| Literature DB >> 21490804 |
Wei-Ching Huang1, Chia-Ling Chen, Yee-Shin Lin, Chiou-Feng Lin.
Abstract
Apoptosis, also called programmed cell death, is physiologically and pathologically involved in cellular homeostasis. Escape of apoptotic signaling is a critical strategy commonly used for cancer tumorigenesis. Ceramide, a derivative of sphingolipid breakdown products, acts as second messenger for multiple extracellular stimuli including growth factors, chemical agents, and environmental stresses, such as hypoxia, and heat stress as well as irradiation. Also, ceramide acts as tumor-suppressor lipid because a variety of stress stimuli cause apoptosis by increasing intracellular ceramide to initiate apoptotic signaling. Defects on ceramide generation and sphingolipid metabolism are developed for cancer cell survival and cancer therapy resistance. Alternatively, targeting ceramide metabolism to correct these defects might provide opportunities to overcome cancer therapy resistance.Entities:
Year: 2011 PMID: 21490804 PMCID: PMC3066853 DOI: 10.1155/2011/565316
Source DB: PubMed Journal: J Lipids ISSN: 2090-3049
Figure 1Metabolic pathways of ceramide. Under apoptotic stimuli, ceramide is generated primarily by de novo synthesis, through serine palmitoyltransferase- and ceramide synthase-mediated synthesis, and the hydrolysis of sphingomyelin through sphingomyelinase. Furthermore, metabolism of ceramide are regulated by ceramide kinase, sphingosine kinase, ceramide-1-phosphate phosphatase, sphingosine-1-phosphate phosphatase, cerebrosidase, and glucosylceramide synthase.
Figure 2The generation of ceramide in apoptotic cells. Under high dose (25 mM) treatment of glucose (mimic hyperglycemia), mouse T hybridoma 10I cells underwent apoptosis were detected by 4′,6-diamidino-2-phenylindole (DAPI) nuclear staing. Fluorescein isothiocyanate-conjugated ceramide monoclonal IgM was used to detect ceramide generated in response to hyperglycemia.
Figure 3Proapoptotic ceramide. Apoptotic stimuli cause ceramide generation. Proapoptotic ceramide triggers apoptotic signaling through multiple mechanisms involving mitochondrial-, ER stress-, and lysosomal-regulated pathways.
Targeting ceramide metabolic enzymes alters drug resistance in cancers.
| Enzymes | Cancer species (cell line) | Drug | Resistance | Reference |
|---|---|---|---|---|
| GCS ↑ | Breast cancer (MCF-7) | Adriamycin | ↑ | [ |
| Colon cancer (SW620) | Adriamycin | ↑ | [ | |
| Epidermoid carcinoma (KB-3-1) | Adriamycin | ↑ |
[ | |
| Vinblastine | ||||
| Leukemia (HL-60) | Vincristine | ↑ | [ | |
| Melanoma (MeWo) | Etoposide | ↑ | [ | |
| Leukemia (HL-60) | Doxorubicin | ↑ | [ | |
|
| ||||
| GCS ↓ | Adriamycin-resistant MCF-7 | Adriamycin | ↓ | [ |
| Adriamycin-resistant MCF-7 | Vinblastine | ↓ |
[ | |
| Paclitaxel | ||||
| Adriamycin-resistant MCF-7 and murine breast cancer (EMT6) | Doxorubicin | ↓ | [ | |
| Adriamycin-resistant SW620 | Doxorubicin | ↓ | [ | |
| Doxorubicin-resistant ovarian carcinoma (A2780) | Doxorubicin | ↓ | [ | |
| Doxorubicin-resistant cervical cancer (KB-A1) | Doxorubicin | ↓ | [ | |
| Hepatoma (HepG2) | Doxorubicin | ↓ | [ | |
| Multidrug-resistant leukemia (K562/A02) | Adriamycin | ↓ | [ | |
|
| ||||
| Acid Ceramidase ↑ | Prostate cancer (DU145) | Doxorubicin | ↑ | |
| Cisplatin |
[ | |||
| Etoposide | ||||
| Gemcitabine | ||||
|
| ||||
| Acid Ceramidase ↓ | Hepatoma (HepG2, Hep-3B, SK-Hep and Hepa1c1c7) | Daunorubicin | ↓ | [ |
|
| ||||
| SphK1 ↑ | Ovarian cancer (A2780) | 4-HPR | ↑ | [ |
| Leukemia (HL-60) | Doxorubicin | ↑ |
[ | |
| Etoposide | ||||
| Pancreatic cancer (Panc-1) | Gemcitabine | ↑ | [ | |
|
| ||||
| SphK1 ↓ | 4-HPR-resistant A2780 | 4-HPR | ↓ | [ |
| Daunorubicin-resistant leukemia (K562) | Daunorubicin | ↓ | [ | |
| Camptothecin-resistant prostate cancer (PC3) | Camptothecin | ↓ | [ | |
| Oxaliplatin-resistant colon cancer (RKO) | Oxaliplatin | ↓ | [ | |
|
| ||||
| Acid SMase ↑ | Glioma | Gemcitabine | ↓ |
[ |
| Doxorubicin | ||||
|
| ||||
| S1P lyase ↑ | Lung cancer (A549) | Cisplatin | ||
| Carboplatin | ↓ | [ | ||
| Doxorubicin | ||||