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Published on: September 3, 2013
Small-molecule probes for imaging and impairing the Golgi apparatus in cancer
Phanindra Kumar1, Poulomi Sengupta2, Sudipta Basu1
1Department of Chemistry, Indian Institute of Technology (IIT) Gandhinagar Palaj Gandhinagar Gujarat 382355 India Sudipta.basu@iitgn.ac.in.
Abstract:
The Golgi apparatus (GA) is one of the most important subcellular organelles controlling protein processing, post-translational modification and secretion. Dysregulation of the GA structure and function leads to multiple pathological states, including cancer development and metastasis. Consequently, visualizing GA dynamic structures and their impairment in cancer has emerged as a novel strategy for next-generation unorthodox cancer therapeutics. However, the major challenge in GA-mediated theranostic probe development is the specific targeting of the GA within the subcellular milieu due to the lack of GA-recognizing chemical entities. In this review, we delineated various chemical functionalities that are extensively used as GA-homing moieties. Moreover, we outlined GA imaging probes consisting of classical fluorophores as well as novel aggregation-induced emissive (AIE) probes tagged with GA-homing moieties. Furthermore, we described GA-impairing molecules that can damage GA morphology through chemotherapeutic and photodynamic therapy (PDT) in cancer. Finally, we addressed the current challenges in this emerging and underexplored field of GA-targeted theranostics and proposed potential solutions to guide future cancer therapeutics.
Insights
Targeting the Golgi apparatus (GA) with novel probes offers a new strategy for cancer therapy. Researchers reviewed GA-homing moieties, imaging probes, and GA-impairing molecules for cancer theranostics.
Area of Science:
- Cell Biology
- Oncology
- Chemical Biology
Background:
- The Golgi apparatus (GA) is crucial for protein processing, modification, and secretion.
- GA dysfunction is linked to cancer development and metastasis.
- Visualizing GA dynamics in cancer is a promising therapeutic strategy.
Purpose of the Study:
- To review chemical functionalities for targeting the Golgi apparatus (GA).
- To outline GA imaging probes, including aggregation-induced emissive (AIE) probes.
- To discuss GA-impairing molecules for cancer theranostics.
Main Methods:
- Literature review of GA-homing moieties and imaging probes.
- Analysis of aggregation-induced emissive (AIE) probes for GA targeting.
- Examination of chemotherapeutic and photodynamic therapy (PDT) agents impacting GA.
Main Results:
- Various chemical functionalities serve as effective GA-homing moieties.
- GA imaging probes utilize classical fluorophores and novel AIE probes.
- GA-impairing molecules show potential in chemotherapeutic and PDT applications.
Conclusions:
- Targeting the Golgi apparatus (GA) with specific probes presents a novel avenue for cancer theranostics.
- Challenges in developing GA-targeted probes include specific targeting and probe design.
- Future solutions aim to enhance GA-targeted cancer therapeutics.
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