Bladder Cancer Metastasis Induced by Chronic Everolimus Application Can Be Counteracted by Sulforaphane In Vitro
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES
Authors: Justin, Saira; Rutz, Jochen; Maxeiner, Sebastian; Chun, Felix K-H; Juengel, Eva; Blaheta, Roman A.
Abstract
Chronic treatment with the mTOR inhibitor, everolimus, fails long-term in preventing tumor growth and dissemination in cancer patients. Thus, patients experiencing treatment resistance seek complementary measures, hoping to improve therapeutic efficacy. This study investigated metastatic characteristics of bladder carcinoma cells exposed to everolimus combined with the isothiocyanate sulforaphane (SFN), which has been shown to exert cancer inhibiting properties. RT112, UMUC3, or TCCSUP bladder carcinoma cells were exposed short- (24 h) or long-term (8 weeks) to everolimus (0.5 nM) or SFN (2.5 mu M), alone or in combination. Adhesion and chemotaxis along with profiling details of CD44 receptor variants (v) and integrin alpha and beta subtypes were evaluated. The functional impact of CD44 and integrins was explored by blocking studies and siRNA knock-down. Long-term exposure to everolimus enhanced chemotactic activity, whereas long-term exposure to SFN or the SFN-everolimus combination diminished chemotaxis. CD44v4 and v7 increased on RT112 cells following exposure to SFN or SFN-everolimus. Up-regulation of the integrins alpha 6, alpha V, and beta 1 and down-regulation of beta 4 that was present with everolimus alone could be prevented by combining SFN and everolimus. Down-regulation of alpha V, beta 1, and beta 4 reduced chemotactic activity, whereas knock-down of CD44 correlated with enhanced chemotaxis. SFN could, therefore, inhibit resistance-related tumor dissemination during everolimus-based bladder cancer treatment.
LUNG MEMORY T-CELL RESPONSE IN MICE FOLLOWING INTRANASAL IMMUNIZATION WITH INFLUENZA VECTOR EXPRESSING MYCOBACTERIAL PROTEINS
INFEKTSIYA I IMMUNITET
Authors: Shurygina, A-P S.; Zabolotnykh, N., V; Vinogradova, T., I; Vasilyev, K. A.; Buzitskaya, Zh, V; Stukova, M. A.
Abstract
Improving specific prevention of tuberculosis continues to be a top priority in phthisiology. "Prime-boost" vaccination schemes aim to maintain adequate levels of specific immunity while forming long-term protection. They are based on sequential use of BCG vaccine and new vaccine candidates expressing protective mycobacterial proteins. The development of new tuberculosis prevention approaches requires an understanding of how the anti-tuberculosis immune response forms and which mechanisms provide TB protection. Since tuberculosis is an airborne infection, vaccine effectiveness largely depends on mucosal immunity based on the formation of long-lived, functionally-active memory T-lymphocytes in the respiratory tract. We have previously shown that the influenza vector expressing ESAT-6 and Ag85A mycobacterial proteins (Flu/ESAT-6_Ag85A) in vaccination scheme of intranasal boost immunization resulted in significant increase of BCG's protective effect according to key indicators aggregate data in experimental tuberculosis infection. The aim of this work was to study the effect of intranasal immunization with the Flu/ESAT-6_Ag85A influenza vector on the formation of antigen-specific central and effector memory T cells and the cytokine-producing activity of effector T cells (TEM) in BCG standard and "BCG prime-influenza vector boost" vaccination schemes in mice. Intranasal immunization with the influenza vector has been shown to increase the proportion of antigen-specific CD4(+) central memory T cells (TCM) in the pool of activated lymphocytes of lung and spleen reaching significant differences from the BCG group in the percentage of spleen CD4(+) TCM (p < 0.01). In contrast to BCG, vaccination with the studied vaccine candidate was accompanied by accumulation of highly differentiated CD8 effector cells in lung, the target organ during tuberculosis infection. Comparative evaluation of the cell-mediated, post-vaccine immune response after immunization with influenzavector-based vaccine candidate (intranasal/mucosal) or BCG vaccine (subcutaneous) showed advantages in the mucosal group: in formation of functionally active subpopulations of effector CD4 and CD8 T lymphocytes (CD44(high)CD62L(low)) in lungs secreting IL-2 as well as polyfunctional cells capable of coproducing two cytokines (IFN gamma/TNF alpha or IFN gamma/IL-2) or three cytokines (IFN gamma/TNF alpha/IL-2). Due to their more pronounced effector function, polyfunctional T-lymphocytes can be considered to be potential immunological markers of protective immunity in tuberculosis.