metricas
covid
Buscar en
Clinics
Toda la web
Inicio Clinics Familial gigantism
Journal Information
Vol. 67. Issue S1.
Pages 29-32 (April 2012)
Share
Share
Download PDF
More article options
Vol. 67. Issue S1.
Pages 29-32 (April 2012)
REVIEW
Open Access
Familial gigantism
Visits
991
Wouter W. de Herder
Corresponding author
w.w.deherder@erasmusmc.nl

Tel.: 31 10 7035950
Department of Internal Medicine, Sector of Endocrinology, Erasmus MC, Rotterdam, the Netherlands.
This item has received

Under a Creative Commons license
Article information
Abstract
Full Text
Bibliography
Download PDF
Statistics
Figures (1)
Special issue
This article is part of special issue:
Vol. 67. Issue S1
More info

Familial GH-secreting tumors are seen in association with three separate hereditary clinical syndromes: multiple endocrine neoplasia type 1, Carney complex, and familial isolated pituitary adenomas.

KEYWORDS:
Acromegaly
Gigantism
Pituitary
History
Hereditary
Full Text
HISTORICAL OVERVIEW

In 1886, Dr Pierre Marie used the term “acromegaly” for the first time and described the full clinical characteristics of this condition (1). However, twenty-two years prior in 1864, Dr. Andrea Verga had already named the same disorder “prosopo-ectasia” [widening of the face] (2). At the postmortem examination of an acromegalic woman (with “prosopo-ectasia”), he found a walnut-sized sellar tumor and displacement of the optic nerves (2). A normal pituitary gland was not found. He wondered whether the normal pituitary gland had disappeared because of pressure from the tumor or whether the tumor itself was a degeneration of the gland (2). Also, Dr. V. Brigidi described in 1877 a case report that included findings obtained at the autopsy of the acromegalic Italian actor Ghirlenzoni (3). Dr. V. Brigidi had diagnosed this condition as “rheumatitis deformans” and made the significant observation of a hypertrophied pituitary gland on the first microscopic examination of a pituitary tumor (3). In 1887, Dr. Oskar Minkowski reported that pituitary enlargement is found in all postmortem studies on patients with acromegaly (4). In 1892, Dr. Roberto Massalongo was able to correlate acromegaly with increased pituitary function by demonstrating that a pituitary tumor taken from a patient with acromegaly contained specific granulated cells (5). At the end of the 19th century, the relationship between pituitary hyperfunction-hypertrophy (or a hyperfunctioning pituitary tumor) and acromegaly was clearly established and confirmed by many investigators (6–12). Dr. Henri Henrot had already published in 1877 an autopsy report of a patient with gigantism, in whom a 4.5 × 3.0 cm tumor was found in the position of the pituitary body (13),(14).

Initially, it was believed that acromegaly and gigantism were two totally different diseases. Dr. Pierre Marie (15–21), his intern Dr. J.D. Souza-Leite (22) and Dr. Georges Guinon (23) were convinced that acromegaly and gigantism were two entirely different disorders. Gigantism was considered an exaggerated variant of normal development, whereas acromegaly was considered as a pathological condition. However, in 1884, Drs. Christian F. Fritsche and Theodor Albrecht Edwin Klebs (24), supported by the work of Dr. Karl Langer (1872) (25), concluded that in contrast to gigantism, which they considered a congenital disorder, acromegaly is an acquired variety of gigantism that occurs at a later age after growth is completed. In 1894, Dr. M. Sternberg concluded that there are many similarities between acromegaly and gigantism (26). However, in 1897 he changed his view and agreed with Dr. Pierre Marie and others that both disorders have different origins (27). In 1891, Dr. D.J. Cunningham, after studying the skeleton of the Irish giant Cornelius Magrath (1736–1760; height: 2.26 m [7 ft, 5 in]), pointed out the connection between acromegaly and gigantism (28–30). In 1893, Dr. Charles Dana (31) and Dr. Woods Hutchinson (32) described the case report and postmortem studies of the French giantess Emma Aline Bataillard (also known as Lady Aama, 1877–1895; height: 2.03 m [6 ft, 8 in]) and reached the same conclusion. After studying the acromegalic giant Jean-Pierre Mazas (1847–1901; height: 2.30 m [7 ft, 6½ in]), the so-called “giant of Montastruc” (Monastruc, Haute-Garonne, France) in 1895, Drs. Édouard Brissaud and Henry Meige also concluded that acromegaly and gigantism can coexist in the same person (33),(34).

