Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 20 de 46
Filter
Add more filters

Country/Region as subject
Publication year range
1.
Int J Mol Sci ; 25(2)2024 Jan 10.
Article in English | MEDLINE | ID: mdl-38255961

ABSTRACT

mRNA vaccines have been shown to be effective in combating the COVID-19 pandemic. The amount of research on the use of mRNAs as preventive and therapeutic modalities has undergone explosive growth in the last few years. Nonetheless, the issue of the stability of mRNA molecules and their translation efficiency remains incompletely resolved. These characteristics of mRNA directly affect the expression level of a desired protein. Regulatory elements of RNA-5' and 3' untranslated regions (UTRs)-are responsible for translation efficiency. An optimal combination of the regulatory sequences allows mRNA to significantly increase the target protein's expression. We assessed the translation efficiency of mRNA encoding of firefly luciferase with various 5' and 3'UTRs in vitro on cell lines DC2.4 and THP1. We found that mRNAs containing 5'UTR sequences from eukaryotic genes HBB, HSPA1A, Rabb, or H4C2, or from the adenoviral leader sequence TPL, resulted in higher levels of luciferase bioluminescence 4 h after transfection of DC2.4 cells as compared with 5'UTR sequences used in vaccines mRNA-1273 and BNT162b2 from Moderna and BioNTech. mRNA containing TPL as the 5'UTR also showed higher efficiency (as compared with the 5'UTR from Moderna) at generating a T-cell response in mice immunized with mRNA vaccines encoding a multiepitope antigen. By contrast, no effects of various 5'UTRs and 3'UTRs were detectable in THP1 cells, suggesting that the observed effects are cell type specific. Further analyses enabled us to identify potential cell type-specific RNA-binding proteins that differ in landing sites within mRNAs with various 5'UTRs and 3'UTRs. Taken together, our data indicate high translation efficiency of TPL as a 5'UTR, according to experiments on DC2.4 cells and C57BL/6 mice.


Subject(s)
Blood Group Antigens , Tuberculosis , Mice , Animals , Humans , Mice, Inbred C57BL , mRNA Vaccines , 5' Untranslated Regions/genetics , 3' Untranslated Regions/genetics , BNT162 Vaccine , Pandemics , RNA, Messenger/genetics
2.
Biochemistry (Mosc) ; 88(12): 2157-2178, 2023 Dec.
Article in English | MEDLINE | ID: mdl-38462459

ABSTRACT

Throughout the years, several hundred million people with rare genetic disorders have been receiving only symptom management therapy. However, research and development efforts worldwide have led to the development of long-lasting, highly efficient, and safe gene therapy for a wide range of hereditary diseases. Improved viral vectors are now able to evade the preexisting immunity and more efficiently target and transduce therapeutically relevant cells, ensuring genome maintenance and expression of transgenes at the relevant levels. Hematological, ophthalmological, neurodegenerative, and metabolic therapeutic areas have witnessed successful treatment of hemophilia and muscular dystrophy, restoration of immune system in children with immunodeficiencies, and restoration of vision. This review focuses on three leading vector platforms of the past two decades: adeno-associated viruses (AAVs), adenoviruses (AdVs), and lentiviruses (LVs). Special attention is given to successful preclinical and clinical studies that have led to the approval of gene therapies: six AAV-based (Glybera® for lipoprotein lipase deficiency, Luxturna® for retinal dystrophy, Zolgensma® for spinal muscular atrophy, Upstaza® for AADC, Roctavian® for hemophilia A, and Hemgenix® for hemophilia B) and three LV-based (Libmeldy® for infantile metachromatic leukodystrophy, Zynteglo® for ß-thalassemia, and Skysona® for ALD). The review also discusses the problems that arise in the development of gene therapy treatments, which, nevertheless, do not overshadow the successes of already developed gene therapies and the hope these treatments give to long-suffering patients and their families.


Subject(s)
Genetic Therapy , Hemophilia A , Child , Humans , Genetic Vectors , Hemophilia A/genetics , Hemophilia A/therapy , Transgenes
3.
Int J Mol Sci ; 24(19)2023 Oct 01.
Article in English | MEDLINE | ID: mdl-37834268

ABSTRACT

Advances in molecular biology have revolutionized the use of messenger RNA (mRNA) as a therapeutic. The concept of nucleic acid therapy with mRNA originated in 1990 when Wolff et al. reported successful expression of proteins in target organs by direct injection of either plasmid DNA or mRNA. It took decades to bring the transfection efficiency of mRNA closer to that of DNA. The next few decades were dedicated to turning in vitro-transcribed (IVT) mRNA from a promising delivery tool for gene therapy into a full-blown therapeutic modality, which changed the biotech market rapidly. Hundreds of clinical trials are currently underway using mRNA for prophylaxis and therapy of infectious diseases and cancers, in regenerative medicine, and genome editing. The potential of IVT mRNA to induce an innate immune response favors its use for vaccination and immunotherapy. Nonetheless, in non-immunotherapy applications, the intrinsic immunostimulatory activity of mRNA directly hinders the desired therapeutic effect since it can seriously impair the target protein expression. Targeting the same innate immune factors can increase the effectiveness of mRNA therapeutics for some indications and decrease it for others, and vice versa. The review aims to present the innate immunity-related 'barriers' or 'springboards' that may affect the development of immunotherapies and non-immunotherapy applications of mRNA medicines.


