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111.
Zhen Luo Melissa Loja D Greg Farwell Quang C Luu Paul J Donald Deborah Amott Regina Gandour-Edwards Nitin Nitin 《Translational oncology》2013,6(1):33-41
This study was aimed at developing an optical molecular imaging approach to measure differences in uptake and intracellular retention of choline in clinically isolated tissue biopsies from head and neck cancer patients. An optically detectable analogue of choline (propargyl choline) was synthesized and evaluated in 2D and 3D models and clinically isolated paired biopsies (n = 22 biopsies). Fluorescence contrast between clinically abnormal and normal tissues based on uptake and intracellular retention of propargyl choline was measured and correlated with pathologic diagnosis. Results in 2D and 3D models demonstrated a rapid uptake of propargyl choline in cancer cells, uniform permeation in tissue models, and specific detection of intracellular entrapped propargyl choline using the click chemistry reaction with an azide-modified Alexa 488 dye. Fluorescence imaging measurements following topical delivery of propargyl choline in clinically isolated biopsies showed that the mean fluorescence intensity (MFI) of neoplastic tissues was four-fold to five-fold higher than the MFI of clinically and pathologically normal samples. This difference in fluorescence contrast was measured on the basis of comparison of paired biopsy sets isolated from individual patients as well as comparison of clinically abnormal and normal biopsies independent of anatomic locations in the head and neck cavity and across diverse patients. In conclusion, a novel imaging approach based on monoalkyne-modified choline was developed and validated using cell and tissue models. Results in clinically isolated tissue biopsies demonstrate a significant fluorescent contrast between neoplastic and normal tissues and illustrate high specificity of the optical imaging approach. 相似文献
112.
Bringmann G Hertlein-Amslinger B Kajahn I Dreyer M Brun R Moll H Stich A Ioset KN Schmitz W Ngoc LH 《Phytochemistry》2011,72(1):89-93
The first N,8′-coupled naphthylisoquinoline alkaloids with free phenolic OH groups, 4′-O-demethylancistrocladinium A and 6,4′-O-didemethylancistrocladinium A, have been isolated from the leaves and bark of the Vietnamese liana Ancistrocladus cochinchinensis, along with its known, non-phenolic parent compound, ancistrocladinium A, and four C,C-coupled representatives. The structure elucidation was achieved by chemical, spectroscopic, and chiroptical methods. The mono-phenolic alkaloid showed excellent activities in particular against the pathogen causing Chagas’ disease, Trypanosoma cruzi. 相似文献
113.
Ivy K N Chiang Matthew S Graus Nils Kirschnick Tara Davidson Winnie Luu Richard Harwood Keyi Jiang Bitong Li Yew Yan Wong Mehdi Moustaqil Emmanuelle Lesieur Renae Skoczylas Valerie Kouskoff Jan Kazenwadel Luis ArriolaMartinez Emma Sierecki Yann Gambin Kari Alitalo Friedmann Kiefer Natasha L Harvey Mathias Francois 《The EMBO journal》2023,42(5)
114.
Pollen-stigma adhesion in Brassica spp involves SLG and SLR1 glycoproteins. 总被引:4,自引:0,他引:4 下载免费PDF全文
The adhesion of pollen grains to the stigma is the first step of pollination in flowering plants. During this step, stigmas discriminate between pollen grains that can and cannot be permitted to effect fertilization. This selection is operated by various constituents of the cell walls of both partners. Several genes structurally related to the self-incompatibility system that prevents self-pollination in Brassica spp are known to target their products into the stigma cell wall. We proposed previously that one of these genes, the one encoding the S locus glycoprotein (SLG)-like receptor 1 (SLR1), which is coexpressed with that encoding SLG, may participate in pollen-stigma adhesion. Here, we exploit a biomechanical assay to measure the pollen adhesion force and show that it is reduced both by transgenic suppression of SLR1 expression and by pretreatment of wild-type stigmas with anti-SLR1 antibodies, anti-SLG antibodies, or pollen coat-protein extracts. Our results indicate a common adhesive function for the SLR1 and SLG proteins in the pollination process. 相似文献
115.
116.
