首页> 外文会议>Conference on Biophotonics and Immune Responses; 20080121; San Jose,CA(US) >Histological and morphological studies of immune responses induced by laser immunotherapy
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Histological and morphological studies of immune responses induced by laser immunotherapy

机译:激光免疫疗法诱导的免疫反应的组织学和形态学研究

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Laser energy can induce acute photothermal tissue damage, but without systemic effect in the treatment of tumors. However, it could serve as a precursor of immune responses if its photothermal actions could be used effectively as a means of producing tumor-specific antigens and other immunological stimulation elements. When used in a combination with immunoadjuvants, laser photothermal energy had been successfully applied in the treatment of metastatic tumors. Pre-clinical and preliminary clinical studies have demonstrated the systemic and immunological effects of the combination of laser irradiation and immunological stimulation through eradication of primary and secondary tumors, and through molecular and cellular anti-tumor immune activities. This study focuses on the histological and morphological aspects of laser immunotherapy induced immune responses, using glycated chitosan as the adjuvant and an 805-nm laser as the source of photothermal energy source. Cellular activities, such as tumor destruction and lymphocyte infiltration after the laser immunotherapy treatment were observed and analyzed. These cellular activities further support the hypothesis that induced immune activities are crucial outcome of laser immunotherapy.
机译:激光能量可以引起急性光热组织损伤,但在治疗肿瘤方面没有全身作用。但是,如果可以将其光热作用有效地用作产生肿瘤特异性抗原和其他免疫刺激成分的手段,它可以作为免疫反应的前身。当与免疫佐剂联合使用时,激光光热能已成功地用于治疗转移性肿瘤。临床前和初步临床研究已证明,通过根除原发性和继发性肿瘤以及分子和细胞的抗肿瘤免疫活性,激光照射和免疫刺激相结合的系统和免疫学作用。这项研究侧重于激光免疫疗法诱导的免疫反应的组织学和形态学方面,使用糖化壳聚糖作为佐剂,并使用805 nm激光作为光热能源。观察并分析了激光免疫治疗后的细胞活性,例如肿瘤破坏和淋巴细胞浸润。这些细胞活性进一步支持了以下假设:诱导的免疫活性是激光免疫疗法的关键结果。

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