Subject(s)
DNA , Neoplasms , Humans , RNA, Messenger/genetics , RNA, Messenger/therapeutic use , Immunotherapy , Neoplasms/genetics , Neoplasms/therapy , Immunity, Innate , Immune System/metabolism
4.
Int J Mol Sci ; 25(1)2023 Dec 22.
Article in English | MEDLINE | ID: mdl-38203382

ABSTRACT

Anti-cancer therapy based on oncolytic viruses (OVs) is a targeted approach that takes advantage of OVs' ability to selectively infect and replicate in tumor cells, activate the host immune response, and destroy malignant cells over healthy ones. Vesicular stomatitis virus (VSV) is known for its wide range of advantages: a lack of pre-existing immunity, a genome that is easily amenable to manipulation, and rapid growth to high titers in a broad range of cell lines, to name a few. VSV-induced tumor immunity can be enhanced by the delivery of immunostimulatory cytokines. The targeted cytokine delivery to tumors avoids the significant toxicity associated with systemic delivery while also boosting the immune response. To demonstrate this enhanced effect on both tumor growth and survival, a novel recombinant VSV (rVSV)-mIL12-mGMCSF, co-expressing mouse IL-12 (interleukin-12) and GM-CSF (granulocyte-macrophage colony-stimulating factor), was tested alongside rVSV-dM51-GFP (rVSV-GFP) that was injected intratumorally in a syngeneic in vivo C57BL/6 mouse model infused subcutaneously with B16-F10 melanoma cells. The pilot study tested the effect of two viral injections 4 days apart and demonstrated that treatment with the two rVSVs resulted in partial inhibition of tumor growth (TGII of around 40%) and an increased survival rate in animals from the treatment groups. The effect of the two VSVs on immune cell populations will be investigated in future in vivo studies with an optimized experimental design with multiple higher viral doses, as a lack of this information presents a limitation of this study.


Subject(s)
Immunotherapy , Melanoma, Experimental , Animals , Mice , Mice, Inbred C57BL , Pilot Projects , Immunization , Cytokines , Interleukin-12/genetics , Melanoma, Experimental/therapy
5.
Int J Mol Sci ; 24(22)2023 Nov 15.
Article in English | MEDLINE | ID: mdl-38003521

ABSTRACT

Over the past decades, the problem of bacterial resistance to most antibiotics has become a serious threat to patients' survival. Nevertheless, antibiotics of a novel class have not been approved since the 1980s. The development of antibiotic potentiators is an appealing alternative to the challenging process of searching for new antimicrobials. Production of H2S-one of the leading defense mechanisms crucial for bacterial survival-can be influenced by the inhibition of relevant enzymes: bacterial cystathionine γ-lyase (bCSE), bacterial cystathionine ß-synthase (bCBS), or 3-mercaptopyruvate sulfurtransferase (MST). The first one makes the main contribution to H2S generation. Herein, we present data on the synthesis, in silico analyses, and enzymatic and microbiological assays of novel bCSE inhibitors. Combined molecular docking and molecular dynamics analyses revealed a novel binding mode of these ligands to bCSE. Lead compound 2a manifested strong potentiating activity when applied in combination with some commonly used antibiotics against multidrug-resistant Acinetobacter baumannii, Pseudomonas aeruginosa, and methicillin-resistant Staphylococcus aureus. The compound was found to have favorable in vitro absorption, distribution, metabolism, excretion, and toxicity parameters. The high effectiveness and safety of compound 2a makes it a promising candidate for enhancing the activity of antibiotics against high-priority pathogens.


Subject(s)
Hydrogen Sulfide , Methicillin-Resistant Staphylococcus aureus , Humans , Anti-Bacterial Agents/pharmacology , Hydrogen Sulfide/metabolism , Cystathionine gamma-Lyase/metabolism , Methicillin-Resistant Staphylococcus aureus/metabolism , Pyrroles/pharmacology , Molecular Docking Simulation , Bacteria/metabolism , Indoles/pharmacology , Cystathionine beta-Synthase/metabolism
6.
Int J Mol Sci ; 25(1)2023 Dec 20.
Article in English | MEDLINE | ID: mdl-38203266

