microbiology , Drug Resistance, Multiple, Bacterial , Microbial Sensitivity Tests
2.
J Immunol Res ; 2024: 1804038, 2024.
Article in English | MEDLINE | ID: mdl-39156005

ABSTRACT

The advancement of genetic engineering has revolutionized the field of immunology by allowing the utilization of intrinsic antibody structures. One of the biologics that are being produced by recombinant antibody technology is single-chain fragments variable (scFv). Genes of variable regions, the heavy and light chains that are genetically linked into a single transcript by a short flexible linker peptide, are used to generate this fragment from cellular and synthetic libraries. The specificity and affinity of these molecules are comparable to those of parental antibodies. Fusion with marker proteins and other potent molecules improves their stability, circulation half-life, activity, and efficient purification. Besides, this review comprises construction protocols, therapeutics, and diagnostic applications of scFv, as well as related challenges. Nonetheless, there are still issues with efficacy, stability, safety, intracellular administration, and production costs that need to be addressed.


Subject(s)
Biological Products , Single-Chain Antibodies , Humans , Single-Chain Antibodies/immunology , Single-Chain Antibodies/therapeutic use , Single-Chain Antibodies/genetics , Biological Products/therapeutic use , Animals , Genetic Engineering , Protein Engineering
3.
Int Immunopharmacol ; 136: 112273, 2024 Jul 30.
Article in English | MEDLINE | ID: mdl-38810311

ABSTRACT

Cholangiocarcinoma (CCA) presents a significant clinical challenge which is often identified in advanced stages, therby restricting the effectiveness of surgical interventions for most patients. The high incidence of cancer recurrence and resistance to chemotherapy further contribute to a bleak prognosis and low survival rates. To address this pressing need for effective therapeutic strategies, our study focuses on the development of an innovative cellular immunotherapy, specifically utilizing chimeric antigen receptor (CAR)-engineered natural killer (NK) cells designed to target the cMET receptor tyrosine kinase. In this investigation, we initiated the screening of a phage library displaying human single-chain variable fragment (ScFv) to identify novel ScFv molecules with specificity for cMET. Remarkably, ScFv11, ScFv72, and ScFv114 demonstrated exceptional binding affinity, confirmed by molecular docking analysis. These selected ScFvs, in addition to the well-established anti-cMET ScFvA, were integrated into a CAR cassette harboring CD28 transmembrane region-41BB-CD3ζ domains. The resulting anti-cMET CAR constructs were transduced into NK-92 cells, generating potent anti-cMET CAR-NK-92 cells. To assess the specificity and efficacy of these engineered cells, we employed KKU213A cells with high cMET expression and KKU055 cells with low cMET levels. Notably, co-culture of anti-cMET CAR-NK-92 cells with KKU213A cells resulted in significantly increased cell death, whereas no such effect was observed with KKU055 cells. In summary, our study identified cMET as a promising therapeutic target for CCA. The NK-92 cells, armed with the anti-cMET CAR molecule, have shown strong ability to kill cancer cells specifically, indicating their potential as a promising treatment for CCA in the future.


Subject(s)
Bile Duct Neoplasms , Cholangiocarcinoma , Killer Cells, Natural , Proto-Oncogene Proteins c-met , Receptors, Chimeric Antigen , Single-Chain Antibodies , Humans , Single-Chain Antibodies/genetics , Single-Chain Antibodies/therapeutic use , Single-Chain Antibodies/immunology , Cholangiocarcinoma/therapy , Cholangiocarcinoma/immunology , Receptors, Chimeric Antigen/immunology , Receptors, Chimeric Antigen/genetics , Receptors, Chimeric Antigen/metabolism , Killer Cells, Natural/immunology , Cell Line, Tumor , Bile Duct Neoplasms/therapy , Bile Duct Neoplasms/immunology , Proto-Oncogene Proteins c-met/metabolism , Proto-Oncogene Proteins c-met/immunology , Immunotherapy, Adoptive/methods , Immunotherapy/methods , Precision Medicine
4.
Theranostics ; 14(8): 3267-3281, 2024.
Article in English | MEDLINE | ID: mdl-38855181

