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Wald, D.

Publications and source records attributed to Wald, D..

3 recordsLinked to original sources

Skeletal Metastasis of Prostate Cancer Is Augmented by Activation of EphA2 Noncanonical Signaling and Ligand-Deficient Bone Microenvironment

EphA2, a member of Eph family receptor tyrosine kinases (RTKs), is overexpressed in multiple types of solid human tumors, particularly at the late stages. However, whether and how it drives specific malignant processes remain elusive. We report that EphA2 is elevated during prostate cancer (PCa) progression in multiple syngeneic murine models. Interestingly, human metastatic PCa specimens from two Rapid Autopsy Programs showed selective overexpression of EphA2 in metastasis to the bone, but not to the lymph nodes or viscera. Serine 897 phosphorylation that mediates the pro-oncogenic, noncanonical signaling by EphA2 was also upregulated in bone metastasis. Analysis of human datasets shows EphA2 overexpression is associated with skeletal but not visceral metastases. Ephrin-A1, a major cognate ligand for EphA2, is lost in PCa bone metastasis, which is correlated with poor prognosis. Further, the bone microenvironment is unique in expressing little of the five EFNA genes, providing permissive microenvironment for bone colonization. S897A mutation that ablates EphA2 noncanonical signaling, suppressed PCa development. Restoration of ephrin-A1 expression in PC-3, a model cell line for double negative prostate cancer derived from bone metastasis and devoid of ephrin-As, profoundly changed global tyrosine phosphorylation profiles, inhibited basal ERK and Src activities in vitro, and suppressed tumor development in the bone. Together these results demonstrate EphA2 overexpression and concomitant loss of ligands in PCa lead to activation of noncanonical signaling that is sustained in ephrin-A1-deficient skeletal milieu to promote bone metastasis.

cancer biology↗

Induction of expansion of ex vivo NK cells using a new feeder cell built in Brazil. An extended flow cytometry evaluation of K562.mbIL21.4BBL

BackgroundNatural killer (NK) cells are lymphocytes from the innate immune system capable of promoting an antitumor response through activation and inhibition receptors. NK cells can better mediate cell engraftment after hematopoietic stem cell transplantation (HSCT), decreasing relapse rates and preventing viral diseases after HSCT. These characteristics make NK cells eligible for application in cell therapy by increasing the frequency of NK cells in peripheral blood. Manufacturing and using feeder cells is necessary to expand NK cells while keeping their cytotoxic characteristics. AimsWe aimed to develop feeder cells from a K562 leukemic cell line capable of promoting clonal expansion of NK cells ex vivo while preserving its antitumor potential. Methods and resultsFeeder cells, named K562.clone1, were produced by transduction of mbIL-21 and 4-1BBL proteins. Next, peripheral blood NK cells were co-cultivated with K562.clone1 and expanded more than 100 folds compared to NK cells co-cultivated with K562-WT (less than 10 folds). On the first day of cultivation, the average frequency of NK cells (CD3-CD56+CD16+/-) was 5.95% {+/-} 3.92%, increasing to 83.97% {+/-} 8.19% on the fourteenth day after co-cultivation with K562.Clone1, while the percentage of NK cells raised to 75.15% {+/-} 7.57% when co-cultivated with control. In addition, NK cells expanded with the feeder K562.Clone1 were potentially cytotoxic against acute myeloid leukemia (AML) blast, tumor cell lines of leukemia and glial origin. ConclusionWe successfully built a national feeder cell, named K562.Clone1. The co-culture with K562.Clone1 feeder cell, preserving their primordial functions such as missing-self, important to distinguish health and defective cell, and natural cytotoxicity against tumoral cells, and increasing the natural cytotoxicity.

cancer biology↗

Targeting CD19-positive lymphomas with the antibody-drug conjugate (ADC) loncastuximab tesirine: preclinical evidence as single agent and as combinatorial approach

PurposeAntibody-drug conjugates (ADCs) represent one of the most successful therapeutic approaches introduced in clinical practice in the last years. Loncastuximab tesirine (ADCT-402) is a CD19 targeting ADC, in which the antibody is conjugated through a protease cleavable dipeptide linker to a pyrrolobenzodiazepine (PBD) dimer warhead (SG3199). Based on the results of a phase 2 study, loncastuximab tesirine was recently approved for adult patients with relapsed/refractory large B-cell lymphoma. Experimental DesignWe assessed the activity of loncastuximab tesirine in in vitro and in vivo models of lymphomas, correlated its activity with CD19 expression levels and identified combination partners providing synergy with loncastuximab tesirine. ResultsLoncastuximab tesirine was tested across 60 lymphoma cell lines. Loncastuximab tesirine has strong cytotoxic activity in B-cell lymphoma cell lines and the in vitro activity is correlated with CD19 expression level and with intrinsic sensitivity of cell lines to the ADCs warhead. Loncastuximab tesirine was more potent than other anti-CD19 ADCs (coltuximab ravtansine, huB4-DGN462), albeit the pattern of activity across cell lines was correlated. Loncastuximab tesirine activity also largely correlated with cell line sensitivity to R-CHOP. Combinatorial in vitro and in vivo experiments identified the benefit of adding loncastuximab tesirine to other agents, especially BCL2 and PI3K inhibitors. ConclusionsOur data support the further development of loncastuximab tesirine as single agent and in combination for patients affected by mature B-cell neoplasms. The results also highlight the importance of CD19 expression, and the existence of lymphoma populations characterized by resistance to multiple therapies.

cancer biology↗