ABSTRACT

UDP-3-O-(R-3-hydroxymyristoyl)-N-acetylglucosamine deacetylase (LpxC) is a zinc amidase that catalyzes the second step of the biosynthesis of lipid A, which is an outer membrane essential structural component of Gram-negative bacteria. Inhibitors of this enzyme can be attributed to two main categories, non-hydroxamate and hydroxamate inhibitors, with the latter being the most effective given the chelation of Zn2+ in the active site. Compounds containing diacetylene or acetylene tails and the sulfonic head, as well as oxazoline derivatives of hydroxamic acids, are among the LpxC inhibitors with the most profound antibacterial activity. The present article describes the synthesis of novel functional derivatives of hydroxamic acids-bioisosteric to oxazoline inhibitors-containing 1,2,4- and 1,3,4-oxadiazole cores and studies of their cytotoxicity, antibacterial activity, and antibiotic potentiation. Some of the hydroxamic acids we obtained (9c, 9d, 23a, 23c, 30b, 36) showed significant potentiation in nalidixic acid, rifampicin, and kanamycin against the growth of laboratory-strain Escherichia coli MG1655. Two lead compounds (9c, 9d) significantly reduced Pseudomonas aeruginosa ATCC 27853 growth in the presence of nalidixic acid and rifampicin.


Subject(s)
Anti-Bacterial Agents , Hydroxamic Acids , Oxadiazoles , Anti-Bacterial Agents/pharmacology , Hydroxamic Acids/pharmacology , Nalidixic Acid , Rifampin , Escherichia coli
7.
BMC Cancer ; 20(1): 783, 2020 Aug 20.
Article in English | MEDLINE | ID: mdl-32819305

ABSTRACT

BACKGROUND: BCD-022 is a trastuzumab biosimilar which was shown to be equivalent to reference trastuzumab in a wide panel of physicochemical studies as well as preclinical studies in vitro and in vivo. International multicenter phase III clinical trial was conducted to comparatively assess efficacy and safety of BCD-022 and reference trastuzumab in combination with paclitaxel used as the therapy of metastatic HER2(+) breast cancer. Pharmacokinetics and immunogenicity were also studied. METHODS: Patients with no previous treatment for metastatic HER2(+) breast cancer were randomly assigned 1:1 to BCD-022 or reference trastuzumab and were treated with trastuzumab + paclitaxel. Therapy continued for 6 cycles of therapy (every 3 weeks), until progression of the disease or unbearable toxicity. Primary study endpoint was overall response rate. Study goal was to prove equivalent efficacy of BCD-022 and reference trastuzumab. Equivalence margins for 95% CI for difference in overall response rates were set at [- 20%; 20%]. RESULTS: In total 225 patients were enrolled into the study, 115 in BCD-022 arm and 110 in reference trastuzumab arm. Overall response rate was 49.6% in BCD-022 arm and 43.6% in reference trastuzumab arm. Limits of 95% CI for difference of overall response rates between arms were [(- 8.05)-19.89%], thus, they lied within predetermined equivalence margins [- 20%; 20%]. Profile of adverse events was similar between groups (any AEs were reported in 93.81% of patients in BCD-022 arm and 94.55% of patients in reference arm). No unexpected adverse reactions were reported throughout the study. No statistically significant differences regarding antibody occurrence rate (either BAb or NAb) was found between BCD-022 (n = 3; 2.65%) and comparator (n = 4; 3.64%). Both drug products are characterized with low occurrence rate and short life of anti-trastuzumab antibodies. Pharmacokinetics assessment after 1st and 6th study drug injection also demonstrated equivalent PK parameters by all outcome measures: AUC0-504, Сmах, Тmax, T1/2. Analysis of Ctrough did not reveal any significant inter-group differences as well. CONCLUSIONS: Thus, results of this study have demonstrated therapeutic equivalence of trastuzumab biosimilar BCD-022 and referent trastuzumab drug. TRIAL REGISTRATION: The trial was registered with ClinicalTrials.gov (Study Number NCT01764022 ). The date of registration was January 9, 2013.


Subject(s)
Antineoplastic Combined Chemotherapy Protocols/administration & dosage , Biosimilar Pharmaceuticals/administration & dosage , Breast Neoplasms/drug therapy , Trastuzumab/administration & dosage , Adult , Aged , Antineoplastic Combined Chemotherapy Protocols/adverse effects , Antineoplastic Combined Chemotherapy Protocols/pharmacokinetics , Area Under Curve , Biosimilar Pharmaceuticals/adverse effects , Biosimilar Pharmaceuticals/pharmacokinetics , Breast/diagnostic imaging , Breast/pathology , Breast Neoplasms/diagnosis , Breast Neoplasms/pathology , Dose-Response Relationship, Drug , Double-Blind Method , Drug Administration Schedule , Female , Humans , Middle Aged , Paclitaxel/administration & dosage , Paclitaxel/adverse effects , Receptor, ErbB-2/antagonists & inhibitors , Receptor, ErbB-2/metabolism , Response Evaluation Criteria in Solid Tumors , Therapeutic Equivalency , Tomography, X-Ray Computed , Trastuzumab/adverse effects , Trastuzumab/pharmacokinetics , Young Adult
8.
Hematol Oncol ; 38(1): 67-73, 2020 Feb.
Article in English | MEDLINE | ID: mdl-31724191

