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1.
Plant Physiol Biochem ; 207: 108336, 2024 Feb.
Artículo en Inglés | MEDLINE | ID: mdl-38245990

RESUMEN

Iron (Fe) is an essential plant nutrient that is indispensable for many physiological activities. This study is an effort to identify the molecular and biochemical basis of wheat genotypes with contrasting tolerance towards Fe deficiency. Our physiological experiments performed at the early growth stage in cv. Kanchan (KAN) showed Fe deficiency tolerance, whereas cv. PBW343 (PBW) was susceptible. Under Fe deficient condition, KAN showed delayed chlorosis, high SPAD values, and low malondialdehyde content compared to PBW, indicative of Fe deficient condition. Comparative shoot transcriptomics revealed increased expression of photosynthetic pathway genes in PBW, further suggesting its sensitivity to Fe fluctuations. Under Fe deficiency, both the cultivars showed distinct molecular re-arrangements such as high expression of genes involved in Fe uptake (including membrane transporters) and its remobilization. Specifically, in KAN these changes lead to high root phytosiderophores (PS) biosynthesis and its release, resulting in enhanced Fe translocation index. Utilizing the non-transgenic TILLING (Targeting Induced Lesions in Genomes) technology, we identified TaZIFL4.2D as a putative PS efflux transporter. Characterization of the wheat TILLING lines indicated that TaZIFL4.2 functions in PS release and Fe acquisition, thereby imparting tolerance to Fe deficiency. Altogether, this work highlights the mechanistic insight into Fe deficiency tolerance of hexaploid wheat, thus enabling breeders to select suitable genotypes to utilize nutrients for maximum yields.


Asunto(s)
Deficiencias de Hierro , Triticum , Triticum/metabolismo , Transcriptoma/genética , Hierro/metabolismo , Transporte Biológico , Proteínas de Transporte de Membrana/genética , Raíces de Plantas/metabolismo
2.
BMC Plant Biol ; 23(1): 493, 2023 Oct 13.
Artículo en Inglés | MEDLINE | ID: mdl-37833626

RESUMEN

BACKGROUND: Reproductive stage drought stress (RDS) is a major global threat to rice production. Due to climate change, water scarcity is becoming an increasingly common phenomenon in major rice-growing areas worldwide. Understanding RDS mechanisms will allow candidate gene identification to generate novel rice genotypes tolerant to RDS. RESULTS: To generate novel rice genotypes that can sustain yield under RDS, we performed gamma-irradiation mediated mutation breeding in the drought stress susceptible mega rice variety, MTU1010. One of the mutant MM11 (MTU1010 derived mutant11) shows consistently increased performance in yield-related traits under field conditions consecutively for four generations. In addition, compared to MTU1010, the yield of MM11 is sustained in prolonged drought imposed during the reproductive stage under field and in pot culture conditions. A comparative emerged panicle transcriptome analysis of the MTU1010 and MM11 suggested metabolic adjustment, enhanced photosynthetic ability, and hormone interplay in regulating yield under drought responses during emerged panicle development. Regulatory network analysis revealed few putative significant transcription factor (TF)-target interactions involved in integrated signalling between panicle development, yield and drought stress. CONCLUSIONS: A gamma-irradiate rice mutant MM11 was identified by mutation breeding, and it showed higher potential to sustain yield under reproductive stage drought stress in field and pot culture conditions. Further, a comparative panicle transcriptome revealed significant biological processes and molecular regulators involved in emerged panicle development, yield and drought stress integration. The study extends our understanding of the physiological mechanisms and candidate genes involved in sustaining yield under drought stress.


