CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:T cell-loaded injectable chitosan scaffold shows short-term efficacy in localised cancer immunotherapy in mice.
T cell-loaded injectable chitosan scaffold shows short-term efficacy in localised cancer immunotherapy in mice.
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过继性细胞治疗(ACT)对耐药性癌症显示出成功疗效,但受限于静脉输注所需的大量T细胞以及全身给药相关的毒性。在本研究中,我们假设在原位凝胶化壳聚糖水凝胶中进行局部T细胞递送,尽管递送的细胞数量少于全身静脉输注,仍可实现相似的治疗效果。
本研究使用了一种快速凝胶化且具有良好机械性能的壳聚糖凝胶。在小鼠中进行了为期8周的凝胶生物相容性和生物降解性测试。未观察到不良反应。该凝胶引发了局部肉芽肿反应(异物反应),8周时约降解75%体积。通过活/死细胞检测和流式细胞术,在体外证实了包封的鼠淋巴细胞(OT-I)和人Jurkat细胞的存活、逃逸及对肿瘤细胞的生物活性。使用小鼠肿瘤模型研究了疗效,其中注射的OT-I能够特异性识别并攻击表达卵清蛋白(OVA)蛋白的肿瘤。将OT-I细胞递送支架与未治疗对照组、生理盐水中的OT-I以及静脉全身治疗(OT-I数量为3倍)进行比较,通过活体显微镜和组织学观察肿瘤生长和定位。与未治疗小鼠和PBS悬浮OT-I治疗时间较长的小鼠(9天)相比,凝胶包封的OT-I在治疗后长达11天内显著限制了肿瘤生长,但略逊于静脉递送OT-I治疗的小鼠(14天)。直接比较凝胶和静脉治疗时未观察到显著差异。尽管需要进一步优化治疗,但本研究表明壳聚糖凝胶在癌症免疫治疗中用于局部OT-I递送的可行性和潜力。
Adoptive cell therapy (ACT) shows success against treatment-resistant cancers, but is limited by the large number of intravenously delivered T cells required and toxicity related to systemic administration. In this work, we hypothesized that localized T cell delivery in an in situ gelling chitosan hydrogel will allow similar treatment efficacy despite delivering fewer cells than systemic intravenous delivery. A rapidly gelling chitosan gel with good mechanical properties was used for this study. Gel biocompatibility and biodegradability were tested over 8 weeks in mice. No adverse effects were observed. The gel elicited a local granulomatous reaction (foreign body reaction), degrading by about 75% volume at 8 weeks. The survival, escape and bioactivity against the tumour cells of encapsulated murine lymphocytes (OT-I) and human Jurkat cells were confirmed in vitro by live/dead assay and flow cytometry.
Efficacy was studied using a mouse tumour model where the injected OT-I can specifically recognize and attack ovalbumin (OVA) protein-expressing tumours. The OT-I cell delivery scaffold was compared to untreated controls, OT-I in saline and intravenous systemic treatment with 3-fold more OT-I, observing tumour growth and localization by intravital microscopy and histology.
Gel-encapsulated OT-I limited tumour growth significantly up to 11 days after treatment compared to that of untreated mice and mice with longer PBS-suspended OT-I treatment (9 days), but slightly less than that of mice with IV-delivered OT-I treatment (14 days). No significant difference was observed when directly comparing the gel and IV treatments. Although further optimization of the treatment is required, this work shows the feasibility and potential of the chitosan gel for localised OT-I delivery in cancer immunotherapy.
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