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1.
Nanoscale ; 16(29): 14006-14019, 2024 Jul 25.
Article in English | MEDLINE | ID: mdl-38989622

ABSTRACT

Local recurrence post-surgery in early-stage triple-negative breast cancer is a major challenge. To control the regrowth of a residual tumor, we have developed an autologous therapeutic hybrid fibrin glue for intra-operative implantation. Using autologous serum proteins as stabilizers, we have optimized high drug-loaded lapatinib-NanoSera (Lap-NS; ∼66% L.C.) and imiquimod-MicroSera (IMQ-MS; ∼92% L.C). Additionally, plasmonic nanosera (PNS) with an ∼67% photothermal conversion efficiency under 980 nm laser irradiation was also developed. While localized monotherapy with either Lap-NS or PNS reduced the tumor regrowth rate, their combination with IMQ-MS amplified the effect of immunogenic cell death with a high level of tumor infiltration by immune cells at the surgical site. The localized combination immunotherapy with a Nano-MicroSera based hybrid fibrin implant showed superior tumor inhibition and survival with significant promise for clinical translation.


Subject(s)
Imiquimod , Female , Animals , Humans , Mice , Cell Line, Tumor , Imiquimod/chemistry , Imiquimod/pharmacology , Lapatinib/chemistry , Lapatinib/pharmacology , Immunotherapy , Breast Neoplasms/pathology , Breast Neoplasms/therapy , Neoplasm Recurrence, Local/prevention & control , Fibrin/chemistry , Triple Negative Breast Neoplasms/therapy , Triple Negative Breast Neoplasms/pathology , Triple Negative Breast Neoplasms/drug therapy , Fibrin Tissue Adhesive/chemistry , Fibrin Tissue Adhesive/pharmacology , Mice, Inbred BALB C , Antineoplastic Agents/chemistry , Antineoplastic Agents/pharmacology , Antineoplastic Agents/therapeutic use
2.
Eur J Pharmacol ; 981: 176856, 2024 Jul 26.
Article in English | MEDLINE | ID: mdl-39068979

ABSTRACT

Autophagy is a fundamental pillar of cellular resilience, indispensable for maintaining cellular health and vitality. It coordinates the meticulous breakdown of cytoplasmic macromolecules as a guardian of cell metabolism, genomic integrity, and survival. In the complex play of biological warfare, autophagy emerges as a firm defender, bravely confronting various pathogenic, infectious, and cancerous adversaries. Nevertheless, its role transcends mere defense, wielding both protective and harmful effects in the complex landscape of disease pathogenesis. From the onslaught of infectious outbreaks to the devious progression of chronic lifestyle disorders, autophagy emerges as a central protagonist, convolutedly shaping the trajectory of cellular health and disease progression. In this article, we embark on a journey into the complicated web of molecular and immunological mechanisms that govern autophagy's profound influence over disease. Our focus sharpens on dissecting the impact of various autophagy-associated proteins on the kaleidoscope of immune responses, spanning the spectrum from infectious outbreaks to chronic lifestyle ailments. Through this voyage of discovery, we unveil the vast potential of autophagy as a therapeutic linchpin, offering tantalizing prospects for targeted interventions and innovative treatment modalities that promise to transform the landscape of disease management.

3.
Int J Biol Macromol ; 274(Pt 1): 133188, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38880456

ABSTRACT

Morphine addiction poses a significant challenge to global healthcare. Current opioid substitution therapies, such as buprenorphine, naloxone and methadone are effective but often lead to dependence. Thus, exploring alternative treatments for opioid addiction is crucial. We have developed a novel vaccine that presents morphine and Pam3Cys (a TLR-2 agonist) on the surface of Acr1 nanoparticles. This vaccine has self-adjuvant properties and targets TLR-2 receptors on antigen-presenting cells, particularly dendritic cells. Our vaccination strategy promotes the proliferation and differentiation of morphine-specific B-cells and Acr1-reactive CD4 T-cells. Additionally, the vaccine elicited the production of high-affinity anti-morphine antibodies, effectively eliminating morphine from the bloodstream and brain in mice. It also reduced the expression of addiction-associated µ-opioid receptor and dopamine genes. The significant increase in memory CD4 T-cells and B-cells indicates the vaccine's ability to induce long-lasting immunity against morphine. This vaccine holds promise as a prophylactic measure against morphine addiction.