Asunto(s)
Oryza , Transcriptoma , Oryza/metabolismo , Sequías , Fitomejoramiento , Genes Reguladores , Estrés Fisiológico/genética
3.
Plant Cell Physiol ; 63(8): 1038-1051, 2022 Aug 17.
Artículo en Inglés | MEDLINE | ID: mdl-35662353

RESUMEN

Land plants have developed robust roots to grow in diverse soil ecosystems. The distal end of the root tip has a specialized organ called the 'root cap'. The root cap assists the roots in penetrating the ground, absorbing water and minerals, avoiding heavy metals and regulating the rhizosphere microbiota. Furthermore, root-cap-derived auxin governs the lateral root patterning and directs root growth under varying soil conditions. The root cap formation is hypothesized as one of the key innovations during root evolution. Morphologically diversified root caps in early land plant lineage and later in angiosperms aid in improving the adaptation of roots and, thereby, plants in diverse soil environments. This review article presents a retrospective view of the root cap's important morphological and physiological characteristics for the root-soil interaction and their response toward various abiotic and biotic stimuli. Recent single-cell RNAseq data shed light on root cap cell-type-enriched genes. We compiled root cap cell-type-enriched genes from Arabidopsis, rice, maize and tomato and analyzed their transcription factor (TF) binding site enrichment. Further, the putative gene regulatory networks derived from root-cap-enriched genes and their TF regulators highlight the species-specific biological functions of root cap genes across the four plant species.


Asunto(s)
Arabidopsis , Suelo , Arabidopsis/genética , Ecosistema , Ácidos Indolacéticos/metabolismo , Raíces de Plantas/metabolismo , Estudios Retrospectivos
4.
Mol Biol Rep ; 49(8): 7649-7663, 2022 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-35612779

RESUMEN

BACKGROUND: With the increase in population and economies of developing countries in Asia and Africa, the research towards securing future food demands is an imminent need. Among japonica and indica genotypes, indica rice varieties are largely cultivated across the globe. However, our present understanding of yield-contributing gene information stems mainly from japonica and studies on the yield potential of indica genotypes are limited. METHODS AND RESULTS: In the present study, yield contributing orthologous genes previously characterized from japonica varieties were identified in the indica genome and analysed with binGO tool for GO biological processes categorization. Transcription factor binding site enrichment analysis in the promoters of yield-related genes of indica was performed with MEME-AME tool that revealed putative common TF regulators are enriched in flower development, two-component signalling and water deprivation biological processes. Gene regulatory networks revealed important TF-target interactions that might govern yield-related traits. Some of the identified candidate genes were validated by qRT-PCR analysis for their expression and association with yield-related traits among 16 widely cultivated popular indica genotypes. Further, SNP-metabolite-trait association analysis was performed using high-yielding indica variety Rasi. This resulted in the identification of putative SNP variations in TF regulators and targeted yield genes significantly linked with metabolite accumulation. CONCLUSIONS: The study suggests some of the high yielding indica genotypes such as Ravi003, Rasi and Kavya could be used as potential donors in breeding programs based on yield gene expression analysis and SNP-metabolites associations.


Asunto(s)
Oryza , Redes Reguladoras de Genes/genética , Genotipo , Oryza/genética , Fenotipo , Fitomejoramiento
5.
Genomics ; 113(6): 3935-3950, 2021 11.
Artículo en Inglés | MEDLINE | ID: mdl-34606916

RESUMEN

Iron (Fe) and phosphorus (P) are the essential mineral nutrients for plant growth and development. However, the molecular interaction of the Fe and P pathways in crops remained largely obscure. In this study, we provide a comprehensive physiological and molecular analysis of hexaploid wheat response to single (Fe, P) and its combinatorial deficiencies. Our data showed that inhibition of the primary root growth occurs in response to Fe deficiency; however, growth was rescued when combinatorial deficiencies occurred. Analysis of RNAseq revealed that distinct molecular rearrangements during combined deficiencies with predominance for genes related to metabolic pathways and secondary metabolite biosynthesis primarily include genes for UDP-glycosyltransferase, cytochrome-P450s, and glutathione metabolism. Interestingly, the Fe-responsive cis-regulatory elements in the roots in Fe stress conditions were enriched compared to the combined stress. Our metabolome data also revealed the accumulation of distinct metabolites such as amino-isobutyric acid, arabinonic acid, and aconitic acid in the combined stress environment. Overall, these results are essential in developing new strategies to improve the resilience of crops in limited nutrients.


