| Literature DB >> 25276183 |
Hongfei Liu1, Shuangshuang Shi1, Weisan Pan2, Changshan Sun2, Xiaomian Zou2, Min Fu1, Yingshu Feng3, Hui Ding1.
Abstract
The main objective of this study was to investigate biocompatibility and provide in-vivo pharmacological and toxicological evidence for further investigation of the possibility of pH sensitive ion exchange resin microsphere for clinical utilizations. Acute toxicity study and general pharmacological studies were conducted on the pH sensitive ion exchange resin microsphere we prepared. The general pharmacological studies consist of the effects of the pH sensitive ion exchange resin microsphere on the nervous system of mice, the functional coordination of mice, the hypnosis of mice treated with nembutal at subliminal dose, the autonomic activities of tested mice, and the heart rate, blood pressure, ECG and breathing of the anesthetic cats. The LD50 of pH sensitive ion exchange resin microsphere after oral administration was more than 18.84 g·Kg(-1). Mice were orally administered with 16 mg·Kg(-1), 32 mg·Kg(-1) and 64 mg·Kg(-1) of pH sensitive ion exchange resin microsphere and there was no significant influence on mice nervous system, general behavior, function coordination, hypnotic effect treated with nembutal at subliminal dose and frequency of autonomic activities. Within the 90 min after 5 mg·Kg(-1), 10 mg·Kg(-1), 20 mg·Kg(-1) pH sensitive ion exchange resin microsphere was injected to cat duodenum, the heart rate, blood pressure, breathing and ECG of the cats didn't make significant changes in each experimental group compared with the control group. The desirable pharmacological and toxicological behaviors of the pH sensitive ion exchange resin microsphere exhibited that it has safe biocompatibility and is possible for clinical use.Entities:
Keywords: Biocompatibility; Microsphere; Pharmacology; Toxicology; pH sensitive ion exchange resin
Year: 2014 PMID: 25276183 PMCID: PMC4177643
Source DB: PubMed Journal: Iran J Pharm Res ISSN: 1726-6882 Impact factor: 1.696
Effect of pH sensitive ion exchange resin on autonomic activities in mice(±SD,n=10)
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| Control | - | 126.0±51.9 | 118.6±55.5 | 77.3±34.9 | 61.0±36.9 | 48.8±37.2 | |
| pH sensitive ion exchange resin | 16 | 118.7±54.6 | 91.0±35.3 | 66.5±26.1 | 44.1±18.4 | 61.1±25.2 | |
| 32 | 119.7±45.9 | 80.4±35.7 | 61.2±23.9 | 40.5±25.4 | 47.6±20.9 | ||
| 64 | 126.9±37.5 | 107.2±48.6 | 85.1±47.4 | 83.9±45.7 | 35.6±22.6 | ||
P>0.05, compared with Control.
Effect of pH sensitive ion exchange resin on heart rate in anesthetized cats(±SD,vices /min,n=6).
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| 4ml/kg | 20mg/kg | 10mg/kg | 5mg/kg | |
| 0′ | 181±18 | 198±26 | 205±14 | 190±23 |
| 5′ | 180±21 | 200±34 | 191±27 | 187±22 |
| 15′ | 181±23 | 205±32 | 197±18 | 199±24 |
| 30′ | 186±21 | 208±30 | 203±15 | 204±25 |
| 60′ | 206±23 | 208±31 | 200±22 | 207±26 |
| 90′ | 204±17 | 219±29 | 199±24 | 214±40 |
P>0.05, compared with Control
Effect of pH sensitive ion exchange resin on Q-T interval of electrokardiogram in anesthetized cats(±SD, ms,n=6)
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| 0′ | 251±33 | 246±47 | 236±24 | 255±27 |
| 5′ | 251±29 | 253±64 | 247±30 | 252±26 |
| 15′ | 247±26 | 241±49 | 243±29 | 245±31 |
| 30′ | 241±25 | 241±40 | 233±22 | 240±29 |
| 60′ | 231±26 | 236±39 | 248±37 | 223±21 |
| 90′ | 225±35 | 217±27 | 235±30 | 231±24 |
P>0.05, compared with Control
Effect of pH sensitive ion exchange resin on mean arterial blood pressure (MAP) in anesthetized cats (±SD,Kpa,n=6).
