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Pre-clinical immunogenicity and safety evaluation of H2 strain Hepatitis A Inactivated Vaccine in rhesus macaques.

BACKGROUND: Hepatitis A is a viral infection of the liver that can cause mild to severe illness. Currently, two types of HAV vaccines are used worldwide, inactivated hepatitis A vaccines, which are used in most countries, and live attenuated vaccines (H2 and L-A-1 strain), which are mainly used in China. The major disadvantage of live attenuated virus to cause secondary infections among contacts and mutation shifts of the live vaccine strain. The H2 strain was selected for the development of an inactivated hepatitis A vaccine to further reduce biosafety risks. Rhesus macaques high genomic homology with humans and the incubation period after hepatitis A vaccination and human natural infections are similar. We use rhesus macaques to assess immunogenicity and safety of the H2 strain Hepatitis A Inactivated Vaccine. METHODS: The vaccine was assessed in rhesus macaques, divided into four groups (n = 10 per group): the control group (adjuvant buffer; aluminum content 0.35 mg/mL; 2 mL per dose), the low-dose group (320EU, 0.5 mL of 640EU/mL with aluminum content 0.35 mg/mL), the medium-dose group (640EU, 1 mL of 640EU/mL with aluminum content 0.35 mg/mL), and the high-dose group (1280EU, 2 mL of 640EU/mL with aluminum content 0.35 mg/mL). Animals were injected intramuscularly at multiple sites in the hind limbs and received four inoculations at 4-week intervals. Test items including Clinical indicators, immunogenicity indicators and Histopathological examination. RESULTS: No abnormalities were observed in any group in terms of general clinical condition throughout the study period except for slight decreases in body temperature after immunization. Hematological parameters, serum biochemistry indices, and histopathological findings showed fluctuated to different degrees of fluctuation after immunization across all groups. Immunogenicity assessments showed that the inactivated hepatitis A vaccine (H2) induced both humoral and cellular immune responses effectively, and the levels of antibodies increased with certain dose- and time-response trends. CONCLUSION: The inactivated hepatitis A vaccine (H2 strain, human diploid cell) was safe and immunogenic in non-human primates. The results provide strong preclinical support for the further clinical development of this vaccine candidate.

Animals

A phase I clinical study of the safety, tolerability, pharmacokinetics and pharmacodynamics of SHR-2106, an anti-CD40 antibody, following single intravenous or subcutaneous administration in healthy participants.

BACKGROUND: SHR-2106 is a humanized IgG1 monoclonal antibody that blocks CD40-CD40L interactions and has demonstrated immunosuppressive activity and graft-prolonging effects in preclinical studies. This first-in-human Phase I study evaluated the safety, pharmacokinetics, pharmacodynamics, and immunogenicity of single intravenous or subcutaneous doses of SHR-2106 in healthy adults. METHODS: This randomized, double-blind, placebo-controlled Phase I study enrolled healthy participants. Fifty-one participants were enrolled in seven cohorts and received five intravenous doses (50-1200 mg) or two subcutaneous doses (300 and 600 mg). Safety, serum pharmacokinetics, CD40 occupancy on B cells, and anti-drug antibodies were assessed using standard clinical and bioanalytical methods. RESULTS: SHR-2106 demonstrated a favorable safety and tolerability profile, and most treatment-emergent adverse events were mild to moderate laboratory abnormalities with incidence rates comparable to placebo. SHR-2106 exhibited nonlinear pharmacokinetics consistent with target-mediated drug disposition, with a dose-dependent increase in geometric mean terminal half-life following intravenous administration (1.83-10.7 days). Absolute bioavailability after subcutaneous administration was approximately 60%. CD40 occupancy exceeded 80% within 24 h at all doses, with saturation duration increasing from 7 to 70 days across the intravenous dose range and remaining comparable between routes at matched doses. Anti-drug antibody incidence decreased with increasing intravenous dose and did not significantly affect pharmacokinetics or pharmacodynamics. CONCLUSION: SHR-2106 was well tolerated and achieved rapid and sustained CD40 engagement, supporting dose and route selection for Phase II studies.

Humans

The preliminary clinical evaluation of the safety and efficacy of a fertility regulating vaccine.

