Acute and Chronic Effects of Dietary Lactose in Adult Rats Are not Explained by Residual Intestinal Lactase Activity
Abstract
:1. Introduction
2. Experimental Section
2.1. Animals
2.2. Study A: Intestinal Lactase Activity Assessment
2.2.1. In Vivo Lactase Activity Test
2.2.2. In Vitro Lactase Activity Test
2.3. Study B: Lactose Testing in Adult Rats
2.4. GX-Product Preparation
2.5. Chromatography
2.6. Statistics
3. Results
3.1. Effect of Lactose Containing Diets during Development
3.1.1. Study A: Growth
Diet | Body Weight | Liver | Pancreas | m. tibialis | Caecum |
---|---|---|---|---|---|
control | 430 (20.0) | 15.4 | 0.92 (0.06) | 0.80 | 3.9 (0.41) |
lactose | 362 (7.6) | 14.0 (0.5) | 1.38 (0.02) * | 0.73 (0.02) | 11.6 (0.83) * |
3.1.2. Study A: Intestinal Lactase Activity Assessments
3.2. Study B: Lactose Testing in Adult Rats
4. Discussion
5. Conclusions
Acknowledgments
Author Contributions
Conflicts of Interest
References
- Kretchmer, N. Expression of lactase during development. Am. J. Hum. Genet. 1989, 45, 487–488. [Google Scholar] [PubMed]
- Witte, J.; Lloyd, M.; Lorenzsonn, V.; Korsmo, H.; Olson, W. The biosynthetic basis of adult lactase deficiency. J. Clin. Investig. 1990, 86, 1338–1342. [Google Scholar] [CrossRef] [PubMed]
- Sebastio, G.; Villa, M.; Satorio, R.; Guzetta, V.; Poggi, V.; Auricchio, S.; Boll, W.; Mantei, N.; Semenza, G. Control of lactase in human adult-tpe hypolactasia and in weaning rabbits and rats. Am.J. Hum.Genet. 1989, 45, 489–497. [Google Scholar] [PubMed]
- Montgomery, R.K.; Büller, H.A.; Rings, E.H.H.M.; Grand, R.J. Lactose intolerance and the genetic regulation of intestinal lactase-phlorizin hydrolase. FASEB J. 1991, 5, 2824–2832. [Google Scholar] [PubMed]
- O’Connor, T.P.; Diamond, J. Ontogeny of intestinal safety factors: Lactase capacities and loactose loads. Am. J. Physiol. 1999, 276, R753–R765. [Google Scholar] [PubMed]
- Motohashi, Y.; Fukushima, A.; Kondo, T.; Sakuma, K. Lactase decline in weaning rats is regulated at the transcriptional level and not caused by termination of milk ingestion. J. Nutr. 1997, 127, 1737–1743. [Google Scholar] [PubMed]
- Lawrence, J.V.; Fischer, J.E.; Sutton, T.S.; Weiser, H.H. Adaptation of the rat to a higher lactose diet, effect of the size of the cecum. Ohio J. Sci. 1956, 56, 87–92. [Google Scholar]
- Kim, K.I.; Benevenga, N.J.; Grummer, R.H. Estimation of the fraction of the lactose in a high lactose diet available for fermentation in the cecum and colon of the rat. J. Nutr. 1978, 108, 79–89. [Google Scholar] [PubMed]
- Reeves, P.G.; Nielsen, F.H.; Fahey, G.C., Jr. Ain-93 purified diets for laboratory rodents: Final report of the american institute of nutrition ad hoc writing committee on the reformulation of the ain-76a rodent diet. J. Nutr. 1993, 123, 1939–1951. [Google Scholar] [PubMed]