ABSTRACT

BCD-020 is a proposed rituximab biosimilar, which has shown high similarity to rituximab in quality and nonclinical studies in vitro and in vivo. International multicenter clinical trial was conducted to compare efficacy and safety of BCD-020 and reference rituximab in adult (older than 18 years) patients with indolent lymphomas (follicular lymphoma grade 1-2, splenic marginal zone lymphoma, and nodal marginal zone lymphoma). Pharmacokinetics, pharmacodynamics, and immunogenicity were also studied. Patients with no previous biologic treatment for lymphoma were randomly assigned 1:1 to receive BCD-020 or comparator 375 mg/m2 for 4 weeks. Primary study outcome was day 50 overall response rate defined as complete or partial remission. Equivalence range was -20% to 20% for 95% CI for overall response rates difference. Secondary outcomes included adverse events, pharmacokinetics, pharmacodynamics, and immunogenicity. One hundred seventy-four patients were enrolled, 89 in BCD-020 arm and 85 in comparator arm. The overall response rate was 44.71% in BCD-020 arm and 41.89% in comparator arm. Limits of 95% confidence interval (CI) for difference of overall response rates between arms were (-12.62%-18.24%) showing equivalent efficacy. Sixty-one (68.54%) and 59 (69.41%) patients had at least one adverse event in BCD-020 arm or comparator arm, respectively. No unexpected adverse reactions were reported. Antidrug antibodies with no neutralizing activity were detected in two patients in comparator arm on day 14 further declining below detection threshold. Rituximab concentrations had equivalent pattern after intravenous administration of both drugs. Both drugs caused depletion of B-cells without significant influence on other blood cell lineages. In this study, we showed equivalent efficacy of BCD-020 and reference rituximab when used in patients with CD20-positive indolent lymphomas. We also confirmed pharmacokinetic equivalence of BCD-020 and reference rituximab. Safety profile, pharmacodynamics, and immunogenicity of BCD-020 were also comparable with those of reference rituximab.


Subject(s)
Antineoplastic Agents, Immunological/therapeutic use , Biosimilar Pharmaceuticals/therapeutic use , Lymphoma, B-Cell, Marginal Zone/drug therapy , Lymphoma, Follicular/drug therapy , Rituximab/therapeutic use , Aged , Antineoplastic Agents, Immunological/pharmacokinetics , Biosimilar Pharmaceuticals/pharmacokinetics , Female , Follow-Up Studies , Humans , International Agencies , Lymphoma, B-Cell, Marginal Zone/metabolism , Lymphoma, B-Cell, Marginal Zone/pathology , Lymphoma, Follicular/metabolism , Lymphoma, Follicular/pathology , Male , Middle Aged , Prognosis , Rituximab/pharmacokinetics , Tissue Distribution
9.
Clin Exp Rheumatol ; 38(1): 27-34, 2020.
Article in English | MEDLINE | ID: mdl-31025924

ABSTRACT

OBJECTIVES: Netakimab (NTK) is a humanised monoclonal antibody targeting interleukin-17A, previously investigated in a phase 1 trial in healthy volunteers. Here, we report the results of a phase 2 trial, conducted to assess safety and pharmacokinetics (PK), to establish a therapeutic dose of NTK in a target population of patients with active ankylosing spondylitis (AS). METHODS: 89 patients with active AS, despite non-steroidal anti-inflammatory (NSAID) drug treatment, were randomised to receive 40, 80 or 120 mg of subcutaneous NTK or placebo at weeks 0, 1, 2 and q2wk thereafter until week 12. The primary endpoint was to achieve a proportion of patients with ≥20% improvement in Assessment of Spondyloarthritis. RESULTS: Rates of ASAS20 response at week 16 for NTK with 95%CI for difference in ASAS20 rates NTK vs. placebo were 72.73% [1.69%;58.05%], 81.82% [12.36%;65.56%], 90.91% [23.71%;72.39%] at doses of 40, 80 and 120 mg. The response rate in the placebo arm was 42.86%. The pre-specified margin of clinically non-meaningful difference was 10%. Superiority to placebo was confirmed for doses 80 and 120 mg. The most frequent adverse events (AEs) were lymphocytosis, neutropenia, and asymptomatic bacteriuria. No dose-dependent toxicity or serious adverse events (SAEs) were observed. The most effective dose with the fastest response onset and favourable safety profile was 120 mg. CONCLUSIONS: The data obtained demonstrate the efficacy and favourable safety profile of NTK in active AS. Clinical development of NTK will be continued in a phase 3 trial aimed to evaluate the efficacy of 1-year treatment with NTK 120 mg in patients with AS.