Since the mid 1970s, the World Health Organization's Special Programme of Research, Development and Research Training in Human Reproduction, through its Task Force on Vaccines for Fertility Regulation, has been supporting and coordinating the development of a birth control vaccine based on a synthetic peptide representing part of the beta subunit of human chorionic gonadotrophin (beta-hCG). The majority of this work has been carried out in the laboratories of Dr V.C. Stevens at Ohio State University. This hCG vaccine has recently been tested for tolerability and immunogenicity in a phase I clinical trial, and a preliminary evaluation of the vaccine's efficacy in fertile women volunteers is currently being planned. This paper describes the preclinical and clinical testing of this vaccine and the problems and challenges presented by this novel preparation. These have included the need to carry out safety and efficacy studies in the baboon, and the difficulties of designing appropriate preclinical toxicity and immunosafety studies and clinical trial protocols in the absence of previous experience with vaccines of this type.

Animals

[The protective properties of the endotoxin protein].

The isolation and properties of endotoxin protein, or lipid A-associated protein (LAP), from Shigella sonnei were described earlier (Zh. mikrobiol. epidemiol. immunobiol., 1991, No. 4, pp. 11-17, and No. 7). In this report the data on its protective activity are presented. In experiments on mice one nanogram of LAP injected i. v. protected 50% of the animals against i. p. challenge with 40 LD50 of virulent S. sonnei. Guinea pigs injected s. c. with 10 micrograms of LAP were protected against local (keratoconjunctival) challenge with S. sonnei, the efficiency of immunization being 58%. LAP preparations containing no detectable amounts of O-antigen (less than 0.003%) were found to have a protective effect. Hyperimmune anti-LAP rabbit serum prevented local infection when incubated with S. sonnei challenge inoculum before injection into guinea pigs. Both active and passive protection induced by LAP was specific since no effect was observed in animals challenged with Shigella flexneri. In the homologous system the protective effect of anti-LAP serum was abolished by the addition of protein-free LPS. These results are compatible with the hypothesis that the protective activity of LAP depends on the presence of minute amounts of O-antigen whose immunogenic effect is greatly amplified by the protein component of the natural endotoxin complex.

Animals

Feasibility of cellular microencapsulation technology for evaluation of anti-human immunodeficiency virus drugs in vivo.

We investigated the feasibility of micro-encapsulation technology for the evaluation of anti-human immunodeficiency virus (HIV) drugs in vivo. The ability to place human cells in microcapsules with semipermeable membranes for implantation into test animals led to the development of this assay. The anti-HIV activity assay involves microencapsulating human T-lymphoblastoid cells sensitive to the cytopathic effects of HIV; the encapsulated cells are then implanted into athymic nude mice and recovered after drug treatment in vivo. A positive antiviral effect of the test substance is indicated by growth or survival of the virus-infected cells in the microcapsules. Several HIV-sensitive cell lines of T-lymphocyte, monocyte, and nonlymphocyte origin were examined for growth in microcapsules in vitro and in vivo. Light and electron microscopic analysis of the capsules and the human cells contained therein revealed the invasion of mouse immune cells and other adverse effects that could not be overcome by any of numerous technical modifications attempted. We conclude that cellular microencapsulation technology is not feasible for in vivo drug-testing protocols because of immunogenic reactions.

Animals

Development of a second generation group B meningococcal vaccine.

Outer membrane protein vaccines have now been demonstrated to be effective in prevention of group B Neisseria meningitidis disease, but the extent and duration of protection needs improvement. To develop a second generation outer membrane protein vaccine we have begun studies to evaluate vaccines containing iron regulated proteins in lipopolysaccharide depleted outer membrane vesicles. Since the iron regulated proteins are critical for in vivo survival, it is our working hypothesis that antibodies to these proteins will either be bactericidal or block iron uptake. Four representative strains were selected, and preliminary studies indicate that vaccines containing the iron regulated proteins are immunogenic in mice.

Antibodies, Bacterial

Antifibrin scintigraphy in the diagnostic evaluation of acute deep venous thrombosis.

