Literature DB >> 30091664

Acclimatization of low altitude-bred deer mice ( Peromyscus maniculatus) to high altitude.

D Merrill Dane1, Khoa Cao1, Hua Lu1, Cuneyt Yilmaz1, Jamie Dolan2, Catherine D Thaler2, Priya Ravikumar1, Kimberly A Hammond2, Connie C W Hsia1.   

Abstract

A colony of deer mice subspecies ( Peromyscus maniculatus sonoriensis) native to high altitude (HA) has been maintained at sea level for 18-20 generations and remains genetically unchanged. To determine if these animals retain responsiveness to hypoxia, one group (9-11 wk old) was acclimated to HA (3,800 m) for 8 wk. Age-matched control animals were acclimated to a lower altitude (LA; 252 m). Maximal O2 uptake (V̇o2max) was measured at the respective altitudes. On a separate day, lung volume, diffusing capacity for carbon monoxide (DLCO), and pulmonary blood flow were measured under anesthesia using a rebreathing technique at two inspired O2 tensions. The HA-acclimated deer mice maintained a normal V̇o2max relative to LA baseline. Compared with LA control mice, antemortem lung volume was larger in HA mice in a manner dependent on alveolar O2 tension. Systemic hematocrit, pulmonary blood flow, and standardized DLCO did not differ significantly between groups. HA mice showed a higher postmortem alveolar-capillary hematocrit, larger alveolar ducts, and smaller distal conducting structures. In HA mice, absolute volumes of alveolar type I epithelia and endothelia were higher whereas that of interstitia was lower than in LA mice. These structural changes occurred without a net increase in whole-lung septal tissue-capillary volumes or surface areas. Thus, deer mice bred and raised to adulthood at LA retain phenotypic plasticity and adapt to HA without a decrement in V̇o2max via structural (enlarged airspaces, alveolar septal remodeling) and nonstructural (lung expansion under hypoxia) mechanisms and without an increase in systemic hematocrit or compensatory lung growth. NEW & NOTEWORTHY Deer mice ( Peromyscus maniculatus) are robust and very active mammals that are found across the North American continent. They are also highly adaptable to extreme environments. When introduced to high altitude they retain remarkable adaptive ability to the low-oxygen environment via lung expansion and remodeling of existing lung structure, thereby maintaining normal aerobic capacity without generating more red blood cells or additional lung tissue.

Entities:  

Keywords:  aerobic capacity; high altitude; hypoxia; lung diffusing capacity; lung morphometry; ultrastructure

Mesh:

Year:  2018        PMID: 30091664      PMCID: PMC6295488          DOI: 10.1152/japplphysiol.01036.2017

Source DB:  PubMed          Journal:  J Appl Physiol (1985)        ISSN: 0161-7567


  76 in total

1.  AN ANALYSIS OF PRESSURE-VOLUME CHARACTERISTICS OF THE LUNGS.

Authors:  E SALAZAR; J H KNOWLES
Journal:  J Appl Physiol       Date:  1964-01       Impact factor: 3.531

2.  The relationship between cardiopulmonary size and aerobic performance in adult deer mice at high altitude.

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3.  Morphometric estimation of pulmonary diffusion capacity. II. Effect of Po2 on the growing lung, adaption of the growing rat lung to hypoxia and hyperoxia.

Authors:  P H Burri; E R Weibel
Journal:  Respir Physiol       Date:  1971-01

4.  Fatty diabetic lung: functional impairment in a model of metabolic syndrome.

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Journal:  J Appl Physiol (1985)       Date:  2010-08-26

5.  Genetic differences in hemoglobin function between highland and lowland deer mice.

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Journal:  J Exp Biol       Date:  2010-08-01       Impact factor: 3.312

6.  Inbred strain variation in lung function.

Authors:  Claudia Reinhard; Gunter Eder; Helmut Fuchs; Axel Ziesenis; Joachim Heyder; Holger Schulz
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7.  Bleomycin-induced diffuse interstitial pulmonary fibrosis in baboons. II. Further studies on connective tissue changes.

Authors:  J F Collins; B McCullough; J J Coalson; W G Johanson
Journal:  Am Rev Respir Dis       Date:  1981-03

8.  Left ventricular dysfunction and associated cellular injury in rats exposed to chronic intermittent hypoxia.

Authors:  Ling Chen; Jin Zhang; Tracey X Gan; Ye Chen-Izu; Jeffrey D Hasday; Morris Karmazyn; C William Balke; Steven M Scharf
Journal:  J Appl Physiol (1985)       Date:  2007-11-15

9.  Pulmonary artery occlusion increases the ratio of diffusing capacity for nitric oxide to carbon monoxide in prone sheep.

Authors:  R Scott Harris; Mehrnaz Hadian; Dean R Hess; Yuchiao Chang; José G Venegas
Journal:  Chest       Date:  2004-08       Impact factor: 9.410

10.  Truncated recombinant human SP-D attenuates emphysema and type II cell changes in SP-D deficient mice.

Authors:  Lars Knudsen; Matthias Ochs; Rosemarie Mackay; Paul Townsend; Roona Deb; Christian Mühlfeld; Joachim Richter; Fabian Gilbert; Samuel Hawgood; Kenneth Reid; Howard Clark
Journal:  Respir Res       Date:  2007-10-03
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