Subject(s)
Antibodies, Monoclonal, Humanized/therapeutic use , Interleukin-17/antagonists & inhibitors , Spondylitis, Ankylosing/therapy , Adult , Double-Blind Method , Humans , Treatment Outcome
10.
Rheumatol Int ; 39(9): 1537-1546, 2019 Sep.
Article in English | MEDLINE | ID: mdl-31292709

ABSTRACT

BCD-055 is a biosimilar of innovator infliximab (IFX). Here we present the 54-week results from phase 3 clinical study in patients with rheumatoid arthritis (RA). The aim of this study was to demonstrate the equivalent efficacy and safety of BCD-055 and IFX in patients with active rheumatoid arthritis. 426 adults with active RA were enrolled. Patients were randomized into 2 study arms in 2:1 ratio to receive BCD-055 or IFX innovator in dose of 3 mg/kg at week 0, 2, 6 and then every 8 weeks up to week 54. Primary efficacy endpoint was the rate of American College of Rheumatology (ACR) 20 response at week 14. The equivalence margin was set as 15%. Immunogenicity and safety were also assessed. Rate of ACR20 at week 14 in PP (Per-Protocol) population was 71.2% in BCD-055 group and 67.9% in IFX group. Difference in ACR20 rates between groups was 3.2% with 95% CI [- 7.0%; 13.5%] (р = 0.587). Throughout 54-week study period, both groups were characterized by similar rates of ACR20/50/70 response at all timepoints without significant differences (p > 0.05). The rates of adverse events (AE) were similar in groups (74.64% in BCD-055 arm vs 66.67% in IFX arm, p = 0.111). Antibodies to infliximab were detected in 28.46% patients for BCD-055 arm and 26.56% for IFX arm (p = 0.786). BCD-055 and IFX were comparable in efficacy (including radiographic progression), safety and immunogenicity throughout the 54-week study.Trial registration ClinicalTrials.gov ID, number NCT02762838.


Subject(s)
Antirheumatic Agents/therapeutic use , Arthritis, Rheumatoid/drug therapy , Biosimilar Pharmaceuticals/therapeutic use , Infliximab/therapeutic use , Adult , Antirheumatic Agents/adverse effects , Antirheumatic Agents/immunology , Arthritis, Rheumatoid/diagnosis , Arthritis, Rheumatoid/immunology , Biosimilar Pharmaceuticals/adverse effects , Disease Progression , Female , Humans , India , Infliximab/adverse effects , Infliximab/immunology , Male , Middle Aged , Remission Induction , Republic of Belarus , Russia , Therapeutic Equivalency , Time Factors , Treatment Outcome
11.
J Mater Sci Mater Med ; 25(3): 857-71, 2014 Mar.
Article in English | MEDLINE | ID: mdl-24297514

ABSTRACT

Cultivation and proliferation of stem cells in three-dimensional (3-D) scaffolds is a promising strategy for regenerative medicine. Mesenchymal stem cells with their potential to differentiate in various cell types, cryopreserved adhesion-based in fabricated scaffolds of biocompatible materials can serve as ready-to-use transplantation units for tissue repair, where pores allow a direct contact of graft cells and recipient tissue without further preparation. A successful cryopreservation of adherent cells depends on attachment and spreading processes that start directly after cell seeding. Here, we analyzed different cultivation times (0.5, 2, 24 h) prior to adhesion-based cryopreservation of human mesenchymal stem cells within alginate-gelatin cryogel scaffolds and its influence on cell viability, recovery and functionality at recovery times (0, 24, 48 h) in comparison to non-frozen control. Analysis with confocal laser scanning microscopy and scanning electron microscopy indicated that 2 h cultivation time enhanced cryopreservation success: cell number, visual cell contacts, membrane integrity, motility, as well as spreading were comparable to control. In contrast, cell number by short cultivation time (0.5 h) reduced dramatically after thawing and expanded cultivation time (24 h) decreased cell viability. Our results provide necessary information to enhance the production and to store ready-to-use transplantation units for application in bone, cartilage or skin regenerative therapy.


Subject(s)
Batch Cell Culture Techniques/instrumentation , Cryopreservation/methods , Guided Tissue Regeneration/instrumentation , Mesenchymal Stem Cells/cytology , Mesenchymal Stem Cells/physiology , Tissue Engineering/instrumentation , Tissue Scaffolds , Alginates/chemistry , Batch Cell Culture Techniques/methods , Cell Adhesion/physiology , Cell Culture Techniques/instrumentation , Cells, Cultured , Cryogels/chemistry , Equipment Design , Equipment Failure Analysis , Gelatin/chemistry , Glucuronic Acid/chemistry , Hexuronic Acids/chemistry , Humans , Regenerative Medicine/instrumentation
12.
ACS Infect Dis ; 10(6): 2127-2150, 2024 Jun 14.
Article in English | MEDLINE | ID: mdl-38771206

ABSTRACT

Antibiotic resistance is one of the most serious global health threats. Therefore, there is a need to develop antimicrobial agents with new mechanisms of action. Targeting of bacterial cystathionine γ-lyase (bCSE), an enzyme essential for bacterial survival, is a promising approach to overcome antibiotic resistance. Here, we described a series of (heteroarylmethyl)benzoic acid derivatives and evaluated their ability to inhibit bCSE or its human ortholog hCSE using known bCSE inhibitor NL2 as a lead compound. Derivatives bearing the 6-bromoindole group proved to be the most active, with IC50 values in the midmicromolar range, and highly selective for bCSE over hCSE. Furthermore, none of these compounds showed significant toxicity to HEK293T cells. The obtained data were rationalized by ligand-based and structure-based molecular modeling analyses. The most active compounds were also found to be an effective adjunct to several widely used antibacterial agents against clinically relevant antibiotic-resistant strains of such bacteria as Staphylococcus aureus, Klebsiella pneumoniae, and Pseudomonas aeruginosa. The most potent compounds, 3h and 3i, also showed a promising in vitro absorption, distribution, metabolism, and excretion (ADME) profile. Finally, compound 3i manifested potentiating activity in pneumonia, sepsis, and infected-wound in vivo models.