Asunto(s)
Plantones , Triticum , Regulación de la Expresión Génica de las Plantas , Hierro/metabolismo , Fosfatos/metabolismo , Raíces de Plantas/metabolismo , Plantones/metabolismo , Triticum/metabolismo
6.
J Mech Behav Biomed Mater ; 103: 103576, 2020 03.
Artículo en Inglés | MEDLINE | ID: mdl-32090905

RESUMEN

Anti-bacterial scaffolds made of copper, bronze and silver particles filled PLA nanocomposites were realized via fused filament fabrication (FFF), additive manufacturing. The thermal, mechanical and biological characteristics including bioactivity and bactericidal properties of the scaffolds were evaluated. The incorporation of bronze particles into the neat PLA increases the elastic modulus up to 10% and 27% for samples printed in 0° and 90° configurations respectively. The stiffness increases, up to 103% for silver filled PLA nanocomposite scaffolds. The surface of scaffolds was treated with acetic acid to create a thin porous network. Significant increase (~20-25%) in the anti-bacterial properties and bioactivity (~18-100%) is attributed to the synergetic effect of reinforcement of metallic/metallic alloy particles and acid treatment. The results indicate that PLA nanocomposites could be a potential candidate for bone scaffold applications.


Asunto(s)
Nanocompuestos , Ingeniería de Tejidos , Andamios del Tejido , Poliésteres , Impresión Tridimensional
7.
J Exp Bot ; 70(21): 6141-6161, 2019 11 18.
Artículo en Inglés | MEDLINE | ID: mdl-31738431

RESUMEN

Iron (Fe) is an essential micronutrient for all organisms. In crop plants, Fe deficiency can decrease crop yield significantly; however, our current understanding of how major crops respond to Fe deficiency remains limited. Herein, the effect of Fe deprivation at both the transcriptomic and metabolic level in hexaploid wheat was investigated. Genome-wide gene expression reprogramming was observed in wheat roots subjected to Fe starvation, with a total of 5854 genes differentially expressed. Homoeologue and subgenome-specific analysis unveiled the induction-biased contribution from the A and B genomes. In general, the predominance of genes coding for nicotianamine synthase, yellow stripe-like transporters, metal transporters, ABC transporters, and zinc-induced facilitator-like protein was noted. Expression of genes related to the Strategy II mode of Fe uptake was also predominant. Our transcriptomic data were in agreement with the GC-MS analysis that showed the enhanced accumulation of various metabolites such as fumarate, malonate, succinate, and xylofuranose, which could be contributing to Fe mobilization. Interestingly, Fe starvation leads to a significant temporal increase of glutathione S-transferase at both the transcriptional level and enzymatic activity level, which indicates the involvement of glutathione in response to Fe stress in wheat roots. Taken together, our result provides new insight into the wheat response to Fe starvation at the molecular level and lays the foundation to design new strategies for the improvement of Fe nutrition in crops.


Asunto(s)
Deficiencias de Hierro , Raíces de Plantas/genética , Poliploidía , Triticum/genética , Regulación hacia Abajo/genética , Perfilación de la Expresión Génica , Regulación de la Expresión Génica de las Plantas , Ontología de Genes , Genes de Plantas , Metaboloma , RNA-Seq , Plantones/crecimiento & desarrollo , Factores de Transcripción/metabolismo , Transcripción Genética , Triticum/crecimiento & desarrollo , Triticum/metabolismo , Regulación hacia Arriba/genética
8.
Funct Integr Genomics ; 19(1): 75-90, 2019 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-30120602

RESUMEN

Oligopeptide transporters (OPT) are integral cell membrane proteins that play a critical role in the transport of small peptides, secondary amino acids, glutathione conjugates, and mineral uptake. In the present study, 67 putative wheat yellow stripe-like transporter (YSL) proteins belonging to the subfamily of OPT transporters were identified. Phylogeny analysis resulted in the distribution of wheat YSLs into four discrete clades. The highest number of YSLs was present on the A genome and the chromosome 2 of hexaploid wheat. The identified wheat YSL genes showed differential expression in different tissues and during grain development suggesting the importance of this subfamily. Gene expression pattern of TaYSLs during iron starvation experiments suggested an early high transcript accumulation of TaYS1A, TaYS1B, TaYSL3, TaYSL5, and TaYSL6 in roots. In contrast, delayed expression was observed in shoots for TaYS1A, TaYS1B, TaYSL5, TaYSL12, and TaYSL19 as compared to control. Further, their expression under biotic and abiotic response emphasized their alternative functions during the plant growth and development. In conclusion, this work is the first comprehensive study of wheat YSL transporters and would be an important resource for prioritizing genes towards wheat biofortification.