It gradually became evident that acromegaly and gigantism have the same pathogenetic mechanism, but differ regarding the age of onset. Gigantism occurs much earlier in life when the skeleton still has the potential to grow, a developmental phase now known as “prepubertal” (33–35). Finally, the cause of acromegaly and gigantism — the overproduction of pituitary growth hormone — became known in the early years of the 20th century (36).

Familial acromegaly and familial gigantism are extremely rare. The earliest report of familial gigantism may be that of Goliath, described in in the Bible, where it is stated that his father and three brothers were also giants. The first description of familial acromegaly in the medical literature is most likely a report by Fraenkel that was published in 1901 (37),(38). The Ugo brothers, or Hugo brothers, also known in France as “les Géants des Alpes” (“the Giants of the Alps”) (Figure 1), were two famous giants who traveled the world and appeared at fairs and circuses at the end of the 19th century and the beginning of the 20th century. Battista Ugo (in French: Baptiste Hugo, 1876–1916) attained a height of 2.30 m (7 ft, 7 in) and Paolo Antonio Ugo (in French: Antoine Hugo, 1887–1914) attained a height of 2.25 m (7 ft, 5 in) (39–41). Their parents, three brothers and two sisters were of average size. The postmortem examination of Baptiste Hugo was performed and published by Dr. D. Symmers at the William Parker Hospital in New York. The report describes a pituitary adenoma measuring 5 × 2.5 × 2.3 cm (2 × 1 × 0.9 in) and weighing 5.94 g with suprasellar expansion that compressed both optic nerves. Left parasellar and retrosellar expansion were also found.

Figure 1.

Familial gigantism in the two Hugo brothers. Top row: Battista Ugo (Baptiste Hugo), 1876–1916, reached a height of 2.30 m (7 ft, 7 in) and Paolo Antonio Ugo (Antoine Hugo), 1887–1914, reached a height of 2.25 m (7 ft, 5 in). Bottom row: the parents of the Ugo brothers, Teresa Chiardola (1849–1905) and Antonio Ugo (1840–1917), and their sister, Maddalena Ugo (1885–1960). Picture from the collection of Dr. W. W. de Herder.

(0.12MB).

In his famous monograph, “The Pituitary Body and its Disorders”, published in 1912, Dr. Harvey Cushing (42) hinted at “Mendelian tendencies” in two patients with familial gigantism (case XIII, surgical No. 27784, pp. 8–92; case XXXI, surgical No. 27011½, pp. 158–162) (42).

Since these initial reports, several authors have reported the coincidence of acromegaly and gigantism in first-degree relatives (43–55).

Clinical relevance

Growth hormone (GH)-secreting pituitary adenomas have an annual incidence of about 3 per 1,000,000 and a prevalence of about 60 per 1,000,000. The likelihood of multiple GH-secreting tumors presenting among first-degree relatives within a single family is, therefore, statistically very uncommon, and their occurrence has prompted many researchers to consider this an inheritable disorder (56).

Familial GH-secreting tumors are seen in association with three separate hereditary clinical syndromes: (1) multiple endocrine neoplasia type 1 (MEN1), (2) Carney complex (CNC), and (3) familial isolated pituitary adenomas (FIPA).

Multiple endocrine neoplasia type 1 (MEN1)

Autosomal-dominant MEN1 syndrome is associated with a loss of heterozygosity (LOH) on chromosome locus 11q13 (57). The MEN1 gene tumor suppressor gene encodes a 610-amino acid protein known as menin. More than 550 mutations of the MEN1 gene have been identified. Pituitary tumors occur in approximately 30–50% of patients with MEN1 (58), but the frequency of GH-producing pituitary tumors in MEN1 patients is only about 10% (59).

