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Ultrastructural pathology of lymphocytes in neuronal ceroid-lipofuscinoses.

Lymphocytes were studied by electron microscopy in five cases of neuronal ceroid-lipofuscinoses (NCL), one of infantile, three of late infantile and one of juvenile types. Each type of NCL revealed specific cytoplasmic inclusions, namely, granular bodies in the infantile form, curvilinear profiles in the late infantile form and fingerprint profiles within vacuoles in the juvenile type. Survey of the literature also confirmed the high correlation between subtype of NCL and type of lymphocytic inclusion. The electron microscopic examination lymphocytes offers easily available diagnostic informations.

Brain Diseases, Metabolic

Diagnostic significance of myeloperoxidase assay in neuronal ceroid-lipofuscinoses (Batten-Vogt syndrome).

In 13 patients with morphologically established juvenile neuronal ceroid lipofuscinosis and 13 controls, the activity of leukocyte peroxidase (myeloperoxidase) was determined under various conditions: Measurement of water-soluble enzyme, the buffer-soluble enzyme, and the leukocyte homogenate; application of phosphate buffer (pH7.0) and borate buffer (pH7.6); employment of 9mM, 28mM, and 55mMp-phenylenediamine as hydrogen donor; and measurement of the specific enzyme extinction at 10, 60, and 180 seconds. A significant difference between mean values for patients and controls could not be established. In both groups, single individuals exhibited definitely increased or reduced enzyme concentrations, leaving us, however, without an adequate explanation for these observations. Our studies indicate that determination of myeloperoxidase has no value in establishing the diagnosis of neuronal ceroid-lipofuscinoses.

Adolescent

Significance of muscle biopsies in neuronal ceroid-lipofuscinoses.

Muscle specimens obtained at necropsy from four cases of neuronal ceroid-lipofuscinosis (NCL), three of the juvenile and one of the late infantile type, and a muscle biopsy from a fifth patient with the juvenile type of NCL, all showed curvilinear bodies typical of NCL within the muscle fibres. The pigments were autofluorescent. It appears that skeletal muscle is a reliable tissue source for the diagnosis of these disorders by biopsy.

Adolescent

Ultrastructural investigations of peripheral nerves in neuronal ceroid-lipofuscinoses (NCL).

Specimens of brachial plexus, sural nerve and two cranial nerves of one patient with Jansky-Bielschowsky type and 3 patients with the Spielmeyer-Sjögren type of NCL were studied by electron microscopy. Significant light microscopic changes were absent in all specimens. Ultrastructurally, curvilinear and/or fingerprint inclusions were present in each case, located chiefly in Schwann cells. These diagnostic findings were, however, overshadowed by masses of lamellar pi-granule-like cytosomes, usually not mixed with curvilinear or finger-print profiles in the juvenile cases and only rarely associated with curvilinear profiles in the late infantile case. Since secondary changes of axons and myelin sheaths were mild, these lamellar cytosomes might indicate chronic damage to Schwann cells, perhaps by "wear and tear" as seen in aging as well as NCL. On account of the abundance of pi-granules in NCL, peripheral nerve biopsy appears less suitable for confirming this diagnosis than biopsy of skin, striated muscle and rectal tissue.

Humans

So-called neuronal ceroid-lipofuscinosis. Histochemical study with evidence of extractibility of the stored material.

Histochemical study of so-called neuronal ceroid-lipofuscinoses (NCL) showed that the stored material is extractable in the unfixed state especially with alkalized or acidified chloroform-methanol mixtures when compared with other solvents. The extractability was strongly reduced or almost abolished by fixation with formaldehyde. Identical results were obtained with the type one storage material (see Elleder, 1977) in all late infantile cases and in a juvenile case studied, in which, contrary to the infantile form, the stored material displayed a significantly higher degree of extractability. As far as the extractability of the type two storage material is concerned insufficient data have been accumulated, but it seems that it does not differ significantly from the first one. In the control group of lipopigments ceroid was found to be much more extractable under identical conditions than matured lipofuscin which was almost entirely resistant to all extraction procedures. The significance of the results is discussed.

Adolescent

On the ultrastructural diversity and essence of residual bodies in neuronal ceroid-lipofuscinosis.