Hauss F Liu J Michelucci A Coowar D Morga E Heuschling P Luu B 《Bioorganic & medicinal chemistry letters》2007,17(15):4218-4222
The synthesis of resveratrol fatty alcohols (RFAs), a new class of small molecules presenting strong potential for the treatment of neurological diseases, is described. RFAs, hybrid compounds combining the resveratrol nucleus and omega-alkanol side chains, are able to modulate neuroinflammation and to induce differentiation of neural stem cells into mature neurons. Acting on neuroprotection and neuroregeneration, RFAs represent an innovative approach for the treatment or cure of neuropathies. 相似文献
117.
Sato Ryoichi Kawashima Rinya Trinh Mai Duy Luu Nakano Masahiro Nagai Takeharu Masuda Shinji 《Photosynthesis research》2019,139(1-3):359-365
Photosynthesis Research - The proton motive force (PMF) across the chloroplast thylakoid membrane that is generated by electron transport during photosynthesis is the driving force for ATP... 相似文献
118.
Stephanie Luu Jose Cruz-Mora Barbara Setlow Florence E. Feeherry Christopher J. Doona Peter Setlow 《Applied and environmental microbiology》2015,81(8):2927-2938
Nutrient germination of spores of Bacillus species occurs through germinant receptors (GRs) in spores'' inner membrane (IM) in a process stimulated by sublethal heat activation. Bacillus subtilis spores maximum germination rates via different GRs required different 75°C heat activation times: 15 min for l-valine germination via the GerA GR and 4 h for germination with the l-asparagine–glucose–fructose–K+ mixture via the GerB and GerK GRs, with GerK requiring the most heat activation. In some cases, optimal heat activation decreased nutrient concentrations for half-maximal germination rates. Germination of spores via various GRs by high pressure (HP) of 150 MPa exhibited heat activation requirements similar to those of nutrient germination, and the loss of the GerD protein, required for optimal GR function, did not eliminate heat activation requirements for maximal germination rates. These results are consistent with heat activation acting primarily on GRs. However, (i) heat activation had no effects on GR or GerD protein conformation, as probed by biotinylation by an external reagent; (ii) spores prepared at low and high temperatures that affect spores'' IM properties exhibited large differences in heat activation requirements for nutrient germination; and (iii) spore germination by 550 MPa of HP was also affected by heat activation, but the effects were relatively GR independent. The last results are consistent with heat activation affecting spores'' IM and only indirectly affecting GRs. The 150- and 550-MPa HP germinations of Bacillus amyloliquefaciens spores, a potential surrogate for Clostridium botulinum spores in HP treatments of foods, were also stimulated by heat activation. 相似文献
119.
Two species of Camellia L. (Theaceae) are described here as new: C. curryana and C. longii. The new species were discovered in the southern Annamite Mountains of Vietnam and are endemic to tropical rainforest remnants that occur at altitudes between 1500 and 1700 m a.s.l. Camellia curryana possesses almost sessile, unevenly circular, two whorled, white‐cream and proximally yellowish flowers, proximally joined outer stamens, three styles and mature fruit that dehisces into three parts, or longitudinally into two halves. Camellia longii has campanulate or almost campanulate, intensely dark orange to red flowers with uneven whitish margins, 5–6 petals and 3–2 petaloids, filaments that are united with the petals and one another, a diamond shaped ovary and compound 5–6 styles that are connate at the base. 相似文献
120.
A Critical Review of the Arsenic Uptake Mechanisms and Phytoremediation Potential of Pteris vittata 总被引:1,自引:0,他引:1
Luu Thai Danh Paul Truong Raffaella Mammucari Neil Foster 《International journal of phytoremediation》2014,16(5):429-453
The discovery of the arsenic hyperaccumulator, Pteris vittata (Chinese brake fern), has contributed to the promotion of its application as a means of phytoremediation for arsenic removal from contaminated soils and water. Understanding the mechanisms involved in arsenic tolerance and accumulation of this plant provides valuable tools to improve the phytoremediation efficiency. In this review, the current knowledge about the physiological and molecular mechanisms of arsenic tolerance and accumulation in P. vittata is summarized, and an attempt has been made to clarify some of the unresolved questions related to these mechanisms. In addition, the capacity of P. vittata for remediation of arsenic-contaminated soils is evaluated under field conditions for the first time, and possible solutions to improve the remediation capacity of Pteris vittata are also discussed. 相似文献