Carney complex (CNC)

Pituitary adenomas occur in 10–20% of patients with the autosomal-dominant CNC, and these are invariably GH-secreting tumors (60).

CNC is associated with a LOH on chromosomal locus 17q22–24. Germline mutations in the protein kinase A (PKA) regulatory subunit 1 (PRKAR1A) gene have been identified (61). Loss of function of this regulatory subunit results in constitutive activation of PKA that increases signaling through a pathway that enhances proliferation of the GH-producing cells in the pituitary.

Familial isolated pituitary adenomas (FIPA)

Inactivating germline mutations in the aryl hydrocarbon receptor that interacts with tumor suppressor protein (AIP) can be found in 40–50% of families that have a case of acromegaly occurring along with FIPA (62–66). To date, about 50 different AIP mutations have been identified.

AIP mutation-positive acromegaly or gigantism is generally diagnosed 10 years earlier than sporadic acromegaly. GH-producing tumors in AIP-positive patients (mostly males) more frequently display extrasellar growth, exhibit more aggressive characteristics, and have a tendency for higher accelerated growth than sporadic tumors. These tumors are also more frequently associated with onset in childhood and adolescence, thus presenting more frequently with gigantism (67),(68). Furthermore, AIP mutation-positive GH-producing tumors appear to be less responsive to medical therapy with somatostatin analogs and dopamine agonists.

In 2010, Chahal and co-workers extracted DNA from a tooth of the Irish giant, Charles Byrne (1761–1783; 2.31 m, [7 ft 7 in]), and identified a germline mutation in the AIP gene. Four contemporary Northern Irish families who presented with gigantism, acromegaly, or prolactinoma have the same mutation and haplotype associated with the mutated gene. Using coalescent theory, they came to the conclusion that these persons share a common ancestor who lived about 57–66 generations earlier (69).

Familial acromegaly and gigantism only account for a very tiny proportion of all pituitary adenomas and can be related to MEN 1 and CNC syndromes as well as to mutations in the AIP gene. AIP mutations are very common in gigantism.