In 4 patients with neuronal ceroid-lipofuscinoses (NCL) (3 patients with the junvenile type, 1 patient with the late infantile type), the ultrastructural spectrum of residual bodies in the central and peripheral nervous system presented curvilinear profiles in all cases and regions investigated and many more ultrastructural patterns within and beyond regions commonly accessible to biopsy, probably due to age dependence, local tissue and cellular biochemical factors. Sampling from basal ganglia especially yielded combined curvilinear-fingerpint bodies, from peripheral ganglia additional membranous bodies. Residual bodies in NCL were present in almost every cell type, similar to the distribution of regular lipofuscin. Although the classical subgroups of NCL contain electronmicroscopically well defined residual bodies, permitting distinction of the late infantile type from the juvenile type, the ultrastructural differences are more of a quantitative than of a qualitative nature. However, they are not pathognomonic. N.m.r. spectra of ceroid and lipofuscin support the concept of their biochemical similarity, and argue against the proposition that they contain a single major component.

Brain

Histochemical diagnosis of lipidoses.

Contemporary possibilities for the histochemical diagnosis of lipidoses are demonstrated in examples of phospholipidoses, Gaucher's disease, Fabry's disease, sulphatidosis, gangliosidosis and neuronal ceroid-lipofuscinoses.

Biopsy

CLN3 transcript complexity revealed by long-read RNA sequencing analysis.

BACKGROUND: Batten disease is a group of rare inherited neurodegenerative diseases. Juvenile CLN3 disease is the most prevalent type, and the most common pathogenic variant shared by most patients is the "1-kb" deletion which removes two internal coding exons (7 and 8) in CLN3. Previously, we identified two transcripts in patient fibroblasts homozygous for the 1-kb deletion: the 'major' and 'minor' transcripts. To understand the full variety of disease transcripts and their role in disease pathogenesis, it is necessary to first investigate CLN3 transcription in "healthy" samples without juvenile CLN3 disease. METHODS: We leveraged PacBio long-read RNA sequencing datasets from ENCODE to investigate the full range of CLN3 transcripts across various tissues and cell types in human control samples. Then we sought to validate their existence using data from different sources. RESULTS: We found that a readthrough gene affects the quantification and annotation of CLN3. After taking this into account, we detected over 100 novel CLN3 transcripts, with no dominantly expressed CLN3 transcript. The most abundant transcript has median usage of 42.9%. Surprisingly, the known disease-associated 'major' transcripts are detected. Together, they have median usage of 1.5% across 22 samples. Furthermore, we identified 48 CLN3 ORFs, of which 26 are novel. The predominant ORF that encodes the canonical CLN3 protein isoform has median usage of 66.7%, meaning around one-third of CLN3 transcripts encode protein isoforms with different stretches of amino acids. The same ORFs could be found with alternative UTRs. Moreover, we were able to validate the translational potential of certain transcripts using public mass spectrometry data. CONCLUSION: Overall, these findings provide valuable insights into the complexity of CLN3 transcription, highlighting the importance of studying both canonical and non-canonical CLN3 protein isoforms as well as the regulatory role of UTRs to fully comprehend the regulation and function(s) of CLN3. This knowledge is essential for investigating the impact of the 1-kb deletion and rare pathogenic variants on CLN3 transcription and disease pathogenesis.

Humans

Further description of the phenotypic spectrum of neuronal ceroid lipofuscinosis type 11.

PURPOSE: Ceroid lipofuscinosis type 11 (CLN11) is a very rare disease, being reported in only 13 unrelated families so far. Further reports are necessary to comprehend the clinical phenotype of this condition. This article aims to report 9 additional cases of CLN11 from 9 unrelated Latin American families presenting with relatively slow disease progression. METHODS: This was a retrospective observational study including patients with CLN11. Patients were identified through an active search for granulin precursor gene (GRN) pathogenic variants across the entire database of next-generation sequencing of a commercial laboratory and by contacting attending physicians to check for clinical and radiologic findings compatible with a neuronal ceroid lipofuscinosis phenotype. RESULTS: Nine CLN11 patients from unrelated families were evaluated. Age of onset varied between 3 to 17 years. The most common findings were visual impairment, cerebellar ataxia, seizures, myoclonus, and cognitive decline. One patient had a previously unreported finding of cervical, perioral, and tongue myoclonus. Most of the patients were able to walk unassisted after an average of 14.2 years (SD 4.76 y) from disease onset. CONCLUSION: We describe 9 new cases of a very rare type of neuronal ceroid lipofuscinosis (CLN11) from Latin America with a recurrent p.(Gln257ProfsTer27) and a novel p.(Cys83Ter) nonsense variant. Our findings suggest that a slowly progressive neuronal ceroid lipofuscinosis might be a clue for the diagnosis of CLN11.