ABSTRACT

Background: Myocardial infarction (MI) as a consequence of atherosclerosis-associated acute thrombosis is a leading cause of death and disability globally. Antiplatelet and anticoagulant drugs are standard therapies in preventing and treating MI. However, all clinically used drugs are associated with bleeding complications, which ultimately limits their use in patients with a high risk of bleeding. We have developed a new recombinant drug, targ-HSA-TAP, that combines targeting and specific inhibition of activated platelets as well as anticoagulation. This drug is designed and tested for a prolonged circulating half-life, enabling unique thromboprophylaxis without bleeding complications. Methods: Targ-HSA-TAP combines a single-chain antibody (scFv) that targets activated glycoprotein IIb/IIIa on activated platelets, human serum albumin (HSA) for prolonged circulation, and tick anticoagulant peptide (TAP) for coagulation FX inhibition. A non-binding scFv is employed as a non-targeting control (non-targ-HSA-TAP). Its efficacy was investigated in vivo using murine models of acute thrombosis and cardiac ischemia-reperfusion (I/R) injury. Results: Our experiments confirmed the targeting specificity of targ-HSA-TAP to activated platelets and demonstrated effective prevention of platelet aggregation and thrombus formation, as well as FXa inhibition in vitro. Thromboprophylactic administration of targ-HSA-TAP subcutaneously in mice prevented occlusion of the carotid artery after ferric chloride injury as compared to non-targ-HSA-TAP and PBS-control treated mice. By comparing the therapeutic outcomes between targ-TAP and targ-HSA-TAP, we demonstrate the significant improvements brought by the HSA fusion in extending the drug's half-life and enhancing its therapeutic window for up to 16 h post-administration. Importantly, tail bleeding time was not prolonged with targ-HSA-TAP in contrast to the clinically used anticoagulant enoxaparin. Furthermore, in a murine model of cardiac I/R injury, mice administered targ-HSA-TAP 10 h before injury demonstrated preserved cardiac function, with significantly higher ejection fraction and fractional shortening, as compared to the non-targ-HSA-TAP and PBS control groups. Advanced strain analysis revealed reduced myocardial deformation and histology confirmed a reduced infarct size in targ-HSA-TAP treated mice compared to control groups. Conclusion: The inclusion of HSA represents a significant advancement in the design of targeted therapeutic agents for thromboprophylaxis. Our activated platelet-targeted targ-HSA-TAP is a highly effective antithrombotic drug with both anticoagulant and antiplatelet effects while retaining normal hemostasis. The long half-life of targ-HSA-TAP provides the unique opportunity to use this antithrombotic drug for more effective, long-lasting and safer anti-thrombotic prophylaxis. In cases where MI occurs, this prophylactic strategy reduces thrombus burden and effectively reduces cardiac I/R injury.


Subject(s)
Blood Platelets , Hemorrhage , Serum Albumin, Human , Thrombosis , Animals , Mice , Thrombosis/prevention & control , Thrombosis/drug therapy , Humans , Hemorrhage/prevention & control , Blood Platelets/drug effects , Blood Platelets/metabolism , Disease Models, Animal , Male , Anticoagulants/pharmacology , Anticoagulants/therapeutic use , Single-Chain Antibodies/pharmacology , Single-Chain Antibodies/therapeutic use , Myocardial Reperfusion Injury/prevention & control , Myocardial Reperfusion Injury/drug therapy , Myocardial Infarction/drug therapy , Mice, Inbred C57BL , Recombinant Fusion Proteins/pharmacology , Recombinant Fusion Proteins/therapeutic use
5.
Int Immunopharmacol ; 132: 111926, 2024 May 10.
Article in English | MEDLINE | ID: mdl-38552297

ABSTRACT

Mortality due to malignant tumors is one of the major factors affecting the life expectancy of the global population. Therapeutic antibodies are a cutting-edge treatment method for restricting tumor growth. B7-H3 is highly expressed in tumor tissues, but rarely in normal tissues. B7-H3 is closely associated with poor prognosis in patients with tumors. B7-H3 is an important target for antitumor therapy. In this study, the fully human anti-B7H3 single-chain antibodies (scFvs) were isolated and screened from the fully human phage immune library with B7H3 as the target. The antibodies screened from a fully human phage library had low immunogenicity and high affinity, which was more beneficial for clinical application. Leveraging B7-H3 scFvs as a foundation, we constructed two distinct recombinant antibody formats, scFv-Fc and IgG1, characterized by elevated affinity and a prolonged half-life. The results demonstrated that the recombinant antibodies had high specificity and affinity for the B7-H3 antigen and inhibited tumor cell growth by enhancing the ADCC. After treatment with anti-B7H3 recombinant antibody, the number of infiltrating T cells in the tumor increased and the secretion of IFN- γ by infiltrating T cells increased in vivo. Additionally, the use of pleural fluid samples obtained from tumor-afflicted patients revealed the ability of anti-B7-H3 recombinant antibodies to reverse CD8+ T cell exhaustion. In summary, we screened the fully human anti-B7H3 recombinant antibodies with specificity and high affinity that increase immune cell infiltration and IFN-γ secretion, thereby inhibiting tumor cell growth to a certain extent. This finding provides a theoretical basis for the development of therapeutic tumor antibodies and could help promote further development of antibody-based drugs.


Subject(s)
B7 Antigens , Single-Chain Antibodies , B7 Antigens/immunology , B7 Antigens/metabolism , B7 Antigens/genetics , B7 Antigens/antagonists & inhibitors , Humans , Animals , Single-Chain Antibodies/genetics , Single-Chain Antibodies/immunology , Single-Chain Antibodies/pharmacology , Single-Chain Antibodies/therapeutic use , Cell Line, Tumor , Mice , Female , T-Lymphocytes/immunology , Lymphocytes, Tumor-Infiltrating/immunology , Antineoplastic Agents, Immunological/pharmacology , Antineoplastic Agents, Immunological/therapeutic use , Recombinant Proteins/immunology , Recombinant Proteins/therapeutic use , Mice, Inbred C57BL , Male , Neoplasms/immunology , Neoplasms/therapy , Neoplasms/drug therapy , Interferon-gamma/metabolism , Interferon-gamma/immunology , Antibody-Dependent Cell Cytotoxicity
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