Subject(s)
Anti-Bacterial Agents , Cystathionine gamma-Lyase , Enzyme Inhibitors , Humans , Anti-Bacterial Agents/pharmacology , Anti-Bacterial Agents/chemical synthesis , Anti-Bacterial Agents/chemistry , Enzyme Inhibitors/pharmacology , Enzyme Inhibitors/chemistry , Enzyme Inhibitors/chemical synthesis , Cystathionine gamma-Lyase/antagonists & inhibitors , Cystathionine gamma-Lyase/metabolism , Animals , Microbial Sensitivity Tests , Models, Molecular , HEK293 Cells , Pseudomonas aeruginosa/drug effects , Pseudomonas aeruginosa/enzymology , Benzoates/pharmacology , Benzoates/chemistry , Benzoates/chemical synthesis , Mice , Staphylococcus aureus/drug effects , Klebsiella pneumoniae/drug effects , Structure-Activity Relationship
13.
Vaccines (Basel) ; 12(4)2024 Apr 02.
Article in English | MEDLINE | ID: mdl-38675761

ABSTRACT

SARS-CoV-2 variants have evolved over time in recent years, demonstrating immune evasion of vaccine-induced neutralizing antibodies directed against the original S protein. Updated S-targeted vaccines provide a high level of protection against circulating variants of SARS-CoV-2, but this protection declines over time due to ongoing virus evolution. To achieve a broader protection, novel vaccine candidates involving additional antigens with low mutation rates are currently needed. Based on our recently studied mRNA lipid nanoparticle (mRNA-LNP) platform, we have generated mRNA-LNP encoding SARS-CoV-2 structural proteins M, N, S from different virus variants and studied their immunogenicity separately or in combination in vivo. As a result, all mRNA-LNP vaccine compositions encoding the S and N proteins induced excellent titers of RBD- and N-specific binding antibodies. The T cell responses were mainly specific CD4+ T cell lymphocytes producing IL-2 and TNF-alpha. mRNA-LNP encoding the M protein did not show a high immunogenicity. High neutralizing activity was detected in the sera of mice vaccinated with mRNA-LNP encoding S protein (alone or in combinations) against closely related strains, but was undetectable or significantly lower against an evolutionarily distant variant. Our data showed that the addition of mRNAs encoding S and M antigens to mRNA-N in the vaccine composition enhanced the immunogenicity of mRNA-N and induced a more robust immune response to the N protein. Based on our results, we suggested that the S protein plays a key role in enhancing the immune response to the N protein when they are both encoded in the mRNA-LNP vaccine.

14.
Front Immunol ; 15: 1381508, 2024.
Article in English | MEDLINE | ID: mdl-38690272

ABSTRACT

Seasonal influenza remains a serious global health problem, leading to high mortality rates among the elderly and individuals with comorbidities. Vaccination is generally accepted as the most effective strategy for influenza prevention. While current influenza vaccines are effective, they still have limitations, including narrow specificity for certain serological variants, which may result in a mismatch between vaccine antigens and circulating strains. Additionally, the rapid variability of the virus poses challenges in providing extended protection beyond a single season. Therefore, mRNA technology is particularly promising for influenza prevention, as it enables the rapid development of multivalent vaccines and allows for quick updates of their antigenic composition. mRNA vaccines have already proven successful in preventing COVID-19 by eliciting rapid cellular and humoral immune responses. In this study, we present the development of a trivalent mRNA vaccine candidate, evaluate its immunogenicity using the hemagglutination inhibition assay, ELISA, and assess its efficacy in animals. We demonstrate the higher immunogenicity of the mRNA vaccine candidate compared to the inactivated split influenza vaccine and its enhanced ability to generate a cross-specific humoral immune response. These findings highlight the potential mRNA technology in overcoming current limitations of influenza vaccines and hold promise for ensuring greater efficacy in preventing seasonal influenza outbreaks.


