National Research Institute of Chinese Medicine, Ministry of Health and Welfare, Taipei 112, Taiwan.
Agricultural Biotechnology Research Center, Academia Sinica, Taipei 115, Taiwan.
Cells. 2022 May 9;11(9):1590. doi: 10.3390/cells11091590.
Plenty of evidence has recently shown that various inflammatory activities at the local tissue, organ, or even the whole body (systemic) level are strongly linked to many life-threatening chronic diseases, most notably various cancers. However, only very limited information is available for making good use of our supporting immune-modulatory therapeutics for the treatment of cancers. This may result from a lack of studies on specific remedies for efficacious control or modulatory suppression of inflammation-related cancerous diseases. Our group and laboratories were fortunate to have initiated and consistently pursued an integrated team-work program project, aimed at investigating selected medicinal herbs and the derived, purified phytochemical compounds. We focused on the study of key and specific immune-signaling mechanisms at the cellular and molecular levels. We were fortunate to obtain a series of fruitful research results. We believe that our key findings reported herein may be helpful for proposing future thematic and integrated research projects that aim to develop future phytochemical drugs against cancers. The mechanisms of the cellular and molecular systems involved in inflammation are becoming increasingly recognized as keystones for the development of future therapeutic approaches for many chronic and cancerous diseases. Recently, the immune checkpoint inhibitors such as antibodies against PD-1 and/or PD-L1 have been shown to be too expensive for general clinical use, and their effects far from optimal, often showing little or no effect or only short-term efficacy. These results point to the need for developing future immune-regulatory or modulatory therapeutics.
最近有大量证据表明,局部组织、器官甚至全身(系统性)水平的各种炎症活动与许多危及生命的慢性疾病密切相关,尤其是各种癌症。然而,由于缺乏针对有效控制或调节炎症相关癌症的特定疗法的研究,我们可用的支持免疫调节疗法的信息非常有限。我们的团队和实验室很幸运地启动并持续开展了一个综合的团队工作项目,旨在研究选定的草药和衍生的、纯化的植物化学化合物。我们专注于研究细胞和分子水平上的关键和特定免疫信号机制。我们很幸运地获得了一系列富有成效的研究成果。我们相信,我们在这里报告的关键发现可能有助于提出未来的主题和综合研究项目,旨在开发针对癌症的未来植物化学药物。涉及炎症的细胞和分子系统的机制越来越被认为是开发许多慢性和癌症疾病未来治疗方法的关键。最近,针对 PD-1 和/或 PD-L1 的抗体等免疫检查点抑制剂已被证明过于昂贵,无法广泛用于临床,而且其效果远非最佳,通常效果甚微或只有短期疗效。这些结果表明需要开发未来的免疫调节或调节治疗方法。