Asunto(s)
Regulación de la Expresión Génica de las Plantas , Genoma de Planta , Deficiencias de Hierro , Proteínas de Transporte de Membrana/genética , Raíces de Plantas/genética , ARN Mensajero/genética , Triticum/genética , Mapeo Cromosómico , Cromosomas de las Plantas/química , Cromosomas de las Plantas/metabolismo , Regulación del Desarrollo de la Expresión Génica , Ontología de Genes , Transporte Iónico , Proteínas de Transporte de Membrana/clasificación , Proteínas de Transporte de Membrana/metabolismo , Anotación de Secuencia Molecular , Filogenia , Raíces de Plantas/crecimiento & desarrollo , Raíces de Plantas/metabolismo , Brotes de la Planta/genética , Brotes de la Planta/crecimiento & desarrollo , Brotes de la Planta/metabolismo , Poliploidía , ARN Mensajero/metabolismo , Estrés Fisiológico , Triticum/clasificación , Triticum/crecimiento & desarrollo , Triticum/metabolismo
9.
Front Plant Sci ; 9: 259, 2018.
Artículo en Inglés | MEDLINE | ID: mdl-29559984

RESUMEN

Enhancement of micronutrient bioavailability is crucial to address the malnutrition in the developing countries. Various approaches employed to address the micronutrient bioavailability are showing promising signs, especially in cereal crops. Phytic acid (PA) is considered as a major antinutrient due to its ability to chelate important micronutrients and thereby restricting their bioavailability. Therefore, manipulating PA biosynthesis pathway has largely been explored to overcome the pleiotropic effect in different crop species. Recently, we reported that functional wheat inositol pentakisphosphate kinase (TaIPK1) is involved in PA biosynthesis, however, the functional roles of the IPK1 gene in wheat remains elusive. In this study, RNAi-mediated gene silencing was performed for IPK1 transcripts in hexaploid wheat. Four non-segregating RNAi lines of wheat were selected for detailed study (S3-D-6-1; S6-K-3-3; S6-K-6-10 and S16-D-9-5). Homozygous transgenic RNAi lines at T4 seeds with a decreased transcript of TaIPK1 showed 28-56% reduction of the PA. Silencing of IPK1 also resulted in increased free phosphate in mature grains. Although, no phenotypic changes in the spike was observed but, lowering of grain PA resulted in the reduced number of seeds per spikelet. The lowering of grain PA was also accompanied by a significant increase in iron (Fe) and zinc (Zn) content, thereby enhancing their molar ratios (Zn:PA and Fe:PA). Overall, this work suggests that IPK1 is a promising candidate for employing genome editing tools to address the mineral accumulation in wheat grains.

10.
Sci Rep ; 6: 39293, 2016 12 20.
Artículo en Inglés | MEDLINE | ID: mdl-27995999

RESUMEN

Approaches enabling efficient phosphorus utilization in crops are of great importance. In cereal crop like wheat, utilization of inorganic phosphate (Pi) is high and mature grains are the major sink for Pi utilization and storage. Research that addresses the importance of the Pi homeostasis in developing grains is limited. In an attempt to understand the Pi homeostasis in developing wheat grains, we identified twelve new phosphate transporters (PHT), these are phyologentically well distributed along with the members reported from Arabidopsis and rice. Enhanced expression of PHT1-subfamily genes was observed in roots subjected to the Pi starvation suggesting their active role in Pi homeostasis. Differential expression patterns of all the PHT genes during grain filling stages suggested their importance in the filial tissues. Additionally, high accumulation of Pi and total P in aleurone correlates well with the expression of TaPHTs and other phosphate starvation related genes. Tissue specific transcript accumulation of TaPHT1.1, TaPHT1.2, TaPHT1.4 in aleurone; TaPHT3.1 in embryo and TaPHT4.2 in the endosperm was observed. Furthermore, their transcript abundance was affected in low phytate wheat grains. Altogether, this study helps in expanding the knowledge and prioritize the candidate wheat Pi-transporters to modulate the Pi homeostasis in cereal grains.