Antifibrin scintigraphy is a new and innovative approach to the diagnosis of acute deep venous thrombosis (DVT). Many antifibrin monoclonal antibodies (Mo-Abs) have been described, but only two, 59D8 and T2G1s, have undergone broad preclinical or clinical investigation. Both of these MoAbs recognize an epitope on the amino terminal end of fibrin. The epitope for 59D8 and T2G1s is available for binding only on newly formed, acute thrombi. Preclinical studies have confirmed the specificity of these MoAbs for acute DVT, and have demonstrated their ability to image experimentally induced DVT. Preliminary clinical studies in patients with signs or symptoms of DVT have evaluated indium-111 59D8 Fab and technetium-99m T2G1s Fab'. Fragments of the intact MoAbs are employed to promote faster blood clearance and to reduce immunogenicity. The initial clinical studies indicate that antifibrin scintigraphy has a diagnostic accuracy approaching 90%. Antifibrin scintigraphy has the potential for overcoming many of the deficiencies of both invasive (contrast venography) and noninvasive (Doppler/ultrasound, impedance plethysmography) methods for detecting DVT. With a single procedure, it provides an accurate and rapid evaluation of both lower extremities, both above and below the knee. Because of its unique specificity for acute DVT, it should have excellent potential for use in patients with suspected acute, recurrent DVT, a condition difficult to diagnose by all currently employed tests for DVT.

Animals

[The immunogenicity of a cultured inactivated hepatitis A vaccine].

A trial of inactivated hepatitis A viral vaccine of heteroploid cell culture origin is described. The vaccine preparation was tested in guinea pigs and tamarins. The animals were immunized intramuscularly four or three times, respectively. The efficacy was judged by induction of anti-HAV antibody persisting for at least 12 months in guinea pigs, and development of immunity to subsequent virus challenge (monkeys only). The challenge dose of HAV was unable to produce any signs of HAV infection in the vaccinated tamarins, although the booster effect was observed in some animals. The study demonstrated that the tested batches of the vaccine were highly immunogenic.

Animals

[A trial of a cultured inactivated vaccine against hepatitis A on Saguinus mystax tamarins].

An experimental batch of inactivated hepatitis A vaccine was prepared using hepatitis A virus (HAV), HAS-15 strain, adapted to cell culture and purified by ultracentrifugation. The vaccine was tested in tamarins immunized intramuscularly three times one month apart. Three tamarins received a vaccine preparation containing 10 ng of immunogen each, three--100 ng each, and three animals were used as controls. The efficacy was judged by the anti-HAV antibody response in the vaccinated animals and development of immunity to subsequent virus challenge two months after the last immunization. The criteria of infection were: elevation of serum alanine aminotransferase, fecal excretion of HAV and production of specific antibody of IgM class. The immune response to 10 ng of the immunogen was lower than to 100 ng, however, both doses produced complete resistance to infection. The booster effect was observed in animals receiving 10 ng of the immunogen. The vaccine batch under study in the indicated doses was shown to have a good immunogenic potency and protective activity for tamarins.

Alanine Transaminase

Preclinical and clinical studies on immunogenicity and safety of the HIV-1 p17-based synthetic peptide AIDS vaccine--HGP-30-KLH.

Immunization with a synthetic HIV-1 p17 peptide analog (HGP-30; aa 85-115 of HIV p17), coupled to a carrier protein (KLH, keyhole limpet hemocyanin) given with alum as the adjuvant induces antibodies which cross-react with both HGP-30 and HIV p17 and clones of cytotoxic and helper T-cells which recognize HGP-30 and HIV p17. Proliferation of lymphocytes in response to HGP-30 has been observed in mice, in HIV-infected individuals and in healthy HIV-seronegative volunteers vaccinated with the p17-based synthetic peptide construct. Cytotoxic T-cell responses against EBV transformed, recombinant p17 pulsed targets were observed using antigen-expanded PBLs from HGP-30-KLH immunized individuals. These results are consistent with predictions that the HGP-30 domain of HIV p17 contains both T- and B-cell epitopes that are recognized by animals and humans. In preclinical toxicology studies in animals and in initial clinical trials in humans the synthetic peptide construct (HGP-30-KLH/alum) has been shown to be safe. This paper summarizes the preclinical immunogenicity and safety data for HGP-30-KLH and presents the initial results from the first Phase 1 clinical trial.

AIDS Vaccines

Development and phase 1 clinical testing of a conjugate vaccine against meningococcus A and C.

A conjugate vaccine against meningococcus A and C was prepared using the non-toxic mutant of diphtheria toxin CRM 197 as a carrier protein. Capsular polysaccharides of Neisseria meningitidis group A and C were hydrolysed and the resulting oligosaccharides were then coupled to CRM 197 in order to obtain conjugates with a carbohydrate content of 25-30%. The final vaccine that contained 11 micrograms of each oligosaccharide and 88 micrograms of CRM 197 was used to immunize mice and rabbits. After the preclinical studies which showed that the vaccine was safe and immunogenic in animal models, a pilot phase 1 clinical trial, blind versus placebo, was performed on adult volunteers. The difference between the incidence of adverse reactions associated with vaccine and placebo administration was not statistically significant. All the volunteers who received the vaccine had a significant increase in antibodies to group A and C meningococcal capsular polysaccharides after the first dose.

