Polymeric Nanocarriers of Drug Delivery Systems in Cancer Therapy
Полимерные нанопереносчики систем доставки лекарственных средств в терапии рака
2020-03-25
SCID: 54.1/epxy68ex
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cancer therapydrug delivery systemspolymer-drug conjugatespolymeric nanocarriersstimuli-responsive nanoparticles
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Abstract (AI)
Conventional chemotherapy is the most common therapeutic method for treating cancer by the application of small toxic molecules thatinteract with DNA and causecell death. Unfortunately, these chemotherapeutic agents are non-selective and can damage both cancer and healthy tissues,producing diverse side effects, andthey can have a short circulation half-life and limited targeting. Many synthetic polymers have found application as nanocarriers of intelligent drug delivery systems (DDSs). Their unique physicochemical properties allow them to carry drugs with high efficiency,specificallytarget cancer tissue and control drug release. In recent years, considerable efforts have been made to design smart nanoplatforms, including amphiphilic block copolymers, polymer-drug conjugates and in particular pH- and redox-stimuli-responsive nanoparticles (NPs). This review is focused on a new generation of polymer-based DDSs with specific chemical functionalities that improve their hydrophilicity, drug loading and cellular interactions.Recentlydesigned multifunctional DDSs used in cancer therapy are highlighted in this review.
Key Findings
1
Conventional chemotherapy lacks selectivity, damaging healthy tissues while also suffering from short circulation half-life and limited tumor targeting.
2
Multifunctional polymeric drug delivery systems are being developed to improve cancer therapy through coordinated targeting and stimulus-responsive drug release.
3
Smart polymeric delivery platforms include amphiphilic block copolymers, polymer–drug conjugates, and pH- or redox-responsive nanoparticles.
4
Specific chemical functionalities in polymer-based systems can enhance hydrophilicity, drug loading, and interactions with cancer cells.
5
Synthetic polymers serve as efficient nanocarriers that can improve drug loading, tumor-specific delivery, and controlled drug release.
Research Object
Polymer-based nanocarriers and multifunctional drug delivery systems for cancer therapy
Research Subject
Chemical functionalities and physicochemical properties governing drug loading, cancer-targeted delivery, cellular interactions, and controlled or stimuli-responsive drug release
Publication Details
Publication Date
2020-03-25
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