Asunto(s)
Arabidopsis/metabolismo , Oryza/metabolismo , Proteínas de Transporte de Fosfato/genética , Raíces de Plantas/metabolismo , Triticum/metabolismo , Arabidopsis/genética , Secuencia de Bases , Perfilación de la Expresión Génica , Regulación de la Expresión Génica de las Plantas/genética , Genoma de Planta/genética , Oryza/genética , Proteínas de Transporte de Fosfato/biosíntesis , Fosfatos/metabolismo , ARN Mensajero/genética , Análisis de Secuencia de ADN , Triticum/genética
11.
Physiol Mol Biol Plants ; 22(2): 261-9, 2016 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-27436917

RESUMEN

Artemisia pallens is an important medicinal plant. In-vitro regeneration and multiplication of A. pallens have been established using attached cotyledons. Different growth regulators were considered for regeneration of multiple shoots. An average of 36 shoots per explants were obtained by culturing attached cotyledons on Murashige and Skoog's medium containing 2 mg/L BAP and 0.1 mg/L NAA, after 45 days. The shoots were rooted best on half Murashige and Skoog's medium with respect to media containing 1 mg/L IBA or 1 mg/L NAA. Different parameters such as type of bacterial strains, OD600 of bacterial culture, co-cultivation duration, concentration of acetosyringone and explants type were optimized for transient expression of the reporter gene. Agrobacterium tumefaciens harbouring pCambia1301 plasmid carrying ß-glucuronidase as a reporter gene and hygromycin phosphotransferase as plant selectable marker genes were used for genetic transformation of A. pallens. Hygromycin lethality test showed concentration of 15 mg/L were sufficient to inhibit the growth of attached cotyledons and multiple shoot buds of nontransgenics in selection media. Up to 83 % transient transformation was found when attached cotyledons were co-cultivated with Agrobacterium strain AGL1 for 2 days at 22 °C on shoot induction medium. The bacterial growth was eliminated by addition of cefotaxime (200 mg/L) in selection media. T0 transgenic plants were confirmed by GUS histochemical assay and further by polymerase chain reaction (PCR) using uidA and hpt gene specific primers. The study is useful in establishing technological improvement in A. pallens by genetic engineering.

12.
3 Biotech ; 6(2): 182, 2016 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-28330254

RESUMEN

Artemisinin and its derivatives are still one of the most effective drugs for the treatment of malaria. Artemisia pallens commonly known as Dhavanam, is an aromatic herb belonging to the family Asteraceae. Increasing the artemisinin content of A. pallens by genetic engineering would improve the availability of this much needed drug. In the present study, Agrobacterium rhizogenes (strain NCIM 5140) mediated genetic transformation of Artemisia pallens were carried out for hairy root induction. The effect of different media (Half MS, MS, MS along with BAP 0.5 mg/l and MS along with Kinetin 0.5 mg/l) and type of explants (leaf and stem) on hairy root induction and culture were also studied. Maximum transformation efficiency (70.0 %) was observed in case of stem explants when it was co-cultivated with Agrobacterium rhizogenes and kept on half strength MS media. Artesunate is a derivative of artemisinin, was quantified using HPLC from dried aerial extract and hairy roots. The content of artesunate in hairy roots was increased up to twofold as compared to aerial part of Artemisia pallens. The maximum amount of artesunate found in hairy roots was 5.62 ± 0.16 µg/g of dry weight. Apart from artesunate the other phytochemicals like alkaloids, polyphenols, and flavonoids are important because they impart the medicinal properties in this plant. Therefore, we have also quantified total alkaloids, flavonoids and polyphenolic content in the aerial part of the plants. The total alkaloids and flavonoids content were found 1.72 ± 0.00 mg/g dry weight in aqueous extract and 3.8 ± 0.00 mg/g in methanolic extract in terms of colchicine and rutin equivalents, respectively. Similarly, total phenolic content is 3.70 ± 0.01 mg/g in ethanolic extract in terms of tannic acid equivalent.

