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1.
Int J Mol Sci ; 24(4)2023 Feb 17.
Article in English | MEDLINE | ID: covidwho-2246813

ABSTRACT

The worldwide spread of COVID-19 continues to impact our lives and has led to unprecedented damage to global health and the economy. This highlights the need for an efficient approach to rapidly develop therapeutics and prophylactics against SARS-CoV-2. We modified a single-domain antibody, SARS-CoV-2 VHH, to the surface of the liposomes. These immunoliposomes demonstrated a good neutralizing ability, but could also carry therapeutic compounds. Furthermore, we used the 2019-nCoV RBD-SD1 protein as an antigen with Lip/cGAMP as the adjuvant to immunize mice. Lip/cGAMP enhanced the immunity well. It was demonstrated that the combination of RBD-SD1 and Lip/cGAMP was an effective preventive vaccine. This work presented potent therapeutic anti-SARS-CoV-2 drugs and an effective vaccine to prevent the spread of COVID-19.


Subject(s)
Antibodies, Neutralizing , Antibodies, Viral , COVID-19 , SARS-CoV-2 , Single-Domain Antibodies , Animals , Mice , Antibodies, Neutralizing/chemistry , Antibodies, Neutralizing/therapeutic use , Antibodies, Viral/chemistry , Antibodies, Viral/therapeutic use , COVID-19/therapy , Liposomes/immunology , SARS-CoV-2/immunology , Single-Domain Antibodies/therapeutic use
2.
Biochem Pharmacol ; 208: 115401, 2023 02.
Article in English | MEDLINE | ID: covidwho-2246221

ABSTRACT

Global health and economy are deeply influenced by the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) and its newly emerging variants. Nanobodies with nanometer-scale size are promising for the detection and treatment of SARS-CoV-2 and its variants because they are superior to conventional antibodies in terms of cryptic epitope accessibility, tissue penetration, cost, formatting adaptability, and especially protein stability, which enables their aerosolized specific delivery to lung tissues. This review summarizes the progress in the prevention, detection, and treatment of SARS-CoV-2 using nanobodies, as well as strategies to combat the evolving SARS-CoV-2 variants. Generally, highly efficient generation of potent broad-spectrum nanobodies targeting conserved epitopes or further construction of multivalent formats targeting non-overlapping epitopes can promote neutralizing activity against SARS-CoV-2 variants and suppress immune escape.


Subject(s)
COVID-19 , Single-Domain Antibodies , Humans , SARS-CoV-2 , Single-Domain Antibodies/therapeutic use , COVID-19/prevention & control , Epitopes , Antibodies, Neutralizing/therapeutic use
3.
Int J Biol Macromol ; 229: 70-80, 2023 Feb 28.
Article in English | MEDLINE | ID: covidwho-2165362

ABSTRACT

In the last two years, the world encountered the SARS-CoV-2 virus, which is still dominating the population due to the absence of a viable treatment. To eradicate the global pandemic, scientists, doctors, and researchers took an exceptionally significant initiative towards the development of effective therapeutics to save many lifes. This review discusses about the single-domain antibodies (sdAbs), also called nanobodies, their structure, and their types against the infections of dreadful SARS-CoV-2 virus. A precise description highlights the nanobodies and their therapeutic application against the other selected viruses. It aims to focus on the extraordinary features of these antibodies compared to the conventional therapeutics like mAbs, convalescent plasma therapy, and vaccines. The stable structure of these nanobodies along with the suitable mechanism of action also confers greater resistance to the evolving variants with numerous mutations. The nanobodies developed against SARS-CoV-2 and its mutant variants have shown the greater neutralization potential than the primitive ones. Engineering of these specialized antibodies by modern biotechnological approaches will surely be more beneficial in treating this COVID-19 pandemic along with certain other viral infections.