REFERENCES
[1]
P Marie .
Sur deux cas d'acromégalie: hypertrophie singulière non congénitale des extrémités supérieures, inférieures et céphalique.
Rev Méd Liege, 6 (1886), pp. 333
[2]
A Verga .
Caso singolare de prosopectasia.
Reale Istituto Lombardo di Scienze e Lettere Bendiconti Classe di Scienze Matematiche e Naturali, 1 (1864), pp. 17
[3]
V Brigidi .
Studii anatomopatologica sopra un uomo divenuto stranamente deforme per chronica infirmita.
Societe medico-fisica Fiorentina, (1877),
[4]
O Minkowski .
Über einem Fall von Akromegalie.
Berliner Klin Wochensch, 21 (1887), pp. 4
[5]
R Massolongo .
Hyperfonction de la glande pituitaire et acromégalie: gigantisme et acromégalie.
Rev Neurol, 3 (1895), pp. 225
[6]
A Tamburini .
Beitrag zur Pathogenese der Akromegalie.
Zentralblatt für Nervenheilkunde und Psychiatrie, 17 (1894), pp. 625
[7]
W Hutchinson .
The pituitary gland as a factor in acromegaly and giantism.
New York Med J, 67 (1898), pp. 4
[8]
W Hutchinson .
The pituitary gland as a factor in acromegaly and giantism.
New York Med J, 67 (1898), pp. 3
[9]
W Hutchinson .
The pituitary gland as a factor in acromegaly and giantism.
New York Med J, 72 (1898), pp. 100
[10]
W Hutchinson .
The pituitary gland as a factor in acromegaly and giantism.
New York Med J, 72 (1898), pp. 133
[11]
C Benda .
Die microscopischen Befunde bei vier Fällen von Akromegalie.
Dtsch Med Wochensch, 27 (1901), pp. 64
[12]
C Benda .
Beiträge zur normalen und pathologischen Histologie der menschlichen Hypophysis cerebri.
Berliner Klin Wochensch, (1900), pp. 1205-1210
[13]
H Henrot .
Notes de clinique médicale: des lésions anatomiques et de la nature du myxoedéme.
Reims, (1882), pp. 112-122
[14]
H Henrot .
Hypertrophie générale progressive: notes de clinique médicale, (1877),
[15]
P Marie .
L'acromégalie.
Nouvelle Iconographie de la Salpétrière, I (1888), pp. 173
[16]
P Marie .
L'acromégalie.
Nouvelle Iconographie de la Salpétrière, I (1888), pp. 229
[17]
P Marie .
L'acromégalie.
Nouvelle Iconographie de la Salpétrière, II (1889), pp. 327
[18]
P Marie .
L'acromégalie.
Nouvelle Iconographie de la Salpétrière, II (1889), pp. 139
[19]
P Marie .
L'acromégalie.
Nouvelle Iconographie de la Salpétrière, II (1889), pp. 188
[20]
P Marie .
L'acromégalie.
Nouvelle Iconographie de la Salpétrière, II (1889), pp. 45
[21]
P Marie .
L'acromégalie.
Nouvelle Iconographie de la Salpétrière, II (1889), pp. 224
[22]
Souza-Leite JD. De l'acromégalie, maladie de Marie. Paris, 1890
[23]
G Guinon .
De l'acromégalie.
Gazette Hopitaux Paris, 62 (1889), pp. 1161
[24]
CF Fritsche , TAE Klebs .
Ein Beitrage zur Pathologie des Riesenwuchses.
Klinische und pathologisch anatomische Untersuchungen. Leipzig.: Vogel FCW, (1884),
[25]
K Langer .
Ueber Wachstum des menschlichen Skelets, mit Bezug auf den Riesen.
Denkschr der Kais Akad der Wissensch zu Wien Math -naturw, (1872),
[26]
M Sternberg .
Beiträge zur Kenntnis der Akromegalie.
Z Klin Med, 27 (1894), pp. 86
[27]
Sternberg M. Die Akromegalie. In: Nothnagel C W H , editor. Nothnagel's Encyclopedia. Vienna, 1897
[28]
DJ Cunningham .
The skeleton of the Irish Giant Cornelius Magrath.
Trans Royal Irish Acad, 29 (1891), pp. 553
[29]
DJ Cunningham .
Cornelius Magrath, the Irish Giant.
Man, 3 (1903), pp. 50
[30]
DJ Cunningham .
The Skull and Some of the Other Bones of the Skeleton of Cornelius Magrath, the Irish Giant.
The Journal of the Anthropological Institute of Great Britain and Ireland, 21 (1892), pp. 41
[31]
C Dana .
On acromegaly and gigantism, with unilateral facial hypertrophy.
J Nerv Mental Dis, 18 (1893), pp. 725-738