Subject(s)
Dendritic Cells , Morphine , Nanovaccines , Toll-Like Receptor 2 , Animals , Mice , B-Lymphocytes/immunology , B-Lymphocytes/drug effects , B-Lymphocytes/metabolism , CD4-Positive T-Lymphocytes/immunology , CD4-Positive T-Lymphocytes/drug effects , CD4-Positive T-Lymphocytes/metabolism , Dendritic Cells/immunology , Dendritic Cells/drug effects , Dendritic Cells/metabolism , Morphine/pharmacology , Morphine Dependence/immunology , Morphine Dependence/drug therapy , Nanovaccines/immunology , Receptors, Opioid, mu/immunology , Receptors, Opioid, mu/metabolism , Toll-Like Receptor 2/metabolism
4.
Gut Microbes ; 15(2): 2290643, 2023 Dec.
Article in English | MEDLINE | ID: mdl-38087439

ABSTRACT

Aging is an inevitable natural process that impacts every individual, and understanding its effect on the gut microbiome and dendritic cell (DC) functionality in elderly subjects is crucial. DCs are vital antigen-presenting cells (APCs) that orchestrate the immune response, maintaining immune tolerance to self-antigens and bridging innate and adaptive immunity. With aging, there is a shift toward nonspecific innate immunity, resulting in a decline in adaptive immune responses. This alteration raises significant concerns about managing the health of an elderly population. However, the precise impact of aging and microbiome changes on DC function and their implications in lung-associated diseases remain relatively understudied. To illuminate this subject, we will discuss recent advancements in understanding the connections between aging, gut dysbiosis, DCs, and lung diseases. Emphasizing the key concepts linking age-related gut microbiome changes and DC functions, we will focus on their relevance to overall health and immune response in elderly individuals. This article aims to improve our understanding of the intricate relationship between aging, gut microbiome, and DCs, potentially benefiting the management of age-associated diseases and promoting healthy aging.


Subject(s)
Gastrointestinal Microbiome , Lung Diseases , Aged , Humans , Dysbiosis , Immunity, Innate , Dendritic Cells
5.
J Biosci ; 482023.
Article in English | MEDLINE | ID: mdl-37671534

ABSTRACT

Morphine is a potent analgesic opiate used to treat chronic pain, mostly in cancer patients. In addition, it is widely used as a drug of abuse. Due to the continuous rise of morphine-associated addiction, there is an urgent need to develop pre-clinical animal models to understand the behavioural pattern of drug dependence and its withdrawal. Recently, the experimental use of zebrafish has attained significance in behavioural neuroscience studies. The literature on zebrafish is conflicting with regard to morphine withdrawal symptoms. Unfortunately, no single model provides comprehensive details to evaluate zebrafish behaviour on opiate exposure. Further, the current models have various limitations, such as short duration, complexity of phenotypes, intricate quantification, and difficulty in studying withdrawal symptoms. Consequently, a firm standardization of the protocol to understand the influence of opiates on physiological and psychological behaviours is required. In this study, we have tried to overcome the shortcomings associated with the existing models and to optimize the protocols involving an array of parameters. We observed that the administration of morphine caused a significant increase in zebrafish behavioural patterns of spiral movements, circular movements, erratic movements, upper transitions, water surface transitions, wall licking, wall licking with upper transitions, wall licking with lower transitions, absolute angle changes, and time spent in the upper compartment. A decline in the freezing bouts and time spent in the lower compartment were noticed. In essence, this study offers a zebrafish model to comprehensively examine changes in behaviour of animals on opiate dependence and its withdrawal. The present study also reported that in zebrafish, the influence of chronic exposure of morphine modulates key gene targets involved in behaviour, neuroinflammation, and autophagy, which directly or indirectly are associated with morphine addiction in a chronic morphine model.


