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meningococcal A+C vaccine (Yunaoning A+C)

✓ Approved

Novartis AG · Vaccine · Vaccine

What is meningococcal A+C vaccine?

meningococcal A+C vaccine is a vaccine developed by Novartis AG. It is approved for therapeutic indications via injectable (others).

Drug Profile

Brand NamesYunaoning A+C
CompanyNovartis AG
Drug ClassVaccine
RouteInjectable (Others)
StatusApproved

Therapeutic Indications

meningococcal A+C vaccine is developed for 1 unique indication across 1 therapeutic area.

Therapeutic AreaConditionPhase
Infections and infestationsMeningococcal bacteraemia✓ Approved

Related Research Articles

PubMedChemPlusChem2026-08-31

Synergistic Role of Co0 and Lewis Basic Sites for Transfer Hydrogenation of Substituted Nitroarenes by In Situ Hydrogen Generation.

Sharma Anitya A, Ramchiary Dhanmani D, Sharma Devendra D, Kumar Sahil S et al.

Designing green and efficient methods for synthesizing anilines remains a key challenge in synthetic organic chemistry. Hydrogenation of nitro compounds is one of the most significant and widely employed method for producing functionalized anilines. Consequently, designing catalytic systems capable of hydrogenating nitroarenes under environmentally benign and mild reaction conditions remains a challenge. In this regard, a highly efficient CoAl catalyst has been designed for the hydrogenation of nitroarenes to corresponding amines. Various structural, compositional, and morphological characterizations were done to understand the catalyst's structural and surface properties. The as-synthesized catalyst exhibits excellent activity for the transfer hydrogenation of 1-chloro-4-nitrobenzene to 4-chloroaniline, achieving 98% yield at 60 °C within 1.5 h in ethanol. The developed protocol demonstrated excellent activity for wide range of substituted nitroarenes. Structure-activity relationships of CoAl show that basic sites play a crucial role in the transfer hydrogenation. Furthermore, mechanistic investigations reveal that transfer hydrogenation occurs predominantly via a hydroxylamine-mediated pathway. Moreover, the catalyst maintains good catalytic activity up to four consecutive cycles. This method eliminates the need for high-pressure H2, offering a safe strategy for aromatic amine synthesis. The work demonstrates the potential of earth-abundant, non-noble-metal-based heterogeneous catalysts for hydrogenation reactions under environmentally benign conditions.

PubMedExpert review of vaccines2026-08-30

Narrative review of the clinical safety of MenACYW-TT: a quadrivalent meningococcal vaccine conjugated to tetanus toxoid licensed in the US and abroad.

Syrkina Olga O, Bausch-Jurken Mary M, Delgado Arlette A, Jovanovic Jelena J et al.

Routine meningococcal vaccination campaigns have substantially reduced the burden of invasive meningococcal disease in pediatric individuals, leading to relative increases in burden in older age groups. There is a need for safe, effective meningococcal vaccines that can be used across broad age ranges. MenACYW-TT, a quadrivalent tetanus-toxoid-conjugate meningococcal vaccine indicated for individuals aged ≥6 weeks, is one such option. This narrative review summarizes safety data from industry-sponsored pre- and post-licensure clinical trials of MenACYW-TT, including head-to-head studies with active comparators and coadministration studies with routine pediatric vaccines. In >30 trials involving >17,000 participants, MenACYW-TT had a consistent safety profile across all age groups, from infants to older adults. The most frequent side effects were generally mild or moderate and transient; vaccine-related serious adverse events were rare (<0.1%). The safety of MenACYW-TT was comparable to that of other quadrivalent meningococcal conjugate vaccines. Coadministration did not materially affect the safety of MenACYW-TT or routine pediatric vaccines. Immunization remains an essential preventive strategy against the potentially life-threatening and life-altering consequences of invasive meningococcal disease. The favorable benefit-risk profile of MenACYW-TT reinforces the safety of licensed vaccines and can help to counter vaccine hesitancy.

PubMedGeoHealth2026-08-30

How Do Climatic Factors Directly Influence the Incidence and Risk of Meningococcal Meningitis Across the African Meningitis Belt? A Narrative Literature Review.

Cliff Molly M, Diallo Kanny K, Yapi Richard B RB, Tano Axelle B D ABD et al.

Globally, the highest incidence of meningococcal meningitis occurs within the African meningitis belt, spanning 26 countries across sub-Saharan Africa. Meningococcal meningitis incidence is highly seasonal in this region specifically, with outbreaks mostly occurring during the dry season, characterized by low rainfall and atmospheric humidity, high temperature, and increased dust and wind speed. The strong seasonality of meningococcal outbreaks coincides with seasonal variation in climatic factors. This multicollinearity can make it difficult to identify environmental drivers of disease and the mechanisms by which they operate. This review aims to collate existing evidence to better clarify the mechanisms by which climatic variables influence meningococcal meningitis incidence. We examined the impact of dust, wind speed, temperature, rainfall, and land cover on meningococcal meningitis outbreaks. Within the literature, atmospheric dust and wind speed had the strongest statistical association with meningococcal outbreaks and demonstrated greater predictive probability than other climatic variables. However, several climatic factors have demonstrable influences on one another, reflected in the seasonality of meningococcal meningitis. Atmospheric dust can reduce precipitation levels in part through its radiative properties. Decreased rainfall and increasing temperatures can dry out soil, increasing its availability to be uplifted as dust. Alongside, this lower atmospheric humidity increases evaporative demand, leading to faster soil moisture loss and enhanced surface drying. We argue that rainfall, temperature, and land cover variability may act as part of a broader climatic mechanism, increasing atmospheric dust. This increases the incidence and risk of meningococcal meningitis.