[32]
W Hutchinson .
A case of acromegaly in a giantess.
Am J Med Sci, 110 (1895), pp. 190-201
[33]
E Brissaud , H Meige .
Gigantisme et acromégalie.
Journal de médicine et de chirurgie pratiques, 66 (1895), pp. 49
[34]
P-E Launois , P Roy .
Études Biologiques sur les Géants.
Paris: Masson et Cie, (1904),
[35]
JM Pearce .
Pituitary tumours and acromegaly (Pierre Marie's disease).
J Neurol Neurosurg Psychiatry, 73 (2002), pp. 394
[36]
R Sheaves .
A history of acromegaly.
Pituitary, 2 (1999), pp. 7-28
[37]
A Fraenkel , E Stadelmann , C Benda .
Klinische und anatomische Beiträge zur Lehre von der Akromegalie1. I. (Aus der ersten medizinischen Abtheilung.) A. Fraenkel: Zwei Fälle von Akromegalie. 1 Vorträge, gehalten im Verein für innere Medizin am 1. und 29. April 1901.
Dtsch Med Wochensch, 27 (1901), pp. 513-517
[38]
A Fraenkel , E Stadelmann , C Benda .
Klinische und anatomische Beiträge zur Lehre von der Akromegalie. II. (Aus der II. medizinischen Abtheilung.) E. Stadelmann: Zwei Fälle von Akromegalie.
Dtsch Med Wochensch, 27 (1901), pp. 536-537
[39]
N Orengo .
Figura Gigante.
Torino, Italy: Giulio Einaudi editore s.p.a, (1992),
[40]
O Marechal .
La Biographie, les Voyages et la vie des Géants Hugo les plus Grands sur terre.
Comptes rendus des Facultés de Médecine, Choisy-Le-Roi, Imprimeries Réunies de Choisy-Le-Roi, (1908),
[41]
D Symmers .
Acromegalic Giantism.
Interstate Med J, 24 (1917), pp. 5
[42]
H Cushing .
The pituitary body and its disorders: clinical states produced by disorders of the hypophysis cerebri, J. B. Lippincott, (1912),
[43]
A Lewis .
Acromegaly in one of uniovular twins.
J Neurol Psychopathol, s1–15 (1934), pp. 1-11
[44]
G Koch , T Tiwisina .
Beitrag zur Erblichkeit der Akromegalie und der Hyperostosis generalisata mit Pachydermie.
Arztl Forsch, 13 (1959), pp. 504
[45]
SR Levin , FD Hofeldt , N Becker , CB Wilson , R Seymour , PH Forsham .
Hypersomatotropism and acanthosis nigricans in two brothers.
Arch Intern Med, 134 (1974), pp. 365-367
[46]
M Kurisaka , Y Takei , T Tsubokawa , N Moriyasu .
Growth hormone-secreting pituitary adenoma in uniovular twin brothers: case report.
Neurosurgery, 8 (1981), pp. 226-230
[47]
MK Jones , PJ Evans , IR Jones , JP Thomas .
Familial acromegaly.
Clin Endocrinol (Oxf), 20 (1984), pp. 355-358
[48]
RG Pestell , FP Alford , JD Best .
Familial acromegaly.
Acta Endocrinol (Copenh), 121 (1989), pp. 286-289
[49]
MI McCarthy , K Noonan , JA Wass , JP Monson .
Familial acromegaly: studies in three families.
Clin Endocrinol (Oxf), 32 (1990), pp. 719-728
[50]
G Tamburrano , ML Jaffrain-Rea , A Grossi , A Lise , C Bulletta .
L'acromégalie familiale: a propos d'une observation. Revue de la litterature.
Ann Endocrinol (Paris), 53 (1992), pp. 7
[51]
A Matsuno , A Teramoto , S Yamada , S Kitanaka , T Tanaka , N Sanno , et al.
Gigantism in sibling unrelated to multiple endocrine neoplasia: case report.
Neurosurgery, 35 (1994), pp. 952-955
[52]
P Benlian , S Giraud , N Lahlou , M Roger , C Blin , C Holler , et al.
Familial acromegaly: a specific clinical entity--further evidence from the genetic study of a three-generation family.
Eur J Endocrinol, 133 (1995), pp. 451-456
[53]
JL Stock , MR Warth , BT Teh , JA Coderre , JH Overdorf , G Baumann , et al.
A kindred with a variant of multiple endocrine neoplasia type 1 demonstrating frequent expression of pituitary tumors but not linked to the multiple endocrine neoplasia type 1 locus at chromosome region 11q13.
J Clin Endocrinol Metab, 82 (1997), pp. 486-492
[54]
A Verloes , A Stevenaert , BT Teh , P Petrossians , A Beckers .
