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1.
Heliyon ; 10(9): e29834, 2024 May 15.
Artigo em Inglês | MEDLINE | ID: mdl-38707405

RESUMO

By integrating balanced rice growing technology components, getting rice organoleptic tests from the rice produced, and learning about the community acceptability of the applied technology components, this study seeks to ascertain the growth response and NSV production of specific and site-specific rice. The study was carried out in rice paddies. five different types of technology bundles in a randomized group trial design. Each treatment unit and replication in the five iterations of the experiment used 0.3 ha. Acceptance in the community using a survey approach with fifty participants. The results indicated that the Inpari 42 and Inpari 45 seedlings developed the tallest plants between 77 and 81 days after planting. Inpari 32 had the most tillers, which was the same as Inpari 42 and Pamelen. Pamelen yielded the most productive tillers and the least amount of non-productive tillers. The largest plant height was measured 98-102 days following the Inpari 42 seedlings, while the highest number of tillers were found in Pamelen, Inpari 32, and Inpari 42. Inpari 42 has the widest flag leaf area. The most abundant grain component produced by Inpari 42 is the number of grains per panicle and the full grain per panicle. The highest production is produced by Inpari 32. The panelists' favored rice varieties were Inpari 32, Inpari 42, and Inpari 45 based on the rice's organoleptic test results (color, aroma, taste, and texture). Inpari 32, Inpari 45, and Inpari Nutrizinc rice had greater brightness. Inpari 45 is yellowish, and Pamelen is quite red. Pamelen and Inpari Nutrizinc are the same. The high adoption rate of 8766 % and the rapid diffusion of applied technology to nearby villages and other regions indicate that the community has a very positive attitude toward technology.

2.
Carbohydr Res ; 539: 109118, 2024 May.
Artigo em Inglês | MEDLINE | ID: mdl-38643705

RESUMO

Microbial exopolysaccharides (EPSs) have emerged as a fascinating area of research in the field of pharmacology due to their diverse and potent biological activities. This review paper aims to provide a comprehensive overview of the pharmacological properties exhibited by EPSs, shedding light on their potential applications in various therapeutic areas. The review begins by introducing EPSs, exploring their various sources, significance in microbial growth and survival, and their applications across different industries. Subsequently, a thorough examination of the pharmaceutical properties of microbial EPSs unveils their antioxidant, immunomodulatory, antimicrobial, antidepressant, antidiabetic, antiviral, antihyperlipidemic, hepatoprotective, anti-inflammatory, and anticancer activities. Mechanistic insights into how different EPSs exert these therapeutic effects have also been discussed in this review. The review also provides comprehensive information about the monosaccharide composition, backbone, branches, glycosidic bonds, and molecular weight of pharmacologically active EPSs from various microbial sources. Furthermore, the factors that can affect the pharmacological activities of EPSs and approaches to improve the EPSs' pharmacological activity have also been discussed. In conclusion, this review illuminates the immense pharmaceutical promise of microbial EPS as versatile bioactive compounds with wide-ranging therapeutic applications. By elucidating their structural features, biological activities, and potential applications, this review aims to catalyze further research and development efforts in leveraging the pharmaceutical potential of microbial EPS for the advancement of human health and well-being, while also contributing to sustainable and environmentally friendly practices in the pharmaceutical industry.


Assuntos
Polissacarídeos Bacterianos , Polissacarídeos Bacterianos/química , Polissacarídeos Bacterianos/farmacologia , Humanos , Animais
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