Javascript must be enabled to continue!
Histone Deacetylase Inhibitor Induced Radiation Sensitization Effects on Human Cancer Cells after Photon and Hadron Radiation Exposure
View through CrossRef
Suberoylanilide hydroxamic acid (SAHA) is a histone deacetylase inhibitor, which has been widely utilized throughout the cancer research field. SAHA-induced radiosensitization in normal human fibroblasts AG1522 and lung carcinoma cells A549 were evaluated with a combination of γ-rays, proton, and carbon ion exposure. Growth delay was observed in both cell lines during SAHA treatment; 2 μM SAHA treatment decreased clonogenicity and induced cell cycle block in G1 phase but 0.2 μM SAHA treatment did not show either of them. Low LET (Linear Energy Transfer) irradiated A549 cells showed radiosensitization effects on cell killing in cycling and G1 phase with 0.2 or 2 μM SAHA pretreatment. In contrast, minimal sensitization was observed in normal human cells after low and high LET radiation exposure. The potentially lethal damage repair was not affected by SAHA treatment. SAHA treatment reduced the rate of γ-H2AX foci disappearance and suppressed RAD51 and RPA (Replication Protein A) focus formation. Suppression of DNA double strand break repair by SAHA did not result in the differences of SAHA-induced radiosensitization between human cancer cells and normal cells. In conclusion, our results suggest SAHA treatment will sensitize cancer cells to low and high LET radiation with minimum effects to normal cells.
Title: Histone Deacetylase Inhibitor Induced Radiation Sensitization Effects on Human Cancer Cells after Photon and Hadron Radiation Exposure
Description:
Suberoylanilide hydroxamic acid (SAHA) is a histone deacetylase inhibitor, which has been widely utilized throughout the cancer research field.
SAHA-induced radiosensitization in normal human fibroblasts AG1522 and lung carcinoma cells A549 were evaluated with a combination of γ-rays, proton, and carbon ion exposure.
Growth delay was observed in both cell lines during SAHA treatment; 2 μM SAHA treatment decreased clonogenicity and induced cell cycle block in G1 phase but 0.
2 μM SAHA treatment did not show either of them.
Low LET (Linear Energy Transfer) irradiated A549 cells showed radiosensitization effects on cell killing in cycling and G1 phase with 0.
2 or 2 μM SAHA pretreatment.
In contrast, minimal sensitization was observed in normal human cells after low and high LET radiation exposure.
The potentially lethal damage repair was not affected by SAHA treatment.
SAHA treatment reduced the rate of γ-H2AX foci disappearance and suppressed RAD51 and RPA (Replication Protein A) focus formation.
Suppression of DNA double strand break repair by SAHA did not result in the differences of SAHA-induced radiosensitization between human cancer cells and normal cells.
In conclusion, our results suggest SAHA treatment will sensitize cancer cells to low and high LET radiation with minimum effects to normal cells.
Related Results
Histone Acetylation Retards the Adipogenic Differentiation of Human Umbilical
Cord - Mesenchymal Stem Cells: A Clue for Anti-obesity Approach?
Histone Acetylation Retards the Adipogenic Differentiation of Human Umbilical
Cord - Mesenchymal Stem Cells: A Clue for Anti-obesity Approach?
aims:
To investigate the epigenetic changes associated with adipogenic differentiation in human umbilical cord blood-derived mesenchymal stem cells (hUCMSCs) us...
Cell-cycle-dependent repression of histone gene transcription by histone H4
Cell-cycle-dependent repression of histone gene transcription by histone H4
Abstract
In all eukaryotes DNA replication is coupled to histone synthesis to coordinate chromatin packaging of the genome. Canonical histone gen...
Abstract SY20-01: Linking epigenetics, metabolism, and cancer: Lessons from SIRT6
Abstract SY20-01: Linking epigenetics, metabolism, and cancer: Lessons from SIRT6
Abstract
In recent years, chromatin regulators have emerged as key modulators in cancer. These factors could work as both tumor suppressors and oncogenes, providi...
Are Cervical Ribs Indicators of Childhood Cancer? A Narrative Review
Are Cervical Ribs Indicators of Childhood Cancer? A Narrative Review
Abstract
A cervical rib (CR), also known as a supernumerary or extra rib, is an additional rib that forms above the first rib, resulting from the overgrowth of the transverse proce...
Simvastatin-Romidepsin Combination Kills Bladder Cancer Cells Synergistically
Simvastatin-Romidepsin Combination Kills Bladder Cancer Cells Synergistically
Abstract
Background
The HMG-CoA reductase inhibitor simvastatin activates AMP-activated protein kinase (AMPK) and thereby induces histone acetylation. We postulated that c...
Cytosolic Histone H1.2 Releasing under Different Apoptotic Stimuli in Chronic Lymphocytic Leukemia (CLL).
Cytosolic Histone H1.2 Releasing under Different Apoptotic Stimuli in Chronic Lymphocytic Leukemia (CLL).
Abstract
Recently, it has been shown that nuclear histone H1.2 is released into cytoplasm when apoptosis is induced by DNA double-strand breaks (DSB’s), this process...
Abstract 1663: Histone methylation as a target for the radiosensitization of glioblastoma-stem like cells
Abstract 1663: Histone methylation as a target for the radiosensitization of glioblastoma-stem like cells
Abstract
Radiotherapy is a primary treatment modality for glioblastomas (GBMs). However, while many GBMs initially respond to radiation, even in combination with sur...
Cytosolic Histone H1 Releasing under Different Apoptotic Stimuli in Chronic Lymphocytic Leukemia (CLL).
Cytosolic Histone H1 Releasing under Different Apoptotic Stimuli in Chronic Lymphocytic Leukemia (CLL).
Abstract
Recently, it has been demonstrated that nuclear histone H1 could be released into cytoplasm when apoptosis is induced by DNA double-strand breaks, this proc...