13.
Front Plant Sci ; 6: 488, 2015.
Artículo en Inglés | MEDLINE | ID: mdl-26191068

RESUMEN

The ABCC multidrug resistance associated proteins (ABCC-MRP), a subclass of ABC transporters are involved in multiple physiological processes that include cellular homeostasis, metal detoxification, and transport of glutathione-conjugates. Although they are well-studied in humans, yeast, and Arabidopsis, limited efforts have been made to address their possible role in crop like wheat. In the present work, 18 wheat ABCC-MRP proteins were identified that showed the uniform distribution with sub-families from rice and Arabidopsis. Organ-specific quantitative expression analysis of wheat ABCC genes indicated significantly higher accumulation in roots (TaABCC2, TaABCC3, and TaABCC11 and TaABCC12), stem (TaABCC1), leaves (TaABCC16 and TaABCC17), flag leaf (TaABCC14 and TaABCC15), and seeds (TaABCC6, TaABCC8, TaABCC12, TaABCC13, and TaABCC17) implicating their role in the respective tissues. Differential transcript expression patterns were observed for TaABCC genes during grain maturation speculating their role during seed development. Hormone treatment experiments indicated that some of the ABCC genes could be transcriptionally regulated during seed development. In the presence of Cd or hydrogen peroxide, distinct molecular expression of wheat ABCC genes was observed in the wheat seedlings, suggesting their possible role during heavy metal generated oxidative stress. Functional characterization of the wheat transporter, TaABCC13 a homolog of maize LPA1 confirms its role in glutathione-mediated detoxification pathway and is able to utilize adenine biosynthetic intermediates as a substrate. This is the first comprehensive inventory of wheat ABCC-MRP gene subfamily.

14.
Plants (Basel) ; 4(2): 298-319, 2015 Jun 11.
Artículo en Inglés | MEDLINE | ID: mdl-27135330

RESUMEN

Phytic acid (PA) biosynthesis pathway genes were reported from multiple crop species. PA accumulation was enhanced during grain filling and at that time, hormones like Abscisic acid (ABA) and Gibberellic acid (GA3) interplay to control the process of seed development. Regulation of wheat PA pathway genes has not yet been reported in seeds. In an attempt to find the clues for the regulation by hormones, the promoter region of wheat PA pathway genes was analyzed for the presence of cis-elements. Multiple cis-elements of those known to be involved for ABA, GA3, salicylic acid (SA), and cAMP sensing were identified in the promoters of PA pathway genes. Eight genes (TaIMP, TaITPK1-4, TaPLC1, TaIPK2 and TaIPK1) involved in the wheat PA biosynthesis pathway were selected for the expression studies. The temporal expression response was studied in seeds treated with ABA and GA3 using quantitative real time PCR. Our results suggested that exogenous application of ABA induces few PA pathway genes in wheat grains. Comparison of expression profiles for PA pathway for GA3 and ABA suggested the antagonistic regulation of certain genes. Additionally, to reveal stress responses of wheat PA pathway genes, expression was also studied in the presence of SA and cAMP. Results suggested SA specific differential expression of few genes, whereas, overall repression of genes was observed in cAMP treated samples. This study is an effort to understand the regulation of PA biosynthesis genes in wheat.