- Hermida, C.; Corrales, G.; Martinez-Costa, O.H.; Fernandez-Mayoralas, A.; Aragon, J.J. Noninvasive evaluation of intestinal lactase with 4-galactosylxylose: Comparison with 3- and 2-galactosylxylose and optimization of the method in rats. Clin. Chem. 2006, 52, 270–277. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Aragon, J.J.; Fernandez-Mayoralas, A.; Jimenez-Barbero, J.; Martin-Lomas, M.; Rivera-Sagredo, A.; Villanueva, D. Evaluation of rat intestinal lactase in vivo with 4-galactosylxylose. Clin. Chim. Acta 1992, 210, 221–226. [Google Scholar] [CrossRef]
- Dahlqvist, A. Assay of intestinal disaccharidases. Anal. Biochem. 1968, 22, 99–107. [Google Scholar] [CrossRef]
- Severijnen, C.; Abrahamse, E.; van der Beek, E.M.; Buco, A.; van de Heijning, B.J.; van Laere, K.; Bouritius, H. Sterilization in a liquid of a specific starch makes it slowly digestible in vitro and low glycemic in rats. J. Nutr. 2007, 137, 2202–2207. [Google Scholar] [PubMed]
- Aragon, J.J.; Canada, F.J.; Fernandez-Mayoralas, A.; Lopez, R.; Martin-Lomas, M.; Villanueva, D. A direct enzymatic synthesis of b-d-galactopyranosyl-d-xylopyranosides and their use to evaluate rat intestinal lactase activity in vivo. Carbohydr. Res. 1996, 290, 209–216. [Google Scholar] [CrossRef]
- Leichter, J. Effect of dietary lactose on intestinal lactase activity in young rats. J. Nutr. 1973, 103, 392–396. [Google Scholar] [PubMed]
- Tadesse, K. The effect of continued feeding of physiological amounts of lactose on the level of intestinal lactase and other disaccharidase enzyme activities in the rat. Exp. Physiol. 1990, 75, 231–238. [Google Scholar] [CrossRef] [PubMed]
- During, M.J.; Xu, R.; Young, D.; Kaplitt, M.G.; Sherwin, R.S.; Leone, P. Peroral gene therapy of lactose intolerance using an adeno-associated virus vector. Nat. Med. 1998, 4, 1131–1135. [Google Scholar] [CrossRef] [PubMed]
- Abrams, S.A.; Griffin, I.J.; Davila, P.M. Calcium and zinc absorption from lactose-containing and lactose-free infant formulas. Am. J. Clin. Nutr. 2002, 76, 442–446. [Google Scholar] [PubMed]
- Yeh, K.Y.; Holt, P.R. Rat milk maintains intestinal lactase activity in rat pups whereas artificial formulas do not. Pediatr. Res. 1985, 19, 963–967. [Google Scholar] [CrossRef] [PubMed]
- Jones, D.P.; Sosa, F.R.; Skromak, E. Effects of sucrose, glucose and lactose on intestinal disaccharidases in the rat. J. Lab. Clin. Med. 1972, 79, 19–30. [Google Scholar] [PubMed]
- Jang, I.; Jung, K.; Cho, J. Influence of age on duodenal brush border membrane and specific activities of brush border membrane enzymes in wistar rats. Exp. Anim. 2000, 49, 281–287. [Google Scholar] [CrossRef] [PubMed]
- Redman, R.S.; Sweney, L.R. Change in diet and pattersn of feeding activity of developing rats. J. Nutr. 1976, 106, 615–626. [Google Scholar] [PubMed]
- Tomarelli, R.M.; Hartz, R.; Bernhart, F.W. The effect of lactose feeding on the body fat of the rat. J. Nutr. 1960, 71, 221–228. [Google Scholar] [PubMed]
- Goseki-Sone, M.; Maruyama, R.; Sogabe, N.; Hosoi, T. Effects of dietary lactose on long-term high-fat-diet-induced obesity in rats. Obesity (Silver Spring) 2007, 15, 2605–2613. [Google Scholar] [CrossRef] [PubMed]
- Ziegler, E.E.; Fomon, S.J. Lactose enhances mineral absorption in infancy. J. Pediatr. Gastroenterol. Nutr. 1983, 2, 288–294. [Google Scholar] [CrossRef] [PubMed]
