Carbon nanotubes as multifunctional biological transporters and near-infrared agents for selective cancer cell destruction
Углеродные нанотрубки как многофункциональные биологические транспортеры и агенты ближнего инфракрасного диапазона для селективного уничтожения раковых клеток
2005-08-08
SCID: 54.1/uv37nf4x
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folate receptor targetingnear-infrared radiationoligonucleotide deliveryselective cancer cell destructionsingle-walled carbon nanotubes
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Abstract (AI)
Biological systems are known to be highly transparent to 700- to 1,100-nm near-infrared (NIR) light. It is shown here that the strong optical absorbance of single-walled carbon nanotubes (SWNTs) in this special spectral window, an intrinsic property of SWNTs, can be used for optical stimulation of nanotubes inside living cells to afford multifunctional nanotube biological transporters. For oligonucleotides transported inside living cells by nanotubes, the oligos can translocate into cell nucleus upon endosomal rupture triggered by NIR laser pulses. Continuous NIR radiation can cause cell death because of excessive local heating of SWNT in vitro. Selective cancer cell destruction can be achieved by functionalization of SWNT with a folate moiety, selective internalization of SWNTs inside cells labeled with folate receptor tumor markers, and NIR-triggered cell death, without harming receptor-free normal cells. Thus, the transporting capabilities of carbon nanotubes combined with suitable functionalization chemistry and their intrinsic optical properties can lead to new classes of novel nanomaterials for drug delivery and cancer therapy.
Key Findings
1
Combining nanotube transport, functionalization chemistry, and intrinsic optical properties supports multifunctional platforms for drug delivery and cancer therapy.
2
Continuous NIR irradiation induces cell death through excessive localized heating of intracellular single-walled carbon nanotubes.
3
Folate-functionalized nanotubes selectively enter cells expressing folate-receptor tumor markers and enable NIR-triggered cancer-cell destruction without harming receptor-free normal cells.
4
Nanotube-mediated oligonucleotide delivery can achieve nuclear translocation after NIR laser pulses trigger endosomal rupture.
5
Single-walled carbon nanotubes strongly absorb near-infrared light in the biologically transparent 700–1,100 nm spectral window, enabling optical stimulation inside living cells.
Research Object
Single-walled carbon nanotubes (SWNTs) functionalized with folate for transport and near-infrared treatment in living cells, including folate-receptor-positive cancer cells
Research Subject
SWNT-mediated intracellular oligonucleotide transport, NIR-triggered endosomal rupture and localized heating, and selective destruction of folate-receptor-positive cancer cells
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2005-08-08
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