15.
PLoS One ; 9(11): e111718, 2014.
Artículo en Inglés | MEDLINE | ID: mdl-25364903

RESUMEN

Wheat is one of the most important cereal crops in the world. To identify the candidate genes for mineral accumulation, it is important to examine differential transcriptome between wheat genotypes, with contrasting levels of minerals in grains. A transcriptional comparison of developing grains was carried out between two wheat genotypes- Triticum aestivum Cv. WL711 (low grain mineral), and T. aestivum L. IITR26 (high grain mineral), using Affymetrix GeneChip Wheat Genome Array. The study identified a total of 580 probe sets as differentially expressed (with log2 fold change of ≥2 at p≤0.01) between the two genotypes, during grain filling. Transcripts with significant differences in induction or repression between the two genotypes included genes related to metal homeostasis, metal tolerance, lignin and flavonoid biosynthesis, amino acid and protein transport, vacuolar-sorting receptor, aquaporins, and stress responses. Meta-analysis revealed spatial and temporal signatures of a majority of the differentially regulated transcripts.


Asunto(s)
Perfilación de la Expresión Génica , Regulación de la Expresión Génica de las Plantas/fisiología , Minerales/metabolismo , Semillas/metabolismo , Transcripción Genética/fisiología , Triticum/metabolismo , Secuencia de Bases , Datos de Secuencia Molecular , Semillas/genética , Especificidad de la Especie , Triticum/genética
16.
Mater Sci Eng C Mater Biol Appl ; 34: 455-67, 2014 Jan 01.
Artículo en Inglés | MEDLINE | ID: mdl-24268282

RESUMEN

In order to address the problem of bacterial infections in bone-substitution surgery, it is essential that bone replacement biomaterials are equipped with bactericidal components. This research aims to optimize the content of silver (Ag), a well-known antibacterial metal, in a multiwalled carbon nanotube (CNT) reinforced hydroxyapatite (HA) composite, to yield a bioceramic which can be used as an antibacterial and tough surface of bone replacement prosthesis. The bactericidal properties evaluated using Escherichia coli and Staphylococcus epidermidis indicate that CNT reinforcement supports growth of Gram negative E. coli bacteria (~8.5% more adhesion than pure HA); but showed a strong decrease of Gram positive S. epidermidis bacteria (~diminished to 66%) compared to that of pure HA. Small amounts of silver (2-5wt.%) already show a severe bactericidal effect when compared to that of HA-CNT (by 30% and ~60% respectively). MTT assay confirmed enhanced biocompatibility of L929 cells on HA-4wt.% CNT (~121%), HA-4wt.% CNT-1wt.% Ag (~124%) sample and HA-4wt.% CNT-2wt.% Ag (~100%) when compared to that of pure HA. The samples with higher silver content showed decreased biocompatibility (77% for HA-4wt.% CNT-5wt.% Ag sample and 73% for HA-4wt.% CNT-10wt.% Ag). Though reinforcement of 4wt.% CNT has shown an increase of fracture toughness by ~62%, silver reinforcement has shown enhancement of up to 244% (i.e. 3.43 times). Accordingly, isolation of toughening contribution indicates that volumetric toughening by silver dominates over interfacial strengthening contributed by CNTs towards enhanced fracture toughness of potential HA-Ag-CNT biocomposites.


Asunto(s)
Antibacterianos/farmacología , Materiales Biocompatibles/farmacología , Durapatita/farmacología , Nanopartículas del Metal/química , Nanotubos de Carbono/química , Plata/química , Animales , Recuento de Células , Recuento de Colonia Microbiana , Módulo de Elasticidad/efectos de los fármacos , Escherichia coli/efectos de los fármacos , Fibroblastos/citología , Fibroblastos/efectos de los fármacos , Dureza , Nanopartículas del Metal/ultraestructura , Ratones , Pruebas de Sensibilidad Microbiana , Nanotubos de Carbono/ultraestructura , Transición de Fase/efectos de los fármacos , Espectrometría por Rayos X , Espectrometría Raman , Staphylococcus epidermidis/efectos de los fármacos , Staphylococcus epidermidis/ultraestructura , Difracción de Rayos X
17.
Ren Fail ; 35(6): 801-5, 2013 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-23725207

