Effect of gold nanocomposite bearing HIF-1α siRNA on radiotherapy in nasopharyngeal carcinoma cell

Purpose: To investigate the effect of gold nanocomposite carrying hypoxia-inducible factor-1α (HIF-1α) siRNA on radiosensitivity of  nasopharynx cancer (NPC) cells. Methods: Gold nanocomposite (AuNRs-(PEI-PEG)/RGD) or (AuPPR) was first synthesized and its cytotoxicity was evaluated. Then, the expres...

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Veröffentlicht in:Tropical journal of pharmaceutical research 2023-11, Vol.22 (10), p.2087-2097
Hauptverfasser: Zhang, Haosheng, Zhou, Fangzheng
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Zhou, Fangzheng
description Purpose: To investigate the effect of gold nanocomposite carrying hypoxia-inducible factor-1α (HIF-1α) siRNA on radiosensitivity of  nasopharynx cancer (NPC) cells. Methods: Gold nanocomposite (AuNRs-(PEI-PEG)/RGD) or (AuPPR) was first synthesized and its cytotoxicity was evaluated. Then, the expression of HIF-1α in hypoxic NPC cells was assessed. In addition, the radiation sensitivity of  AuPPR bearing HIF-1α siRNA on the cells was examined under xray exposure. Result: Gold nanocomposite (AuPPR) carrying HIF-1α siRNA  (AuPPR-HIF-1α siRNA) significantly down-regulated HIF-1α expression. Under irradiation treatment, AuPPR-HIF-1α siRNA significantly enhanced apoptosis of NPC cells by 33.76 ± 3.65 %, when compared to the control and simple AuPPR group (22.5 ± 4.16 %, p < 0.01).  Furthermore, cell cycle was significantly blocked in the sub-G1 phase in AuPPR-HIF-1α siRNA radiotherapy groups, indicating severe cell  damage. Conclusion: This study has demonstrated that AuPPR-HIF-1α siRNA is effective in improving the radiosensitivity of  nasopharyngeal carcinoma cells under hypoxia, and therefore can potentially be used to improve the radiotherapy of this carcinoma  
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Methods: Gold nanocomposite (AuNRs-(PEI-PEG)/RGD) or (AuPPR) was first synthesized and its cytotoxicity was evaluated. Then, the expression of HIF-1α in hypoxic NPC cells was assessed. In addition, the radiation sensitivity of  AuPPR bearing HIF-1α siRNA on the cells was examined under xray exposure. Result: Gold nanocomposite (AuPPR) carrying HIF-1α siRNA  (AuPPR-HIF-1α siRNA) significantly down-regulated HIF-1α expression. Under irradiation treatment, AuPPR-HIF-1α siRNA significantly enhanced apoptosis of NPC cells by 33.76 ± 3.65 %, when compared to the control and simple AuPPR group (22.5 ± 4.16 %, p &lt; 0.01).  Furthermore, cell cycle was significantly blocked in the sub-G1 phase in AuPPR-HIF-1α siRNA radiotherapy groups, indicating severe cell  damage. 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Methods: Gold nanocomposite (AuNRs-(PEI-PEG)/RGD) or (AuPPR) was first synthesized and its cytotoxicity was evaluated. Then, the expression of HIF-1α in hypoxic NPC cells was assessed. In addition, the radiation sensitivity of  AuPPR bearing HIF-1α siRNA on the cells was examined under xray exposure. Result: Gold nanocomposite (AuPPR) carrying HIF-1α siRNA  (AuPPR-HIF-1α siRNA) significantly down-regulated HIF-1α expression. Under irradiation treatment, AuPPR-HIF-1α siRNA significantly enhanced apoptosis of NPC cells by 33.76 ± 3.65 %, when compared to the control and simple AuPPR group (22.5 ± 4.16 %, p &lt; 0.01).  Furthermore, cell cycle was significantly blocked in the sub-G1 phase in AuPPR-HIF-1α siRNA radiotherapy groups, indicating severe cell  damage. 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title Effect of gold nanocomposite bearing HIF-1α siRNA on radiotherapy in nasopharyngeal carcinoma cell
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