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Penetrating Peptide-Bioconjugated Persistent Nanophosphors for Long-Term Tracking of Adipose-Derived Stem Cells with Superior Signal-to-Noise Ratio

机译:穿透肽-生物共轭的持久性纳米荧光粉,可长期跟踪具有优异信噪比的脂肪干细胞

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Reliable long-term in vivo tracking of stem cells is of great importance in stem cell-based therapy and research. Fluorescence imaging with in situ excitation has significant autofluorescence background, which results in poor signal-to-noise ratio (SNR). Here we report TAT penetrating peptide-bioconjugated long persistent luminescence nanoparticles (LPLNP-TAT) for long-term tracking of adipose-derived stem cells (ASC) without constant external excitation. LPLNP-TAT exhibits near-infrared emitting, red light renewable capability, and superior in vivo imaging depth and SNR compared with conventional organic dye and quantum dots. Our findings show that LPLNP-TAT can successfully label ASC without impairing their proliferation and differentiation and can effectively track ASC in skin-regeneration and tumor-homing models. We believe that LPLNP-TAT represents a new generation of cell tracking probes and will have broad application in diagnosis and therapy.
机译:在基于干细胞的治疗和研究中,对干细胞进行可靠的长期体内追踪非常重要。原位激发的荧光成像具有显着的自发荧光背景,从而导致较差的信噪比(SNR)。在这里,我们报告TAT穿透肽生物共轭的长持续发光纳米颗粒(LPLNP-TAT),用于长期跟踪脂肪来源的干细胞(ASC),而无需持续的外部激发。与传统的有机染料和量子点相比,LPLNP-TAT具有近红外发射,红光可再生能力以及出色的体内成像深度和SNR。我们的发现表明,LPLPN-TAT可以成功标记ASC,而不会损害它们的增殖和分化,并且可以在皮肤再生和肿瘤归巢模型中有效追踪ASC。我们相信LPLNP-TAT代表了新一代的细胞跟踪探针,并将在诊断和治疗中广泛应用。

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