RESUMEN

OBJECTIVE: The aim of this prospective study was to determine the outcome of patients suffering from malaria with acute renal dysfunction. METHODS: All adult patients of laboratory-proven malaria with acute kidney injury (AKI) admitted during the period of May 2010 to June 2011 were included. Patient characteristics, physical examination findings, and laboratory parameters were recorded. Patient outcome was assessed in terms of peak serum creatinine level, duration of hospital stay, need for dialysis, and in-hospital mortality rate. Surviving patients were followed up for 3 months to determine progression to chronic kidney disease. RESULTS: This study enrolled 101 patients of malarial AKI. Mean age was 33.70 ± 15.39 years. Oliguric AKI was observed in 44.6% cases. Mean duration of hospital stay was 8.75 ± 7.60 days. Renal replacement therapy was required in 36.6% patients. Ten (9.9%) patients succumbed to illness during hospital stay. Majority of deaths occurred shortly after admission. Mortality risk was significantly associated with raised LDH (p = 0.019), lower hemoglobin level (p = 0.015), raised aspartate transaminases (p < 0.001), and elevated alanine transaminases (p = 0.016). Cerebral malaria was an important determinant of mortality (p = 0.002). Renal parameters, including severity of renal dysfunction and need for dialysis, were not associated with mortality risk. Among 91 survivors, 79 patients completed a 3-month follow-up and all of them had normalization of renal function. CONCLUSION: We observed 9.9% in-hospital mortality rate in the study cohort. Cerebral malaria was an important risk factor for mortality in malarial AKI patients. Severity of renal dysfunction did not correlate with the mortality risk in our study.


Asunto(s)
Lesión Renal Aguda/parasitología , Malaria/complicaciones , Lesión Renal Aguda/mortalidad , Lesión Renal Aguda/fisiopatología , Adolescente , Adulto , Anciano , Femenino , Humanos , India/epidemiología , Malaria/mortalidad , Malaria/fisiopatología , Malaria Cerebral/complicaciones , Malaria Cerebral/mortalidad , Malaria Falciparum/complicaciones , Malaria Falciparum/mortalidad , Malaria Vivax/complicaciones , Malaria Vivax/mortalidad , Masculino , Persona de Mediana Edad , Estudios Prospectivos , Resultado del Tratamiento , Adulto Joven
18.
Int J Radiat Oncol Biol Phys ; 61(1): 257-66, 2005 Jan 01.
Artículo en Inglés | MEDLINE | ID: mdl-15629619

RESUMEN

PURPOSE: Radiotherapy is effective in treating cancer of the cervix. However, its success is associated with significant morbidity of the urinary bladder. This study has been designed to reduce the radiotherapy dose from the brachytherapy component of cervical cancer treatment to the urinary bladder to minimize radiation-induced morbidity. MATERIALS AND METHODS: By inflating the balloon of a Foley catheter at the anterior fornix region, attempts were made to displace the urinary bladder in patients undergoing gynecological intracavitary brachytherapy. The radiation dose to the urinary bladder was then studied in 12 insertions without and 31 insertions with balloon inflation. RESULTS: The increase in the distance from the intrauterine tandem source to a reference point in the base of the bladder and the resultant decrease in the radiation dose have been determined. A highly significant reduction in the radiation dose with an increase in distance between the source applicator and bladder base were achieved (p < 0.01 in both cases). CONCLUSION: A significant reduction in radiation dose to the bladder base can be achieved by the technique described in this study. A three-dimensional plan generated using CT images can demonstrate the drawback of ICRU-38 bladder reference point. The technique is simple consistent and reproducible within an acceptable range.


Asunto(s)
Braquiterapia/métodos , Cateterismo/métodos , Traumatismos por Radiación/prevención & control , Vejiga Urinaria/efectos de la radiación , Neoplasias del Cuello Uterino/radioterapia , Braquiterapia/efectos adversos , Cateterismo/instrumentación , Femenino , Humanos , Procesamiento de Imagen Asistido por Computador/métodos , Dosis de Radiación , Recto/efectos de la radiación , Tomografía Computarizada por Rayos X/métodos , Vejiga Urinaria/diagnóstico por imagen , Neoplasias del Cuello Uterino/diagnóstico por imagen
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