- Zemel, M.B.; Miller, S.L. Dietary calcium and dairy modulation of adiposity and obesity risk. Nutr. Rev. 2004, 62, 125–131. [Google Scholar] [CrossRef] [PubMed]
- Gall, D.G.; Chung, M.; O’Loughlin, E.V.; Zahavi, I.; Opleta, K. Effects of parenteral and enteral nutrition on postnatal development of the small intestine and pancreas in the rabbit. Biol. Neonate 1987, 51, 286–296. [Google Scholar] [CrossRef] [PubMed]
- Sangild, P.T.; Petersen, Y.M.; Schmidt, M.; Elnif, J.; Petersen, T.K.; Buddington, R.K.; Greisen, G.; Michaelsen, K.F.; Burrin, D.G. Preterm birth affects the intestinal response to parenteral and enteral nutrition in newborn pigs. J. Nutr. 2002, 132, 3786–3794. [Google Scholar] [PubMed]
- Buyken, A.E.; Cheng, G.; Guenther, A.L.B.; Liese, A.D.; Remer, T.; Karaolis-Danckert, N. Relation of dietary glycemic index, glycemic load, addes sugar intake, or fiber intake to the development of body composition between ages 2 and 7 years. Am. J. Clin. Nutr. 2008, 88, 755–762. [Google Scholar] [PubMed]
- McMillan-Price, J.; Petocz, P.; Atkinson, F.; O'Neill, K.; Samman, S.; Steinbeck, K.; Caterson, I.; Brand-Miller, J. Comparison of 4 diets of varying glycemic load on weight loss and cardiovascular risk reduction in overweight and obese young adults: A randomized controlled trial. Arch. Intern. Med. 2006, 166, 1466–1475. [Google Scholar] [CrossRef] [PubMed]
- Fosbrooke, A.D.; Wharton, B.A. “Added lactose” and “added sucrose” cow’s milk formulae in nutrition of low birthweight babies. Arch. Dis. Child. 1975, 50, 409–418. [Google Scholar] [CrossRef] [PubMed]
- Goda, T.; Bustamante, S.; Koldovsky, O. Dietary regulation of intestinal lactase and sucrase in adult rats: Quantitative comparison of effect of lactose and sucrose. J. Pediatr. Gastroenterol. Nutr. 1985, 4, 998–1008. [Google Scholar] [CrossRef] [PubMed]
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De Heijning, B.J.M.v.; Kegler, D.; Schipper, L.; Voogd, E.; Oosting, A.; Beek, E.M.v.d. Acute and Chronic Effects of Dietary Lactose in Adult Rats Are not Explained by Residual Intestinal Lactase Activity. Nutrients 2015, 7, 5542-5555. https://doi.org/10.3390/nu7075237
De Heijning BJMv, Kegler D, Schipper L, Voogd E, Oosting A, Beek EMvd. Acute and Chronic Effects of Dietary Lactose in Adult Rats Are not Explained by Residual Intestinal Lactase Activity. Nutrients. 2015; 7(7):5542-5555. https://doi.org/10.3390/nu7075237
Chicago/Turabian StyleDe Heijning, Bert J. M. van, Diane Kegler, Lidewij Schipper, Eline Voogd, Annemarie Oosting, and Eline M. van der Beek. 2015. "Acute and Chronic Effects of Dietary Lactose in Adult Rats Are not Explained by Residual Intestinal Lactase Activity" Nutrients 7, no. 7: 5542-5555. https://doi.org/10.3390/nu7075237
APA StyleDe Heijning, B. J. M. v., Kegler, D., Schipper, L., Voogd, E., Oosting, A., & Beek, E. M. v. d. (2015). Acute and Chronic Effects of Dietary Lactose in Adult Rats Are not Explained by Residual Intestinal Lactase Activity. Nutrients, 7(7), 5542-5555. https://doi.org/10.3390/nu7075237