Subject(s)
Morphine , Opiate Alkaloids , Animals , Zebrafish , Autophagy , Models, Animal
6.
J Biol Chem ; 298(12): 102596, 2022 12.
Article in English | MEDLINE | ID: mdl-36257405

ABSTRACT

Novel vaccination strategies are crucial to efficiently control tuberculosis, as proposed by the World Health Organization under its flagship program "End TB Strategy." However, the emergence of drug-resistant strains of Mycobacterium tuberculosis (Mtb), particularly in those coinfected with HIV-AIDS, constitutes a major impediment to achieving this goal. We report here a novel vaccination strategy that involves synthesizing a formulation of an immunodominant peptide derived from the Acr1 protein of Mtb. This nanoformulation in addition displayed on the surface a toll-like receptor-2 ligand to offer to target dendritic cells (DCs). Our results showed an efficient uptake of such a concoction by DCs in a predominantly toll-like receptor-2-dependent pathway. These DCs produced elevated levels of nitric oxide, proinflammatory cytokines interleukin-6, interleukin-12, and tumor necrosis factor-α, and upregulated the surface expression of major histocompatibility complex class II molecules as well as costimulatory molecules such as CD80 and CD86. Animals injected with such a vaccine mounted a significantly higher response of effector and memory Th1 cells and Th17 cells. Furthermore, we noticed a reduction in the bacterial load in the lungs of animals challenged with aerosolized live Mtb. Therefore, our findings indicated that the described vaccine triggered protective anti-Mtb immunity to control the tuberculosis infection.


Subject(s)
Mycobacterium tuberculosis , Tuberculosis , Animals , Dendritic Cells , Epitopes , Ligands , Mycobacterium tuberculosis/metabolism , Toll-Like Receptor 2/metabolism , Tuberculosis/prevention & control , Tuberculosis/microbiology , Mice
7.
Vaccines (Basel) ; 10(7)2022 Jun 23.
Article in English | MEDLINE | ID: mdl-35891168

ABSTRACT

The Bacille Calmette-Guérin or BCG vaccine, the only vaccine available against Mycobacterium tuberculosis can induce a marked Th1 polarization of T-cells, characterized by the antigen-specific secretion of IFN-γ and enhanced antiviral response. A number of studies have supported the concept of protection by non-specific boosting of immunity by BCG and other microbes. BCG is a well-known example of a trained immunity inducer since it imparts 'non-specific heterologous' immunity against severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), the virus responsible for the recent pandemic. SARS-CoV-2 continues to inflict an unabated surge in morbidity and mortality around the world. There is an urgent need to devise and develop alternate strategies to bolster host immunity against the coronavirus disease of 2019 (COVID-19) and its continuously emerging variants. Several vaccines have been developed recently against COVID-19, but the data on their protective efficacy remains doubtful. Therefore, urgent strategies are required to enhance system immunity to adequately defend against newly emerging infections. The concept of trained immunity may play a cardinal role in protection against COVID-19. The ability of trained immunity-based vaccines is to promote heterologous immune responses beyond their specific antigens, which may notably help in defending against an emergency situation such as COVID-19 when the protective ability of vaccines is suspicious. A growing body of evidence points towards the beneficial non-specific boosting of immune responses by BCG or other microbes, which may protect against COVID-19. Clinical trials are underway to consider the efficacy of BCG vaccination against SARS-CoV-2 on healthcare workers and the elderly population. In this review, we will discuss the role of BCG in eliciting trained immunity and the possible limitations and challenges in controlling COVID-19 and future pandemics.

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