Subject(s)
Immunity, Humoral , Influenza A Virus, H1N1 Subtype , Influenza Vaccines , Orthomyxoviridae Infections , mRNA Vaccines , Animals , Female , Humans , Mice , Cross Reactions/immunology , Enzyme-Linked Immunosorbent Assay , HEK293 Cells , Hemagglutinin Glycoproteins, Influenza Virus/immunology , Immunity, Humoral/immunology , Influenza A Virus, H1N1 Subtype/immunology , Influenza Vaccines/administration & dosage , Influenza Vaccines/chemistry , Influenza Vaccines/immunology , Influenza, Human/immunology , Influenza, Human/prevention & control , Influenza, Human/virology , Mice, Inbred BALB C , mRNA Vaccines/administration & dosage , mRNA Vaccines/chemistry , mRNA Vaccines/genetics , mRNA Vaccines/immunology , Seasons , Time Factors , Orthomyxoviridae Infections/immunology , Orthomyxoviridae Infections/prevention & control , Orthomyxoviridae Infections/virology
15.
Biomedicines ; 12(1)2023 Dec 26.
Article in English | MEDLINE | ID: mdl-38255166

ABSTRACT

Explosive developments in mRNA vaccine technology in the last decade have made it possible to achieve great success in clinical trials of mRNA vaccines to prevent infectious diseases and develop cancer treatments and mRNA-based gene therapy products. The approval of the mRNA-1273 and BNT162b2 mRNA vaccines against SARS-CoV-2 by the U.S. Food and Drug Administration has led to mass vaccination (with mRNA vaccines) of several hundred million people around the world, including children. Despite its effectiveness in the fight against COVID-19, rare adverse effects of the vaccination have been shown in some studies, including vascular microcirculation disorders and autoimmune and allergic reactions. The biodistribution of mRNA vaccines remains one of the most poorly investigated topics. This mini-review discussed the results of recent experimental studies on humans and rodents regarding the biodistribution of mRNA vaccines, their constituents (mRNA and lipid nanoparticles), and their encoded antigens. We focused on the dynamics of the biodistribution of mRNA vaccine products and on the possibility of crossing the blood-brain and blood-placental barriers as well as transmission to infants through breast milk. In addition, we critically assessed the strengths and weaknesses of the detection methods that have been applied in these articles, whose results' reliability is becoming a subject of debate.

16.
Biomolecules ; 13(11)2023 11 20.
Article in English | MEDLINE | ID: mdl-38002359

ABSTRACT

mRNA-based therapeutics have been found to be a promising treatment strategy in immunotherapy, gene therapy, and cancer treatments. Effectiveness of mRNA therapeutics depends on the level and duration of a desired protein's expression, which is determined by various cis- and trans-regulatory elements of the mRNA. Sequences of 5' and 3' untranslated regions (UTRs) are responsible for translational efficiency and stability of mRNA. An optimal combination of the regulatory sequences allows researchers to significantly increase the target protein's expression. Using both literature data and previously obtained experimental data, we chose six sequences of 5'UTRs (adenoviral tripartite leader [TPL], HBB, rabbit ß-globin [Rabb], H4C2, Moderna, and Neo2) and five sequences of 3'UTRs (mtRNR-EMCV, mtRNR-AES, mtRNR-mtRNR, BioNTech, and Moderna). By combining them, we constructed 30 in vitro transcribed RNAs encoding firefly luciferase with various combinations of 5'- and 3'UTRs, and the resultant bioluminescence was assessed in the DC2.4 cell line at 4, 8, 24, and 72 h after transfection. The cellular data enabled us to identify the best seven combinations of 5'- and 3'UTRs, whose translational efficiency was then assessed in BALB/c mice. Two combinations of 5'- and 3'UTRs (5'Rabb-3'mtRNR-EMCV and 5'TPL-3'Biontech) led to the most pronounced increase in the luciferase amount in the in vivo experiment in mice. Subsequent analysis of the stability of the mRNA indicated that the increase in luciferase expression is explained primarily by the efficiency of translation, not by the number of RNA molecules. Altogether, these findings suggest that 5'UTR-and-3'UTR combinations 5'Rabb-3'mtRNR- EMCV and 5'TPL-3'Biontech lead to high expression of target proteins and may be considered for use in preventive and therapeutic modalities based on mRNA.


Subject(s)
Protein Biosynthesis , Mice , Animals , Rabbits , RNA, Messenger/genetics , RNA, Messenger/metabolism , 3' Untranslated Regions , Transfection , 5' Untranslated Regions , Luciferases/genetics
17.
Front Pediatr ; 11: 1102354, 2023.
Article in English | MEDLINE | ID: mdl-37181420

ABSTRACT

Introduction: Epidermal barrier dysfunction in children with atopic dermatitis can cause transcutaneous sensitization to allergens and allergic diseases. We evaluated the effectiveness of an early-intervention algorithm for atopic dermatitis treatment, utilizing pimecrolimus for long-term maintenance therapy, in reducing transcutaneous sensitization in infants. Method: This was a single-center cohort observational study that enrolled children aged 1-4 months with family history of allergic diseases, moderate-to-severe atopic dermatitis, and sensitization to ≥ 1 of the investigated allergens. Patients who sought medical attention at atopic dermatitis onset (within 10 days) were group 1 "baseline therapy with topical glucocorticoids with subsequent transition to pimecrolimus as maintenance therapy"; patients who sought medical attention later were group 2 "baseline and maintenance therapy with topical glucocorticoids, without subsequent use of pimecrolimus". Sensitization class and level of allergen-specific immunoglobulin E were determined at baseline, and 6 and 12 months of age. Atopic dermatitis severity was evaluated using the Eczema Area and Severity Index score at baseline and 6, 9 and 12 months of age. Results: Fifty-six and 52 patients were enrolled in groups 1 and 2, respectively. Compared with group 2, group 1 demonstrated a lower level of sensitization to cow's milk protein, egg white and house dust mite allergen at 6 and 12 months of age, and a more pronounced decrease in atopic dermatitis severity at 6, 9 and 12 months of age. No adverse events occurred. Discussion: The pimecrolimus-containing algorithm was effective in treating atopic dermatitis and prophylaxis of early forms of allergic diseases in infants. Trial registration: https://clinicaltrials.gov/ NCT04900948, retrospectively registered, 25 May 2021.

