Javascript must be enabled to continue!
Targeting Azole-Resistant Candida albicans: Tetrapeptide Tuftsin-Modified Liposomal Vaccine Induces Superior Immune Protection
View through CrossRef
Background/objectives: Candida albicans is a major fungal pathogen that poses a serious threat to immunocompromised individuals. The increasing prevalence of fluconazole-resistant strains presents a critical clinical challenge, emphasizing the urgent need for novel therapeutic strategies. This study aimed to evaluate the prophylactic potential of a new liposomal vaccine formulation, Tuft-lip-WCAgs, comprising Tuftsin and C. albicans whole cell antigens, in providing immune protection against systemic candidiasis. Methods: The vaccine formulation was tested in a murine model of systemic C. albicans infection. The efficacy of the Tuft-lip-WCAg vaccine was evaluated through a survival analysis, fungal burden assessments, and immunological profiling. Immune responses were assessed by measuring serum antibody titers and isotypes, T cell proliferation, and cytokine secretion (IFN-γ and IL-4) from splenocytes. Results: FLZ treatment showed weak antifungal activity, high MIC values, and limited biofilm disruption and failed to ensure long-term survival, resulting in 100% mortality by day 40. In contrast, Tuft-lip-WCAg vaccination was well tolerated and conferred complete protection, with no detectable fungal burden by day 40. Vaccinated mice exhibited significantly elevated total antibody titers (166,667 ± 14,434), increased IgG2a levels, and enhanced T cell proliferation (stimulation index: 3.9 ± 0.84). Splenocytes from immunized mice secreted markedly higher levels of IFN-γ (634 ± 128 pg/mL) and IL-4 (582 ± 82 pg/mL), indicating a balanced Th1/Th2 immune response. Tuft-lip-WCAg vaccination also achieved 100% survival and the lowest kidney fungal burden (556 ± 197 CFUs/g). Conclusions: Tuft-lip-WCAg formulation is a safe, immunogenic, and highly effective vaccine candidate that offers complete protection against drug-resistant C. albicans in a murine model. These findings support its promise as a novel immunoprophylactic strategy, particularly for immunocompromised populations at high risk of invasive candidiasis.
Title: Targeting Azole-Resistant Candida albicans: Tetrapeptide Tuftsin-Modified Liposomal Vaccine Induces Superior Immune Protection
Description:
Background/objectives: Candida albicans is a major fungal pathogen that poses a serious threat to immunocompromised individuals.
The increasing prevalence of fluconazole-resistant strains presents a critical clinical challenge, emphasizing the urgent need for novel therapeutic strategies.
This study aimed to evaluate the prophylactic potential of a new liposomal vaccine formulation, Tuft-lip-WCAgs, comprising Tuftsin and C.
albicans whole cell antigens, in providing immune protection against systemic candidiasis.
Methods: The vaccine formulation was tested in a murine model of systemic C.
albicans infection.
The efficacy of the Tuft-lip-WCAg vaccine was evaluated through a survival analysis, fungal burden assessments, and immunological profiling.
Immune responses were assessed by measuring serum antibody titers and isotypes, T cell proliferation, and cytokine secretion (IFN-γ and IL-4) from splenocytes.
Results: FLZ treatment showed weak antifungal activity, high MIC values, and limited biofilm disruption and failed to ensure long-term survival, resulting in 100% mortality by day 40.
In contrast, Tuft-lip-WCAg vaccination was well tolerated and conferred complete protection, with no detectable fungal burden by day 40.
Vaccinated mice exhibited significantly elevated total antibody titers (166,667 ± 14,434), increased IgG2a levels, and enhanced T cell proliferation (stimulation index: 3.
9 ± 0.
84).
Splenocytes from immunized mice secreted markedly higher levels of IFN-γ (634 ± 128 pg/mL) and IL-4 (582 ± 82 pg/mL), indicating a balanced Th1/Th2 immune response.
Tuft-lip-WCAg vaccination also achieved 100% survival and the lowest kidney fungal burden (556 ± 197 CFUs/g).
Conclusions: Tuft-lip-WCAg formulation is a safe, immunogenic, and highly effective vaccine candidate that offers complete protection against drug-resistant C.
albicans in a murine model.
These findings support its promise as a novel immunoprophylactic strategy, particularly for immunocompromised populations at high risk of invasive candidiasis.
Related Results
Hefebefunde bei Reihenuntersuchungen an Soldaten der Bundeswehr
Hefebefunde bei Reihenuntersuchungen an Soldaten der Bundeswehr
ZusammenfassungBei Reihenuntersuchungen an 1325 Soldaten wurde die Sproßpilzbesiedlung der Mund‐böhle (1325 Abstriche), der Analregion (949 Abstriche), des Penis (1325 Abklatsch‐Ku...
Synergistic Interactions between Pseudomonas aeruginosa and Candida albicans, Candida glabrata, Candida krusei, Candida parapsilosis as well as Candida tropicalis in the Formation of Polymicrobial Biofilms
Synergistic Interactions between Pseudomonas aeruginosa and Candida albicans, Candida glabrata, Candida krusei, Candida parapsilosis as well as Candida tropicalis in the Formation of Polymicrobial Biofilms
The interactions between pathogens during infection and the impact of these interactions on drug effectiveness are poorly understood, making polymicrobial infections challenging to...
Prevalence of Candidemia with Susceptibility Pattern in a Tertiary Care Hospital in North India
Prevalence of Candidemia with Susceptibility Pattern in a Tertiary Care Hospital in North India
BACKGROUND Blood stream infections (BSI) caused by various candida species have been reported from many countries worldwide and are a significant cause of morbidity and mortality i...
In vitro susceptibility testing of Candida species isolated from blood stream infections to five conventional antifungal drugs
In vitro susceptibility testing of Candida species isolated from blood stream infections to five conventional antifungal drugs
Candida is an opportunistic fungal pathogen which can cause fatal bloodstream infections (BSIs) in immunocompromised and immunodeficient persons. In this study, the susceptibility ...
Mechanisms of resistance to azole antifungals.
Mechanisms of resistance to azole antifungals.
Until the late eighties, clinical resistance to azole antifungals was a rare phenomenon. Only a few cases of resistance to ketoconazole were found in patients with chronic mucocuta...
Uji daya hambat ekstrak daun mengkudu (Morinda citrifolia L.) terhadap pertumbuhan Candida albicans secara in vitro
Uji daya hambat ekstrak daun mengkudu (Morinda citrifolia L.) terhadap pertumbuhan Candida albicans secara in vitro
Abstract: Candida albicans is a normal flora of the mouth, respiratory tract, gastrointestinal tract and the female genital but it becomes pathogen if there is a predisposing facto...
Evaluation of antifungal activity of lactic acid bacteria from locally sourced yoghurts on isolates of <i>Candida Albicans</i> from cases of vaginitis
Evaluation of antifungal activity of lactic acid bacteria from locally sourced yoghurts on isolates of <i>Candida Albicans</i> from cases of vaginitis
This study assessed antifungal activity of lactic acid bacteria from locally made yoghurts on isolates of candida albicans from cases of vaginitis. Locally sourced yoghurt samples...
Burden of the Beast
Burden of the Beast
Introduction
Throughout the COVID-19 pandemic, and its fluctuating waves of infections and the emergence of new variants, Indigenous populations in Australia and worldwide have re...