Subject(s)
COVID-19 , Single-Domain Antibodies , Virus Diseases , Humans , SARS-CoV-2 , COVID-19/therapy , Single-Domain Antibodies/therapeutic use , Pandemics , COVID-19 Serotherapy , Antibodies, Monoclonal , Antibodies, Viral/therapeutic use , Antibodies, Neutralizing/therapeutic use
4.
J Thromb Haemost ; 20(7): 1696-1698, 2022 07.
Article in English | MEDLINE | ID: covidwho-1819920

ABSTRACT

Immune thrombotic thrombocytopenic purpura (iTTP) is a life-threatening thrombotic microangiopathy caused by antibodies against ADAMTS13. We report a young, healthy female who developed hematuria, vomiting, and hematemesis 3 weeks after her first dose of Pfizer Bio-NTech COVID-19 vaccine. Investigations confirmed iTTP with undetectable ADAMTS13 activity and a positive antibody assay. Despite initial response to standard treatment with plasma exchange and corticosteroids, she had an acute deterioration of her TTP with neurological and cardiac involvement. Fortunately, she then had prompt response to rituximab and emergently obtained caplacizumab and is now in remission. Although most cases of iTTP are of unknown etiology, we cannot exclude that her almost fatal iTTP episode was triggered by the Pfizer-BioNTech COVID-19 vaccine. This case also highlights the ability of caplacizumab to quickly halt disseminated thrombus formation in refractory TTP.


Subject(s)
COVID-19 , Purpura, Thrombocytopenic, Idiopathic , Purpura, Thrombotic Thrombocytopenic , Single-Domain Antibodies , ADAMTS13 Protein , BNT162 Vaccine , COVID-19 Vaccines/adverse effects , Female , Humans , Purpura, Thrombocytopenic, Idiopathic/drug therapy , Purpura, Thrombotic Thrombocytopenic/drug therapy , Single-Domain Antibodies/therapeutic use , Thiamine
5.
Sci Rep ; 12(1): 4163, 2022 03 09.
Article in English | MEDLINE | ID: covidwho-1799572

ABSTRACT

SARS-CoV-2 and its variants have persisted in this ongoing COVID-19 pandemic. While the vaccines have greatly reduced the COVID-19 cases, hospitalizations, and death, about half of the world remain unvaccinated due to various reasons. Furthermore, the duration of the immunity gained from COVID-19 vaccination is still unclear. Therefore, there is a need for innovative prophylactic and treatment measures. In response to this need, we previously reported on the successful computer-aided development of potent VHH-based multispecific antibodies that were characterized in vitro. Here, we evaluated in vivo efficacy and safety of the lead trispecific VHH-Fc, ABS-VIR-001. Importantly, our data showed that ABS-VIR-001 treatment prevented SARS-CoV-2 infection and death when provided as an intranasal prophylaxis in a humanized ACE-2 mouse model. In addition, ABS-VIR-001 post-exposure treatment was shown to greatly reduce viral loads by as much as 50-fold. A detailed panel of metabolic and cellular parameters demonstrated that ABS-VIR-001 treatment was overall comparable to the PBS treatment, indicating a favorable safety profile. Notably, our inhibition studies show that ABS-VIR-001 continued to demonstrate unwavering efficacy against SARS-CoV-2 mutants, associated with key variants including Delta and Omicron, owing to its multiple epitope design. Lastly, we rigorously tested and confirmed the excellent thermostability of ABS-VIR-001 when heated to 45 °C for up to 4 weeks. Taken together, our study suggests that ABS-VIR-001 is an efficacious and durable prophylaxis and post-exposure treatment for COVID-19 with promising safety and manufacturability features for global distribution.


