Molecular Mechanism of Enhanced Anticancer Effect of Nanoparticle Formulated LY2835219 via p16-CDK4/6-pRb Pathway in Colorectal Carcinoma Cell Line

Author:

Tang Xu1ORCID,Zeng Bin2,Gao Jian-Kun3,Liu Han-Qiang4ORCID

Affiliation:

1. Department of Pathology, Sichuan College of Traditional Chinese Medicine, Mianyang, China

2. Department of Pharmacy and Inspection, Sichuan College of Traditional Chinese Medicine, Mianyang, China

3. Department of Basic Medical Sciences, Sichuan College of Traditional Chinese Medicine, Mianyang, China

4. Department of Nutrition and Food Hygiene, The Fourth Military Medical University, Xi’an 710032, China

Abstract

LY2835219 is a dual inhibitor to CDK4 and CDK6. This study was to prepare LY2835219-loaded chitosan nanoparticles (CNP/LY) and LY2835219-loaded hyaluronic acid-conjugated chitosan nanoparticles (HACNP/LY) and revealed their anticancer effect and influence on p16-CDK4/6-pRb pathway against colon cell line. The nanoparticle sizes of CNP/LY and HACNP/LY were approximately195±39.6 nm and217±31.1 nm, respectively. The zeta potentials of CNP/LY and HACNP/LY were37.3±1.5 mV and30.3±2.2 mV, respectively. And the preparation process showed considerable drug encapsulation efficiency and loading efficiency. LY2835219, CNP/LY, and HACNP/LY inhibited HT29 cell proliferation with 0.68, 0.54, and 0.30 μM of IC50, respectively. G1 phase was arrested by LY2835219 and its formulations. Furthermore, inhibition of CDK4/6 by LY2835219 formulations induced CDK4, CDK6, cyclin D1, and pRb decrease and p16 increase at both protein and mRNA levels. Overall, nanoparticle formulated LY2835219 could enhance the cytotoxicity and cell cycle arrest, and HACNP/LY strengthened the trend furtherly compared to CNP/LY. It is the first time to demonstrate the anticancer effect and mechanism against HT29 by LY2835219 and its nanoparticles. The drug and its nanoparticle formulations delay the cell growth and arrest cell cycle through p16-CDK4/6-pRb pathway, while the nanoparticle formulated LY2835219 could strengthen the process.

Funder

Scientific Research Project of Sichuan College of Traditional Chinese Medicine

Publisher

Hindawi Limited

Subject

General Materials Science

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