5 ‑Aminolevurinic acid inhibits the proliferation of bladder cancer cells by activating heme synthesis

Oncol Rep. 2022 Oct;48(4):186. doi: 10.3892/or.2022.8401. Epub 2022 Sep 9.ABSTRACTIron is an essential nutrient that facilitates cell proliferation and growth, and it can contribute to tumor growth. Although iron chelators have shown great potential in preclinical cancer models, they can cause adverse side‑effects. The aim of the present study was to determine whether treatment with 5‑aminolevurinic acid (5‑ALA) has antitumor effects in bladder cancer, by reduction of mitochondrial iron without using an iron chelator, through activation of heme synthesis. T24 and MGH‑U3 cells were treated with 5‑ALA. Ferrochelatase uses iron to convert protoporphyrin IX into heme, thus additional groups of T24 and MGH‑U3 cells were transfected with synthesized ferrochelatase small interfering RNA (siRNA) either to silence ferrochelatase or to provide a negative siRNA control group, and then cell viability, apoptosis, mitochondrial Fe2+, the cell cycle, and ferritin expression were analyzed in all groups and compared. As an in vivo assessment, mice with orthotopic bladder cancer induced using N‑butyl‑N‑(4‑hydro‑oxybutyl) were treated with 5‑ALA. Bladder weight and pathological findings were evaluated, and immunohistochemical analysis was performed for ferritin and proliferating cell nuclear antigen (PCNA). In the cells treated with 5‑ALA, proliferation was decreased compared with the controls, and apoptosis was not detected. In addition, the expression of Fe2+ in mito...
Source: Oncology Reports - Category: Cancer & Oncology Authors: Source Type: research