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Progress in Directed Energy Control of Vectors for Microbes and Other Cells

机译:微生物和其他细胞载体的定向能量控制中的进展

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Biosynthetic semiconductor, diazoluminomelanin (DALM), is a polymer of tyrosine, luminol, and nitrite. DALM has a very large cross section of absorption for light from ultraviolet to radio frequencies. This polymer can be made efficiently in a genetically engineered E.coli, JM109/pIC2ORNR1.1 (ATCC# 69905). We have been pursuing ways to couple electromagnetic radiation to vectors using this polymer. DNA capture elements (DCEs; formerly aptamers) have made this possible. We incorporated DCEs into the plasmid of this E. colt to direct binding to whatever microbe or cell desired and to produce DALM attached to the plasmid DNA. Using two other vectors pSV_2neoNR10_1 or pSV_2neoNR800_5 (ATCC # 69617 and 69618, respectively), both propagated in the E. coli host HB101, we have also inserted genes necessary for DALM production into animal and human cell lines (mouse monocytic leukemia: ATCC # CRL- 11771, -11772, -1173, mouse mammary adenocarcinoma: ATCC# CRL-12184, -12185; and human carcinoma of the cervix: ATCC # CRL-12510). The DCE/DALM vectors can be used to tag target cells, detectable by broad-spectrum light absorbance, luminescence, or fluorescence. DCE/DALM can further be activated with light, microwave energy, or by oxidative chemistry to kill the targeted microbes or other cells.
机译:生物合成半导体,重氮蛋白酶(DALM),是酪氨酸,鲁米诺和亚硝酸盐的聚合物。 DALM具有非常大的横截面,用于从紫外线到无线电频率的光。该聚合物可以有效地在遗传工程化的E.coli,JM109 / PIC2ORNR1.1(ATCC#69905)中进行。我们一直追求使用该聚合物对电磁辐射耦合到载体的方法。 DNA捕获元素(DCE;以前的APTamers)已经实现了这一点。我们将DCE掺入该柯尔特的质粒,以直接与所需的微生物或细胞的结合,并产生附着在质粒DNA上的DALM。使用另外两个矢量PSV_2NEONR10_1或PSV_2neONR800_5(分别分别在大肠杆菌宿主HB101中传播,我们还将DALM生产所需的基因插入动物和人体细胞系(小鼠单核细胞白血病:ATCC#CRL - 11771,-11772,-1173,小鼠乳腺癌:ATCC#CRL-12184,-12185;宫颈的人癌:ATCC#CRL-12510)。 DCE / DALM载体可用于标记靶细胞,通过广谱光吸收,发光或荧光可检测。 DCE / DALM可以用光,微波能量或通过氧化化学活化,以杀死靶向微生物或其他细胞。

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