18.
Nat Med ; 29(11): 2731-2736, 2023 Nov.
Article in English | MEDLINE | ID: mdl-37872223

ABSTRACT

Autoimmunity is intrinsically driven by memory T and B cell clones inappropriately targeted at self-antigens. Selective depletion or suppression of self-reactive T cells remains a holy grail of autoimmune therapy, but disease-associated T cell receptors (TCRs) and cognate antigenic epitopes remained elusive. A TRBV9-containing CD8+ TCR motif was recently associated with the pathogenesis of ankylosing spondylitis, psoriatic arthritis and acute anterior uveitis, and cognate HLA-B*27-presented epitopes were identified. Following successful testing in nonhuman primate models, here we report human TRBV9+ T cell elimination in ankylosing spondylitis. The patient achieved remission within 3 months and ceased anti-TNF therapy after 5 years of continuous use. Complete remission has now persisted for 4 years, with three doses of anti-TRBV9 administered per year. We also observed a profound improvement in spinal mobility metrics and the Bath Ankylosing Spondylitis Metrology Index (BASMI). This represents a possibly curative therapy of an autoimmune disease via selective depletion of a TRBV-defined group of T cells. The anti-TRBV9 therapy could potentially be applicable to other HLA-B*27-associated spondyloarthropathies. Such targeted elimination of the underlying cause of the disease without systemic immunosuppression could offer a new generation of safe and efficient therapies for autoimmunity.


Subject(s)
Spondylitis, Ankylosing , Humans , Epitopes , HLA-B Antigens , Immunotherapy , Receptors, Antigen, T-Cell/genetics , Receptors, Antigen, T-Cell/therapeutic use , Spondylitis, Ankylosing/drug therapy , T-Lymphocytes , Tumor Necrosis Factor Inhibitors/therapeutic use
19.
Biotechnol Adv ; 60: 108005, 2022 11.
Article in English | MEDLINE | ID: mdl-35690273

ABSTRACT

Gene and cell therapies are widely recognized as future cancer therapeutics but poor controllability limits their clinical applications. Optogenetics, the use of light-controlled proteins to precisely spatiotemporally regulate the activity of genes and cells, opens up new possibilities for cancer treatment. Light of specific wavelength can activate the immune response, oncolytic activity and modulate cell signaling in tumor cells non-invasively, in dosed manner, with tissue confined action and without side effects of conventional therapies. Here, we review optogenetic approaches in cancer research, their clinical potential and challenges of incorporating optogenetics in cancer therapy. We critically discuss beneficial combinations of optogenetic technologies with therapeutic nanobodies, T-cell activation and CAR-T cell approaches, genome editors and oncolytic viruses. We consider viral vectors and nanoparticles for delivering optogenetic payloads and activating light to tumors. Finally, we highlight herein the prospects for integrating optogenetics into immunotherapy as a novel, fast, reversible and safe approach to cancer treatment.


Subject(s)
Neoplasms , Single-Domain Antibodies , Genetic Vectors , Humans , Immunotherapy , Neoplasms/genetics , Neoplasms/therapy , Optogenetics
20.
Front Cell Dev Biol ; 10: 903812, 2022.
Article in English | MEDLINE | ID: mdl-35784464

ABSTRACT

Rare genetic diseases reduce quality of life and can significantly shorten the lifespan. There are few effective treatment options for these diseases, and existing therapeutic strategies often represent only supportive or palliative care. Therefore, designing genetic-engineering technologies for the treatment of genetic diseases is urgently needed. Rapid advances in genetic editing technologies based on programmable nucleases and in the engineering of gene delivery systems have made it possible to conduct several dozen successful clinical trials; however, the risk of numerous side effects caused by off-target double-strand breaks limits the use of these technologies in the clinic. Development of adenine-to-inosine (A-to-I) and cytosine-to-uracil (C-to-U) RNA-editing systems based on dCas13 enables editing at the transcriptional level without double-strand breaks in DNA. In this review, we discuss recent progress in the application of these technologies in in vitro and in vivo experiments. The main strategies for improving RNA-editing tools by increasing their efficiency and specificity are described as well. These data allow us to outline the prospects of base-editing systems for clinical application.

SELECTION OF CITATIONS
SEARCH DETAIL