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Lewis, M. S.

Publications and source records attributed to Lewis, M. S..

2 recordsLinked to original sources

Subunit Vaccination Using Atomic Layering Thermostable Antigen and Adjuvant (ALTA(R)) Platform Elicits Enhanced Humoral and Cellular Immune Responses

AbstractCreating effective and thermostable vaccines is of significant relevance for public health. The Atomic Layering Thermostable Antigen and Adjuvant (ALTA(R)) platform combines spray drying to stabilize antigens in a sugar matrix followed by coating with atomic layer deposition (ALD) for temporal control over in vivo release. While these technologies have shown preliminary promise for different vaccine antigens, further characterizations of the immune response to ALTA(R) formulated antigens are still needed. Here, the immune response to ALTA(R) formulated antigens is described and compared to a set of adjuvanted liquid vaccine formulations that included Alhydrogel(R), AddaVax, and Alhydrogel(R)+CpG. The humoral and cell-mediated responses were measured by ELISA and flow cytometry. Increased and lasting antigen-specific antibody titers following administration of ALTA(R) containing ovalbumin (OVA) demonstrated robust and durable humoral response. Furthermore, ALTA(R) injected mice produced both IgG2c and IgG1 indicating a balanced Th1/Th2 response. Importantly, ALTA(R) OVA elicited robust humoral response at lower doses of aluminum than Alhydrogel(R). The most striking difference between ALTA(R) and the liquid vaccine formulations tested was a greater OVA-specific CD8+ T cell response observed at all antigen doses tested. Mechanistically, antigen encapsulation within ALTA(R) particles was critical for antibody production and CD8+ T cell responses as well as antigen capture by antigen-presenting cells (APCs) at the site of injection and draining lymph nodes. To test these concepts in a more physiological application, protein and polysaccharide vaccine antigens derived from a facultative intracellular bacterium Burkholderia pseudomallei, the causative agent of melioidosis, were formulated using the ALTA(R) platform. Compared to liquid vaccine formulations, ALTA(R) immunized mice showed enhanced antigen-specific antibody production and IFN-{gamma} secreting T cell responses using lower adjuvant doses of aluminum and CpG. Overall, ALTA(R) formulated protein and polysaccharide antigens elicited strong humoral and cell-mediated immunity suggesting potential broad applicability of the platform to vaccines against various diseases, including against cancer and infections from intracellular pathogens.

immunology↗

The packaging signal of Xanthomonas integrative filamentous phages

Unlike Ff, the packaging signal (PS) and the mechanism of integrative filamentous phage assembly remain largely unknown. Here we revived two Inoviridae prophage sequences, {phi}Lf2 and {phi}Lf-UK, as infectious virions lysogenize black rot pathogen Xanthomonas campestris pv. campestris. {phi}Lf2 and {phi}Lf-UK genomes consist of 6,363 and 6,062 nucleotides and share 85.8% and 98.7% identity with {phi}Lf, respectively. To explore their assembly, we first identified 20-26- nucleotide long PS sequences of 10 Xanthomonas phages. These PS consist of a DNA hairpin with the consensus GGX(A/-)CCG(C/T)G sequence in the stem and C/T nucleotides in the loop, both of which are conserved and essential for PS activity. In contrast to Ff, the 5 to 3 orientation of PS sequence is not conserved or critical for their competence. This is the first report to offer insights into the structure and function of integrative phage PS, revealing the diversity of filamentous phage encapsidation.

molecular biology↗