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| 4 mL/Kg | 20 mg/Kg | 10 mg/Kg | 5 mg/Kg | |
| 0′ | 30±3 | 30±4 | 29±5 | 30±4 |
| 5′ | 31±3 | 29±3 | 28±4 | 29±3 |
| 15′ | 30±4 | 30±3 | 29±4 | 28±4 |
| 30′ | 30±3 | 29±3 | 30±4 | 27±4 |
| 60′ | 28±4 | 28±3 | 30±4 | 27±4 |
| 90′ | 28±4 | 28±3 | 20±4 | 27±5 |
P>0.05, compared with Control
Effect of pH sensitive ion exchange resin on breathing rate in anesthetized cats (±SD,vices/min,n=6)
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| 0′ | 52±36 | 36±20 | 56±30 | 51±28 |
| 5′ | 43±16 | 33±16 | 42±16 | 41±13 |
| 15′ | 46±13 | 35±17 | 44±13 | 44±16 |
| 30′ | 50±20 | 40±21 | 55±23 | 47±22 |
| 60′ | 57±24 | 41±19 | 48±22 | 52±22 |
| 90′ | 54±23 | 42±20 | 45±11 | 51±25 |
P>0.05, compared with Control
Effect of pH sensitive ion exchange resin on respiratory depth in anesthetized cats(±SD,g,n=6).
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| 0′ | 6.66±1.69 | 7.60±1.76 | 7.51±1.93 | 7.17±1.91 |
| 5′ | 6.98±1.61 | 7.71±2.34 | 8.43±2.30 | 7.51±1.95 |
| 15′ | 6.34±2.16 | 7.98±2.26 | 9.13±2.49 | 8.02±2.62 |
| 30′ | 7.60±2.16 | 8.33±1.26 | 9.68±2.24 | 8.36±2.65 |
| 60′ | 7.76±2.01 | 9.21±1.88 | 9.91±2.93 | 9.16±2.24 |
| 90′ | 7.36±2.66 | 9.35±2.01 | 8.88±2.99 | 8.54±2.16 |
P>0.05, compared with Control
Effect of pH sensitive ion exchange resin on P wave of electrokardiogram in anesthetized cats(±SD, mV,n=6)
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| 0′ | 0.16±0.03 | 0.16±0.05 | 0.19±0.04 | 0.19±0.04 |
| 5′ | 0.18±0.04 | 0.16±0.06 | 0.20±0.05 | 0.17±0.04 |
| 15′ | 0.17±0.03 | 0.18±0.05 | 0.22±0.05 | 0.18±0.05 |
| 30′ | 0.17±0.03 | 0.18±0.05 | 0.21±0.06 | 0.19±0.05 |
| 60′ | 0.18±0.07 | 0.17±0.04 | 0.22±0.05 | 0.20±0.04 |
| 90′ | 0.21±0.07 | 0.17±0.05 | 0.22±0.07 | 0.21±0.04 |
P>0.05, compared with Control
Effect of pH sensitive ion exchange resin on T wave of electrokardiogram in anesthetized cats (±SD mV,n=6)
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| 0′ | 0.39±0.14 | 0.28±0.10 | 0.30±0.18 | 0.39±0.24 |
| 5′ | 0.46±0.13 | 0.34±0.08 | 0.33±0.20 | 0.43±0.26 |
| 15′ | 0.52±0.28 | 0.30±0.08 | 0.31±0.19 | 0.41±0.23 |
| 30′ | 0.46±0.23 | 0.30±0.08 | 0.31±0.19 | 0.39±0.23 |
| 60′ | 0.39±0.23 | 0.29±0.08 | 0.33±0.23 | 0.37±0.21 |
| 90′ | 0.42±0.24 | 0.29±0.08 | 0.34±0.25 | 0.39±0.23 |
P>0.05, compared with Control
Effect of pH sensitive ion exchange resin on QRS wave of electrokardiogram in anesthetized cats(±SD,ms,n=6).
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| 0′ | 18±5 | 19±5 | 19±9 | 22±6 |
| 5′ | 21±5 | 20±6 | 19±7 | 19±5 |
| 15′ | 21±6 | 21±5 | 19±5 | 22±4 |
| 30′ | 19±9 | 19±5 | 19±5 | 19±3 |
| 60′ | 19±5 | 19±2 | 18±2 | 20±4 |
| 90′ | 18±6 | 17±2 | 17±5 | 18±6 |
P>0.05, compared with Control
Effect of pH sensitive ion exchange resin on P-R interval of electrokardiogram in anesthetized cats(±SD, ms,n=6).
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| 0′ | 53±9 | 53±5 | 49±9 | 46±3 |
| 5′ | 48±9 | 55±7 | 48±4 | 50±7 |
| 15′ | 49±3 | 53±7 | 49±5 | 47±7 |
| 30′ | 50±7 | 52±3 | 49±5 | 48±6 |
| 60′ | 45±6 | 53±6 | 48±4 | 49±6 |
| 90′ | 50±9 | 48±7 | 51±4 | 47±4 |
P>0.05, compared with Control