Connecting Calcium-Based Nanomaterials and Cancer: From Diagnosis to Therapy

被引:2
|
作者
Shuang Bai [1 ]
Yulu Lan [1 ]
Shiying Fu [2 ]
Hongwei Cheng [1 ]
Zhixiang Lu [1 ]
Gang Liu [1 ,2 ]
机构
[1] State Key Laboratory of Molecular Vaccinology and Molecular Diagnostics,Center for Molecular Imaging and Translational Medicine,School of Public Health,Xiamen University
[2] State Key Laboratory of Cellular Stress Biology,Innovation Center for Cell Biology,School of Life Sciences,Xiamen University
基金
中国国家自然科学基金; 中国博士后科学基金;
关键词
D O I
暂无
中图分类号
R730 [一般性问题]; TB383.1 [];
学科分类号
070205 ; 080501 ; 100214 ; 1406 ;
摘要
As the indispensable second cellular messenger, calcium signaling is involved in the regulation of almost all physiological processes by activating specific target proteins. The importance of calcium ions(Ca) makes its “Janus nature” strictly regulated by its concentration. Abnormal regulation of calcium signals may cause some diseases; however, artificial regulation of calcium homeostasis in local lesions may also play a therapeutic role. “Calcium overload,” for example, is characterized by excessive enrichment of intracellular Ca, which irreversibly switches calcium signaling from “positive regulation” to “reverse destruction,” leading to cell death. However, this undesirable death could be defined as “calcicoptosis” to offer a novel approach for cancer treatment. Indeed, Cais involved in various cancer diagnostic and therapeutic events, including calcium overload-induced calcium homeostasis disorder, calcium channels dysregulation, mitochondrial dysfunction, calcium-associated immunoregulation, cell/vascular/tumor calcification, and calcification-mediated CT imaging. In parallel, the development of multifunctional calcium-based nanomaterials(e.g., calcium phosphate, calcium carbonate, calcium peroxide, and hydroxyapatite) is becoming abundantly available. This review will highlight the latest insights of the calcium-based nanomaterials, explain their application, and provide novel perspective. Identifying and characterizing new patterns of calcium-dependent signaling and exploiting the disease element linkage offer additional translational opportunities for cancer theranostics.
引用
收藏
页码:101 / 137
页数:37
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