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Tumor-targeting amino acid auxotrophic Salmonella typhimurium

机译:靶向肿瘤的氨基酸营养缺陷型鼠伤寒沙门氏菌

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摘要

We have developed an effective bacterial cancer therapy strategy by targeting viable tumor tissue using Salmonella typhimurium auxotrophs that we have generated which grow in viable as well as necrotic areas of tumors. However, the auxotrophy severely restricts growth of these bacteria in normal tissue. The S. typhimurium Al-R mutant, which is auxotrophic for leu-arg and has high anti-tumor virulence, was developed in our laboratory. In vitro, Al-R infects tumor cells and causes nuclear destruction. Al-R was initially used to treat metastatic human prostate and breast tumors that had been orthotop-ically implanted in nude mice. Forty percent of treated mice were cured completely and survived as long as non-tumor-bearing mice. Al-R administered i.v. to nude mice with primary osteosarcoma and lung metastasis was highly effective, especially against metastasis. Al-R was also targeted to both axillary lymph and popliteal lymph node metastasis of human pancreatic cancer and fibrosarcoma, respectively, as well as lung metastasis of the fibrosarcoma in nude mice. The bacteria were delivered via a lymphatic channel to target the lymph node metastases and systemi-cally via the tail vein to target the lung metastasis. The metastases were cured without the need of chemotherapy or any other treatment. Al-R was administered intratu-morally to nude mice with an orthotopically transplanted human pancreatic tumor. The primary pancreatic cancer regressed without additional chemotherapy or any other treatment. Al-R was also effective against pancreatic cancer liver metastasis when administered intrasplenically to nude mice. The approach described here, where bacterial monotherapy effectively treats primary and metastatic tumors, is a significant improvement over previous bacterial tumor-therapy strategies that require combination with toxic chemotherapy. Three promoter clones engineered in S. enterica typhimurium were identified to have enhanced expression in bacteria growing in tumors relative to those growing in the spleen. The expression of therapeutics in Salmonella under the regulation of one or more promoters that are activated preferentially in tumors has the potential to improve the efficacy of Salmonella tumor therapy. Exploitation of the tumor-killing capability of Salmonella has great promise for a new paradigm of cancer therapy.
机译:我们已经开发出了一种有效的细菌癌治疗策略,即利用我们已经产生的鼠伤寒沙门氏菌营养缺陷型靶向存活的肿瘤组织,这种生长型在肿瘤的可行区域和坏死区域均会生长。但是,营养缺陷严重限制了这些细菌在正常组织中的生长。我们实验室开发了鼠伤寒沙门氏菌Al-R突变体,它对leu-arg具有营养缺陷性,并且具有很高的抗肿瘤毒力。在体外,Al-R感染肿瘤细胞并引起核破坏。 Al-R最初用于治疗原位植入裸鼠的转移性人类前列腺癌和乳腺肿瘤。与不携带肿瘤的小鼠一样,治疗的小鼠中有40%可以完全治愈并存活。静脉内施用Al-R对患有原发性骨肉瘤和肺转移的裸鼠非常有效,尤其是对转移。 Al-R也分别针对人胰腺癌和纤维肉瘤的腋窝淋巴结转移和pop淋巴结转移,以及裸鼠中纤维肉瘤的肺转移。细菌通过淋巴通道递送以靶向淋巴结转移,并通过尾静脉全身递送以靶向肺转移。无需化学疗法或其他任何治疗方法即可治愈转移灶。向患有原位移植的人胰腺肿瘤的裸鼠内注射A1-R。未经其他化疗或任何其他治疗,原发性胰腺癌即可消退。当对裸鼠脾内施用时,A1-R也有效地对抗胰腺癌肝转移。本文所述的方法在细菌单一疗法可有效治疗原发性和转移性肿瘤的地方,是对以前需要与毒性化学疗法相结合的细菌肿瘤疗法的重要改进。鉴定出在鼠伤寒沙门氏菌中工程改造的三个启动子克隆相对于在脾脏中生长的细菌在肿瘤中生长的细菌中具有增强的表达。在一种或多种在肿瘤中优先激活的启动子的调控下,沙门氏菌中治疗剂的表达具有改善沙门氏菌肿瘤治疗功效的潜力。沙门氏菌的杀肿瘤能力的开发为癌症治疗的新范例提供了广阔的前景。

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