Subject(s)
COVID-19 Drug Treatment , SARS-CoV-2/physiology , Single-Domain Antibodies/therapeutic use , Angiotensin-Converting Enzyme 2/genetics , Angiotensin-Converting Enzyme 2/metabolism , Animals , Antigen-Antibody Reactions/drug effects , Biomarkers/metabolism , COVID-19/virology , Drug Stability , Humans , Immunocompromised Host , Mice , Mice, Transgenic , SARS-CoV-2/isolation & purification , Single-Domain Antibodies/immunology , Single-Domain Antibodies/pharmacology , Spike Glycoprotein, Coronavirus/immunology , Viral Load
6.
Front Immunol ; 12: 838082, 2021.
Article in English | MEDLINE | ID: covidwho-1674340

ABSTRACT

Recombinant antibodies such as nanobodies are progressively demonstrating to be a valid alternative to conventional monoclonal antibodies also for clinical applications. Furthermore, they do not solely represent a substitute for monoclonal antibodies but their unique features allow expanding the applications of biotherapeutics and changes the pattern of disease treatment. Nanobodies possess the double advantage of being small and simple to engineer. This combination has promoted extremely diversified approaches to design nanobody-based constructs suitable for particular applications. Both the format geometry possibilities and the functionalization strategies have been widely explored to provide macromolecules with better efficacy with respect to single nanobodies or their combination. Nanobody multimers and nanobody-derived reagents were developed to image and contrast several cancer diseases and have shown their effectiveness in animal models. Their capacity to block more independent signaling pathways simultaneously is considered a critical advantage to avoid tumor resistance, whereas the mass of these multimeric compounds still remains significantly smaller than that of an IgG, enabling deeper penetration in solid tumors. When applied to CAR-T cell therapy, nanobodies can effectively improve the specificity by targeting multiple epitopes and consequently reduce the side effects. This represents a great potential in treating malignant lymphomas, acute myeloid leukemia, acute lymphoblastic leukemia, multiple myeloma and solid tumors. Apart from cancer treatment, multispecific drugs and imaging reagents built with nanobody blocks have demonstrated their value also for detecting and tackling neurodegenerative, autoimmune, metabolic, and infectious diseases and as antidotes for toxins. In particular, multi-paratopic nanobody-based constructs have been developed recently as drugs for passive immunization against SARS-CoV-2 with the goal of impairing variant survival due to resistance to antibodies targeting single epitopes. Given the enormous research activity in the field, it can be expected that more and more multimeric nanobody molecules will undergo late clinical trials in the next future. Systematic Review Registration.


Subject(s)
Single-Domain Antibodies/chemistry , Single-Domain Antibodies/therapeutic use , Animals , Autoimmune Diseases/immunology , Autoimmune Diseases/therapy , Communicable Diseases/immunology , Communicable Diseases/therapy , Humans , Immunomodulation , Molecular Imaging , Molecular Targeted Therapy , Neoplasms/diagnostic imaging , Neoplasms/immunology , Neoplasms/therapy , Recombinant Proteins/chemistry , Recombinant Proteins/immunology , Recombinant Proteins/therapeutic use , Single-Domain Antibodies/immunology
8.
Biochim Biophys Acta Gen Subj ; 1865(11): 129974, 2021 11.
Article in English | MEDLINE | ID: covidwho-1330651

ABSTRACT

Background Since December 2019, the newly emerged SARS-CoV-2 virus continues to infect humans and many people died from severe Covid-19 during the last 2 years worldwide. Different approaches are being used for treatment of this infection and its consequences, but limited results have been achieved and new therapeutics are still needed. One of the most interesting biotherapeutics in this era are Nanobodies which have shown very promising results in recent researches. Scope of review Here, we have reviewed the potentials of Nanobodies in Covid-19 treatment. We have also discussed the properties of these biotherapeutics that make them very suitable for pulmonary drug delivery, which seems to be very important route of administration in this disease. Major conclusion Nanobodies with their special biological and biophysical characteristics and their resistance against harsh manufacturing condition, can be considered as promising, targeted biotherapeutics which can be administered by pulmonary delivery pharmaceutical systems against Covid-19. General significance Covid-19 has become a global problem during the last two years and with emerging mutant strains, prophylactic and therapeutic approaches are still highly needed. Nanobodies with their specific properties can be considered as valuable and promising candidates in Covid-19 therapy.


