1.The hard tissue thickness of primary teeth studied by CBCT
Panxi WANG ; Jinyi LI ; Zhengyang LI ; Shuqi ZHANG ; Qingyu GUO ; Fei LIU
Journal of Practical Stomatology 2024;40(5):703-707
Objective:To analyze the hard tissue thickness in the crown of primary teeth by CBCT.Methods:The CBCT imaging data of 47 children were included,and the hard tissue thickness of primary teeth was measured by MIMICS software.SPSS 22.0 was used for data analysis.Results:The average thickness in the mesial surfaces was the smallest(P<0.01),except for the libial surface of maxillary central incisor and the distal surface of mandibular first primary molar.In primary anteriors,the thickness in the same sur-face of maxillary teeth was greater than that of mandibular teeth significantly(P<0.01)except for the libial surface of primary canine.In primary molars,the thickness of hard tissue in the same part of the distal and lingual side of the maxillary teeth was greater than that of the mandibular teeth(P<0.01),and the thickness in the buccal side of maxillary teeth was lower than that of the mandibular teeth(P<0.01).Conclusion:The distribution of hard tissue thickness of primary teeth in different position is different.
2.Quality evaluation of different processed products of Aconiti Lateralis Radix Praeparata combining bioassay and toxicity detection
Ding-kun ZHANG ; Zhi-hao ZHAO ; Chun-yu LI ; Ming NIU ; Peng TAN ; Jin PEI ; Ming YANG ; Cheng PENG ; Ping ZHANG ; Xiao-he XIAO ; Jia-bo WANG
Acta Pharmaceutica Sinica 2019;54(12):2169-2177
There are many kinds of processed products of Aconiti Lateralis Radix Praeparata (ALRP), but their differences in toxicity and efficacy have not been identified. The minimum premature ventricular contraction (PVC) method was used to evaluate the biological toxicity of eight processed products. The results showed that the minimal toxic dose (MTD) of an ethanol extract of Shengfupian (SFP) was 0.16 g·kg-1, which was much lower than that of Heishunpian (HSP), Baifupian (BFP), Baofupian (BAP), Paofuzi (PFZ) or Zhengfupian (ZFP), with MTDs ranging from 2.64 to 5.75 g·kg-1. No cardiotoxicity was detected with Chaofupian (CFP) and Paotianxiong (PTX). A novel +d
3.Establishment of one-step approach to detoxification of hypertoxic aconite based on the evaluation of alkaloids contents and quality.
Ding-Kun ZHANG ; Xue HAN ; Peng TAN ; Rui-Yu LI ; Ming NIU ; Cong-En ZHANG ; Jia-Bo WANG ; Ming YANG ; Xiao-He XIAO
Chinese Journal of Natural Medicines (English Ed.) 2017;15(1):49-61
Aconite is a valuable drug and also a toxic material, which can be used only after detoxification processing. Although traditional processing methods can achieve detoxification effect as desired, there are some obvious drawbacks, including a significant loss of alkaloids and poor quality consistency. It is thus necessary to develop a new detoxification approach. In the present study, we designed a novel one-step detoxification approach by quickly drying fresh-cut aconite particles. In order to evaluate the technical advantages, the contents of mesaconitine, aconitine, hypaconitine, benzoylmesaconine, benzoylaconine, benzoylhypaconine, neoline, fuziline, songorine, and talatisamine were determined using HPLC and UHPLC/Q-TOF-MS. Multivariate analysis methods, such as Clustering analysis and Principle component analysis, were applied to determine the quality differences between samples. Our results showed that traditional processes could reduce toxicity as desired, but also led to more than 85.2% alkaloids loss. However, our novel one-step method was capable of achieving virtually the same detoxification effect, with only an approximately 30% alkaloids loss. Cluster analysis and Principal component analysis analyses suggested that Shengfupian and the novel products were significantly different from various traditional products. Acute toxicity testing showed that the novel products achieved a good detoxification effect, with its maximum tolerated dose being equivalent to 20 times of adult dosage. And cardiac effect testing also showed that the activity of the novel products was stronger than that of traditional products. Moreover, particles specification greatly improved the quality consistency of the novel products, which was immensely superior to the traditional products. These results would help guide the rational optimization of aconite processing technologies, providing better drugs for clinical treatment.
Aconitum
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adverse effects
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chemistry
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toxicity
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Alkaloids
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adverse effects
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analysis
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toxicity
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Animals
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Cardiovascular Agents
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adverse effects
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chemistry
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standards
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toxicity
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Desiccation
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methods
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Drugs, Chinese Herbal
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adverse effects
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chemistry
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standards
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toxicity
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Male
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Maximum Tolerated Dose
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Plant Roots
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chemistry
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Rats, Sprague-Dawley
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Technology, Pharmaceutical
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methods