PubMedKidney medicine2026-08-30

COVID-19 Vaccine Knowledge, Practice, and Attitudes Among Hemodialysis Patients in Egypt, Kenya, and Cameroon: A Multicenter Study.

Elsayed Enass E, Kotb Khaled M KM, Heiba Ahmed A, Elhussini Manal Shaker MS et al.

Patients receiving hemodialysis (HD) are at increased risk of severe coronavirus disease 2019 (COVID-19) and were prioritized for vaccination, yet vaccine hesitancy remains common. We assessed COVID-19 vaccine knowledge, acceptance, and attitudes among patients receiving HD in Egypt, Kenya, and Cameroon and identified factors associated with vaccine acceptance, prior infection, willingness to receive future doses, and postvaccination complications. Multicenter cross-sectional survey study. Between March 2021 and April 2022, 765 patients receiving maintenance HD and 196 non-dialysis controls were recruited from dialysis centers in Egypt, Kenya, and Cameroon. Sociodemographic characteristics, clinical comorbidities, prior COVID-19, sources of vaccine information, and exposure to vaccinated or infected relatives. COVID-19 vaccine acceptance, willingness to receive future doses, prior infection, and post-vaccination complications. Structured questionnaires assessed knowledge, practices, and attitudes toward COVID-19 vaccination. Multivariable logistic regression identified factors independently associated with study outcomes. Vaccine acceptance was lower among patients receiving HD than nondialysis controls (58.2% vs 96.2%). Fear of side effects was the most common reason for refusal (39.3%). Postvaccination complications were less frequent among patients receiving HD (22.3% vs 44.3%). Hesitancy was more common among women, younger participants, and those with comorbidities or no prior COVID-19. Having vaccinated or previously infected relatives was associated with a greater willingness to receive future doses. Cross-sectional design limits causal inference. Nonprobability sampling and unmatched controls may limit generalizability. COVID-19 cases may have been underreported because of limited testing. COVID-19 vaccine hesitancy among patients receiving HD is driven by fear, misinformation, and sociodemographic factors. Targeted education and improved access to reliable vaccine information may help increase uptake in this population.

PubMedEMBO molecular medicine2026-08-30

A cavity-reduced prefusion RSV F bivalent vaccine elicits durable and protective immunity.

Liu Lijie L, Yan Mengrong M, Liang Ruoxu R, Wu Qingxin Q et al.

Respiratory syncytial virus (RSV) remains a major cause of severe respiratory disease, and stabilization of the prefusion (preF) conformation of the F glycoprotein is central for vaccine development. Here, we report a structure-guided engineering strategy that enhances preF stability by reducing the hydrophobic cavity within the trimeric F protein. Targeted modifications at metastability-associated sites generated RVF-88, a disulfide-free stabilized preF immunogen that preserves key neutralizing epitopes, including antigenic site Ø, while exhibiting improved structural integrity and long-term storage stability. Formulated as an unadjuvanted bivalent vaccine, RVF-88 elicited potent neutralizing antibody responses and durable immune protection lasting up to 5 months in mice. Vaccination also protected both mice and cotton rats against RSV challenge. Structural analyses confirmed the intended cavity-reduction design, revealing a reduced apical hydrophobic cavity volume and surface area while maintaining the prefusion architecture. Together, these findings establish hydrophobic cavity reduction as a rational strategy for stabilizing prefusion RSV F and provide a promising next-generation vaccine candidate with improved stability and immunogenicity for further clinical development.

PubMedJapanese journal of infectious diseases2026-08-30

Immunogenicity and Safety of the 9-valent Human Papillomavirus (HPV) Vaccine Administered as 2-Dose or 3-Dose Regimens in Japanese Boys and Girls Aged 9-15 Years.

Takeuchi Yuzuru Y, Yonekawa Motoharu M, Murata Shinya S, Nakagomi Mariko M et al.

A phase III open-label study evaluated the immunogenicity and safety of the 9-valent human papillomavirus (9vHPV) vaccine in Japanese boys and girls. Japanese boys aged 9-15 years (n = 105) received a 3-dose (Day 1, Month 2, and Month 6) regimen; Japanese boys (n = 104) and girls aged 9-14 years (n = 105) received a 2-dose (Day 1 and Month 6) regimen. Antibody responses to HPV6/11/16/18/31/33/45/52/58 were assessed at Month 7, 18, and 30 using a competitive Luminex immunoassay. Injection-site adverse events (AEs; Days 1 to 5 post-dose), systemic AEs (Days 1 to 15 post-dose), and serious AEs (duration of study) were assessed. At Month 7, for HPV types targeted by the 9vHPV vaccine, seroconversion rates were 100% in all three arms, and in cross-study comparisons with efficacy studies, anti-HPV geometric mean titers in boys were noninferior to those in Japanese men aged 16-26 years, and in girls were noninferior to those in Japanese women aged 16-26 years. Most injection-site AEs were mild to moderate in intensity. No deaths or vaccine-related serious AEs were observed. These results support immunobridging of efficacy findings in Japanese men and women to Japanese boys and girls. The 9vHPV vaccine was generally well tolerated.

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