Subject(s)
Antibodies, Neutralizing/therapeutic use , Antiviral Agents/therapeutic use , COVID-19/therapy , Immunologic Factors/therapeutic use , SARS-CoV-2/drug effects , Single-Domain Antibodies/therapeutic use , Spike Glycoprotein, Coronavirus/antagonists & inhibitors , Angiotensin-Converting Enzyme 2/antagonists & inhibitors , Angiotensin-Converting Enzyme 2/genetics , Angiotensin-Converting Enzyme 2/immunology , Animals , Antibodies, Neutralizing/biosynthesis , Antibodies, Neutralizing/isolation & purification , Antiviral Agents/isolation & purification , Antiviral Agents/metabolism , COVID-19/immunology , COVID-19/virology , Camelus , Drug Delivery Systems , Humans , Immune Sera/chemistry , Immunologic Factors/biosynthesis , Immunologic Factors/isolation & purification , Lung/drug effects , Lung/immunology , Lung/virology , Molecular Targeted Therapy/methods , Peptide Library , Protein Binding/drug effects , SARS-CoV-2/genetics , SARS-CoV-2/immunology , Single-Domain Antibodies/biosynthesis , Single-Domain Antibodies/isolation & purification , Spike Glycoprotein, Coronavirus/genetics , Spike Glycoprotein, Coronavirus/immunology
9.
Acta Haematol ; 144(6): 678-682, 2021.
Article in English | MEDLINE | ID: covidwho-1199822

ABSTRACT

SARS-CoV-2 has been reported as a possible triggering factor for the development of several autoimmune diseases and inflammatory dysregulation. Here, we present a case report of a woman with a history of systemic lupus erythematosus and antiphospholipid syndrome, presenting with concurrent COVID-19 infection and immune thrombotic thrombocytopenic purpura (TTP). The patient was treated with plasma exchange, steroids, and caplacizumab with initial good response to therapy. The course of both TTP and COVID-19 disease was mild. However, after ADAMTS-13 activity was normalized, the patient experienced an early unexpected TTP relapse manifested by intravascular hemolysis with stable platelet counts requiring further treatment. Only 3 cases of COVID-19 associated TTP were reported in the literature thus far. We summarize the literature and suggest that COVID-19 could act as a trigger for TTP, with good outcomes if recognized and treated early.


Subject(s)
COVID-19/complications , Purpura, Thrombotic Thrombocytopenic/diagnosis , ADAMTS13 Protein/metabolism , COVID-19/pathology , COVID-19/virology , Female , Hemoglobins/metabolism , Humans , Middle Aged , Plasma Exchange , Platelet Count , Purpura, Thrombotic Thrombocytopenic/etiology , Purpura, Thrombotic Thrombocytopenic/therapy , Recurrence , SARS-CoV-2/isolation & purification , Single-Domain Antibodies/therapeutic use
11.
J Clin Apher ; 36(3): 499-504, 2021 Jun.
Article in English | MEDLINE | ID: covidwho-1033045

ABSTRACT

Management of aTTP in patients who refuse or are intolerant to plasma remains challenging, but new drugs can be implemented with success. A 39-year-old woman presented to the Emergency department for bruises at the upper and lower limbs together with worsening anemia and thrombocytopenia; PLASMIC score was seven, indicative of high risk to have a thrombotic microangiopathy due to severe ADAMTS-13 deficiency: indeed, it was 1.4%. We immediately started Plasma Exchange, but after the third procedure she developed severe anaphylaxis to Octaplas plasma, so PEXs were discontinued. We proceeded to a salvage strategy with rituximab and caplacizumab that was rapidly effective to resolve symptoms and hemolysis. It has been already reported a case in which a patient developed severe reactions to fresh-frozen plasma that required discontinuation of PEX. Differently from this case, our patient was already using the less immunogenic pooled plasma units Octaplas, therefore a strategy with caplacizumab was the only available option. Moreover, rituximab is associated with a shorter time to obtain a durable remission in aTTP and a faster time (15 days) to final ADAMTS13 activity recovery >10%. To our knowledge, this is the first case of early discontinuation of caplacizumab in a patient allergic to PEX by actively monitoring ADAMTS13 activity, allowing optimization of healthcare resources during COVID-19 pandemic.