Familial acromegaly: case report and review of the literature.
Pituitary, 1 (1999), pp. 273-277
[55]
RF Gagel , IE McCutcheon .
Images in clinical medicine. Pituitary gigantism.
N Engl J Med, 340 (1999), pp. 524
[56]
LA Frohman , K Eguchi .
Familial acromegaly.
Growth Horm IGF Res, 14 Suppl A (2004), pp. 6
[57]
C Larsson , B Skogseid , K Oberg , Y Nakamura , M Nordenskjold .
Multiple endocrine neoplasia type 1 gene maps to chromosome 11 and is lost in insulinoma.
Nature, 332 (1988), pp. 85-87
[58]
BT Teh , S Kytola , F Farnebo , A Höög , S Kytölä , E Korpi-Hyövälti , et al.
Mutation analysis of the MEN1 gene in multiple endocrine neoplasia type 1, familial acromegaly and familial isolated hyperparathyroidism.
J Clin Endocrinol Metab, 83 (1998), pp. 2621-2626
[59]
B Verges , F Boureille , P Goudet , A Murat , A Beckers , G Sassolas , et al.
Pituitary disease in MEN type 1 (MEN1): data from the France-Belgium MEN1 multicenter study.
J Clin Endocrinol Metab, 87 (2002), pp. 457-465
[60]
SD Pack , LS Kirschner , E Pak , Z Zhuang , JA Carney , CA Stratakis .
Genetic and histologic studies of somatomammotropic pituitary tumors in patients with the "complex of spotty skin pigmentation, myxomas, endocrine overactivity and schwannomas" (Carney complex).
J Clin Endocrinol Metab, 85 (2000), pp. 3860-3865
[61]
LS Kirschner , JA Carney , SD Pack , SE Taymans , C Giatzakis , YS Cho , et al.
Mutations of the gene encoding the protein kinase A type I-alpha regulatory subunit in patients with the Carney complex.
Nat Genet, 26 (2000), pp. 89-92
[62]
V Vasilev , AF Daly , P Petrossians , S Zacharieva , A Beckers .
Familial pituitary tumor syndromes.
Endocr Pract, 17 (2011), pp. 41-46
[63]
AF Daly , MA Tichomirowa , A Beckers .
The epidemiology and genetics of pituitary adenomas.
Best Pract Res Clin Endocrinol Metab, 23 (2009), pp. 543-554
[64]
HS Chahal , JP Chapple , LA Frohman , AB Grossman , M Korbonits .
Clinical, genetic and molecular characterization of patients with familial isolated pituitary adenomas (FIPA).
Trends Endocrinol Metab, 21 (2010), pp. 419-427
[65]
LK Pinho , NL Vieira , LE Wildemberg , AB Moraes , CM Takiya , LA Frohman , et al.
Familial isolated pituitary adenomas experience at a single center: clinical importance of AIP mutation screening.
Arq Bras Endocrinol Metabol, 54 (2010), pp. 698-704
[66]
Z Ozfirat , M Korbonits .
AIP gene and familial isolated pituitary adenomas.
Mol Cell Endocrinol, 326 (2010), pp. 71-79
[67]
AF Daly , MA Tichomirowa , P Petrossians , E Heliövaara , ML Jaffrain-Rea , A Barlier , et al.
Clinical characteristics and therapeutic responses in patients with germ-line AIP mutations and pituitary adenomas: an international collaborative study.
J Clin Endocrinol Metab, 95 (2010), pp. E373-E383
[68]
MA Tichomirowa , A Barlier , AF Daly , ML Jaffrain-Rea , CL Ronchi , M Yaneva , et al.
High prevalence of AIP gene mutations following focused screening in young patients with sporadic pituitary macroadenomas.
Eur J Endocrinol, 165 (2011), pp. 509-515
[69]
HS Chahal , K Stals , M Unterlander , DJ Balding , MG Thomas , AV Kumar , et al.
AIP mutation in pituitary adenomas in the 18th century and today.
N Engl J Med, 364 (2011), pp. 43-50

No potential conflict of interest was reported.

Copyright © 2012. CLINICS
Article options
es en pt

¿Es usted profesional sanitario apto para prescribir o dispensar medicamentos?

Are you a health professional able to prescribe or dispense drugs?

Você é um profissional de saúde habilitado a prescrever ou dispensar medicamentos