Animals

Pharmacological studies on an iron-poly-(sorbitol-gluconic acid) complex for parenteral treatment of iron deficiency anaemia.

Intravenous injection of the iron-poly(sorbitol-gluconic acid) complex (IPSG) to cats anaesthetized with sodium pentobarbitone caused a transient decrease in mean arterial blood pressure and a temporary increase in central venous pressure, heart rate and femoral blood flow at large doses (cumulative doses up to 744 mg/kg). Tachyphylaxis developed upon repeated administration. A temporary reduction in the magnitude of the blood pressure responses to noradrenaline and isoprenaline was obtained after large doses of IPSG. The blood pressure effects of acetylcholine, histamine and bilateral carotid occlusion were not affected. No definite effects were seen on the electrocardiograms. The transient cardiovascular effects were interpreted as being due to the presence of small amounts of ferrous iron in the preparation. IPSG did not significantly affect blood coagulation or platelet aggregation as judged from results of in vitro and in vivo experiments. Immunogenicity studies in rabbits and antibody analyses of sera from patients treated with IPSG failed to demonstrate any effect of IPSG on the immune system.

Acetylcholine

Cytotoxic effects of dacarbazine in patients with acute myelogenous leukemia: a pilot study.

BACKGROUND AND METHODS: Preclinical studies performed in our laboratory showed that mouse leukemias become highly immunogenic following in vivo treatment with Decarbazine. This observation led to a successful immunochemotherapy protocol in mice using Dacarbazine plus cytoreductive chemotherapy. Therefore an in vivo and in vitro pilot study was conducted in patients (pts) with resistant or relapsed acute myelogenous leukemia (AML). The DNA-repair enzyme O6-alkylguanine-DNA-alkyl-transferase (OGAT) and the in vitro chemosensitivity to Temozolomide, a Dacarbazine derivative, were evaluated in leukemic blasts. RESULTS: Nine pts received Dacarbazine (0.4-0.8 g/sqm/day) on days 0, 1 and 2. On day 7, noticeable blast reduction occurred in 4 pts: pt 1 was in partial remission on day 21, pt 6 still showed bone marrow leukemia, pt 8 died of sepsis on day 8, pt 9 is still in aplasia on day 25. Low OGAT levels and consistent sensitivity to Temozolomide in vitro were found in the blasts of pts responsive to Dacarbazine. Subsequently, pts 1-7 underwent Ara-C (1g/sqm/day) plus Mitoxantrone (6mg/sqm/day) treatment for 6 days. Four pts entered complete remission after 27-45 days of aplasia. Failures were due to hypoplastic death, absolute drug resistance, or hypoplasia followed by blast cell regrowth. CONCLUSIONS: These data point out that Dacarbazine can induce a marked reduction of blast cells as well as severe myelotoxicity in leukemic patients.

Antiemetics

[The efficacy of a cultured rabies vaccine studied in guinea pigs preliminarily infected with a fixed rabies virus].

In experiments of curative vaccination, carried out with the use of an experimental model similar to the current practice of treatment with antirabies preparations, the advantages of using tissue-culture rabies vaccine with immunogenic potency equal to 1.3 international units (I. U.) were shown. In these experiments the vaccine was introduced into guinea pigs infected with fixed rabies virus, the course of vaccination consisting of 14 daily injections. No correlation between the induction of virus-neutralizing antibodies and the immunogenic potency of tissue-culture rabies vaccine was established: the use of the vaccine with immunogenic potency equal to 0,3 and 1,3 I.U. had no essential influence on the level of antibody formation in the animals.

Animals

[The immunogenicity of mono- and associated vaccines made from strains of opportunistic bacteria].

In experiments on white mice the immunogenic potency of two variants of combined vaccines prepared from strains of opportunistic bacteria was compared with that of monovaccines used as the components of the combined vaccines. All the vaccines under study were found highly immunogenic. Decrease of monovaccine share in the combined vaccine did not reduce the immunogenic potency to any of the strains. An 8- to 16-fold increase in the level of specific antibodies in the colostric lactosera of cows immunized with combined vaccines was observed, and the survival rate of newborn calves increased 3- to 4-fold.

Animals