Mesoporous Silica Nanoparticles as Drug Delivery Vehicles in Cancer

Мезопористые кремнезёмные наночастицы как носители лекарственных препаратов при лечении рака
Anna Watermann, Juergen Brieger
2017-07-22

cancer therapydrug delivery vehiclesenhanced permeability and retentionmesoporous silica nanoparticlesstimuli-responsive drug release
Even though cancer treatment has improved over the recent decades, still more specific and effective treatment concepts are mandatory. Surgical removal is not always possible, metastases are challenging and chemo- and radiotherapy can not only have severe side-effects but also resistances may occur. To cope with these challenges more efficient therapies with fewer side-effects are required. One promising approach is the use of drug delivery vehicles. Here, mesoporous silica nanoparticles (MSN) are discussed as biodegradable drug carrier to improve efficacy and reduce side-effects. MSN excellently fulfill the criteria for nanoparticulate carriers: their distinct structure allows high loading capacity and a plethora of surface modifications. MSN synthesis permits fine-tuning of particle and pore sizes. Moreover, drug release can be tailored through various gatekeeper systems which are for example pH-sensitive or redox-sensitive. Furthermore, MSN can either enter tumors passively by the enhanced permeability and retention effect or can be actively targeted by various ligands. PEGylation prolongs circulation time and availability. A huge advantage of MSN is their explicitly low toxic profile in vivo. Yet, clinical translation remains challenging. Overall, mesoporous silica nanoparticles are a promising tool for innovative, more efficient and safer cancer therapies.
1
Drug release can be controlled using gatekeeper systems responsive to tumor-relevant stimuli, including pH and redox conditions.
2
MSNs can accumulate in tumors passively through the enhanced permeability and retention effect or be actively targeted using ligands; PEGylation can extend circulation time.
3
MSNs exhibit an explicitly low in vivo toxic profile, although their clinical translation remains challenging.
4
Mesoporous silica nanoparticles are presented as biodegradable drug carriers intended to improve cancer-treatment efficacy while reducing systemic side effects.
5
Their mesoporous structure provides high drug-loading capacity, extensive surface-modification options, and tunable particle and pore sizes.

Mesoporous silica nanoparticles used as drug delivery vehicles in cancer therapy

Their drug-loading and controlled-release capabilities, surface functionalization, tumor-targeting, circulation, biodegradability, and toxicity profile for improving treatment efficacy and reducing side effects

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2017-07-22
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Anna Watermann
Juergen Brieger
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