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  • CPP-Ts: a new intracellular calcium channel modulator and a promising tool for drug delivery in cancer cells.

CPP-Ts: a new intracellular calcium channel modulator and a promising tool for drug delivery in cancer cells.

Scientific reports (2018-10-05)
Bárbara Bruna Ribeiro de Oliveira-Mendes, Carolina Campolina Rebello Horta, Anderson Oliveira do Carmo, Gabriela Lago Biscoto, Douglas Ferreira Sales-Medina, Hortênsia Gomes Leal, Pedro Ferreira Pinto Brandão-Dias, Sued Eustáquio Mendes Miranda, Carla Jeane Aguiar, Valbert Nascimento Cardoso, André Luis Branco de Barros, Carlos Chávez-Olortégui, M Fátima Leite, Evanguedes Kalapothakis
ABSTRACT

Scorpion sting envenoming impacts millions of people worldwide, with cardiac effects being one of the main causes of death on victims. Here we describe the first Ca2+ channel toxin present in Tityus serrulatus (Ts) venom, a cell penetrating peptide (CPP) named CPP-Ts. We show that CPP-Ts increases intracellular Ca2+ release through the activation of nuclear InsP3R of cardiomyocytes, thereby causing an increase in the contraction frequency of these cells. Besides proposing a novel subfamily of Ca2+ active toxins, we investigated its potential use as a drug delivery system targeting cancer cell nucleus using CPP-Ts's nuclear-targeting property. To this end, we prepared a synthetic CPP-Ts sub peptide14-39 lacking pharmacological activity which was directed to the nucleus of specific cancer cell lines. This research identifies a novel subfamily of Ca2+ active toxins and provides new insights into biotechnological applications of animal venoms.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Dulbecco′s Modified Eagle′s Medium - high glucose, With 4500 mg/L glucose, L-glutamine, sodium pyruvate, and sodium bicarbonate, liquid, sterile-filtered, suitable for cell culture
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Monoclonal Anti-α-Actinin (Sarcomeric) antibody produced in mouse, clone EA-53, ascites fluid
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Medium 199, With Earle′s salts and L-glutamine, without sodium bicarbonate, powder, suitable for cell culture