Subject(s)
Plasmapheresis/methods , Purpura, Thrombotic Thrombocytopenic/therapy , Rituximab/therapeutic use , Single-Domain Antibodies/therapeutic use , ADAMTS13 Protein/metabolism , Adult , Emergency Service, Hospital , Female , Hemolysis , Humans , Plasma Exchange , Remission Induction , Risk
13.
Front Immunol ; 11: 576255, 2020.
Article in English | MEDLINE | ID: covidwho-886166

ABSTRACT

In the last decade single domain antibodies (nanobodies, VHH) qualified through their unique characteristics have emerged as accepted and even advantageous alternative to conventional antibodies and have shown great potential as diagnostic and therapeutic tools. Currently nanobodies find their main medical application area in the fields of oncology and neurodegenerative diseases. According to late-breaking information, nanobodies specific for coronavirus spikes have been generated these days to test their suitability as useful therapeutics for future outbreaks. Their superior properties such as chemical stability, high affinity to a broad spectrum of epitopes, low immunogenicity, ease of their generation, selection and production proved nanobodies also to be remarkable to investigate their efficacy for passive treatment of type I allergy, an exaggerated immune reaction to foreign antigens with increasing global prevalence.


Subject(s)
Antibodies, Blocking/therapeutic use , Hypersensitivity/therapy , Immunotherapy/methods , Single-Domain Antibodies/therapeutic use , Antibodies, Blocking/immunology , Antigens/immunology , Epitopes/immunology , Humans , Immunoglobulin E/immunology , Single-Domain Antibodies/immunology
14.
Int Immunopharmacol ; 86: 106760, 2020 Sep.
Article in English | MEDLINE | ID: covidwho-634138

ABSTRACT

Due to the vastness of the science virology, it is no longer an offshoot solely of the microbiology. Viruses have become as the causative agents of major epidemics throughout history. Many therapeutic strategies have been used for these microorganisms, and in this way the recognizing of potential targets of viruses is of particular importance for success. For decades, antibodies and antibody fragments have occupied a significant body of the treatment approaches against infectious diseases. Because of their high affinity, they can be designed and engineered against a variety of purposes, mainly since antibody fragments such as scFv, nanobody, diabody, and bispecific antibody have emerged owing to their small size and interesting properties. In this review, we have discussed the antibody discovery and molecular and biological design of antibody fragments as inspiring therapeutic and diagnostic agents against viral targets.


Subject(s)
Antibodies, Viral/therapeutic use , Betacoronavirus/immunology , Biological Products/therapeutic use , Coronavirus Infections/drug therapy , Pneumonia, Viral/drug therapy , Animals , Antibodies, Bispecific/immunology , Antibodies, Bispecific/therapeutic use , Antibodies, Monoclonal/immunology , Antibodies, Monoclonal/therapeutic use , Antibodies, Viral/immunology , Biological Products/immunology , COVID-19 , Coronavirus Infections/epidemiology , Coronavirus Infections/immunology , Coronavirus Infections/virology , Disease Models, Animal , Drug Design , Drug Discovery , Humans , Pandemics , Pneumonia, Viral/epidemiology , Pneumonia, Viral/immunology , Pneumonia, Viral/virology , SARS-CoV-2 , Single-Domain Antibodies/immunology , Single-Domain Antibodies/therapeutic use , COVID-19 Drug Treatment
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