Humans

Phenotypic and Genetic Characterization of 64 Egyptian Children With Neuronal Ceroid Lipofuscinosis.

BACKGROUND: Neuronal ceroid lipofuscinoses (NCLs) are the most common neurodegenerative diseases in childhood. This study aimed to investigate the phenotypic and genetic spectrum of NCLs in Egypt. METHODS: This descriptive study involved children with NCLs diagnosed and managed at five Egyptian centers between 2019 and 2024. Demographic, clinical, brain imaging, and genetic data were systematically evaluated. Identified variants in NCL-related genes were classified following the American College of Medical Genetics and Genomics guidelines. RESULTS: The cohort included 64 Egyptian children (from 57 families) with eight NCL types. The most commonly identified genotype was CLN2 (17/64, 27%), followed by CLN1 and CLN7 (12/64, 19% each). Patients generally exhibited the classic manifestations of NCLs, particularly motor regression (64/64, 100%), cognitive decline (64/64, 100%), language impairment (64/64, 100%), epilepsy (57/64, 89%), and vision loss (47/64, 73%). Notably, developmental regression (12/17, 71%) was the predominant presenting symptom for CLN2. Brain imaging generally showed typical cerebral and cerebellar atrophy in 95% (61/64) and 84% (54/64) of cases, respectively. Nevertheless, thalamic abnormalities were observed in only 16% (10/64) of cases. A total of 46 distinct variants were identified across eight NCL-related genes, including 23 novel ones, with the majority (33/46, 72%) being private. There was a median diagnostic delay of 2 years, and none of the patients received specific therapy. CONCLUSIONS: This study reports the largest cohort of children with NCLs from Egypt, including 12 patients with the less-commonly reported CLN7 subtype, which expands the demographic, clinical, and molecular spectrum of these diseases.

Humans

The Case for Master Protocols for Rare Neurological Diseases.

Master protocol trials allow for simultaneous multiple hypothesis testing within a common framework and might be applicable for rare diseases. In May 2025, the Network for Excellence in Neuroscience Clinical Trials convened a multistakeholder conference to discuss master protocol trials in rare neurological disorders. In this paper, we explore how master protocol trial designs may apply to rare neurological disorders, using the neuronal ceroid lipofuscinoses as an example. Through shared protocol elements and trial infrastructure, master protocols may decrease cost and improve efficiency in testing potential therapeutics in rare disease, accelerating the delivery of urgently needed therapies to patients. ANN NEUROL 2026;100:477-486.

Humans

An ultramicroscopic study of the skin in the diagnosis of the infantile and late infantile types of ceroid-lipofuscinosis.

A skin biopsy was carried out in two children suffering from early infantile (Santavuori) and late infantile (Jansky-Bielschowsky) types of ceroid-lipofuscinosis. In both cases cytoplasmic inclusions, identical with those found in neurones, were present in the skin. Skin biopsy thus appears as a simple technique for the diagnosis of the ceroid-lipofuscinoses.

Biopsy

[The so-called amaurotic idiocies. Clinical, morphological and biochemical findings as a basis for modern classification].

First of all seven of our own thoroughly investigated cases of so-called amaurotic idiocies are presented, they are two infantile, two juvenile, two late infantile one, as well as one adult case. The two infantile cases represent the typ of a GM2-gangliosidosis: with cerebral symptoms and cherry-red spot in the macula they correspond clinically to the typical picture of Tay-Sachs disease. Lightmicroscopically they show neuronal storage, electronmicroscopically a deposition of "membranous cytoplasmic bodies" and biochemically a strong increase in ganglioside GM2. The two juvenile cases correspond in their symptoms and findings to the so-called ceroid-lipofuscinoses or "Myoclonic variant of amaurotic idiocy", respectively. Clinically most remarkable is the deterioration of vision caused by retinitis-pigmentosa-like changes of the fundus, which sets in at the beginning of the disease and precedes the cerebral symptoms by years. The extinguished electroretinogramm corresponds in the histological retina findings to a severe lesion of the layer of rods and cones in the sense of a tapeto-retinal degeneration. Neuropathologically finegranular, Sudan-Black-B- and PAS-positive material is mainly but not exclusively stored in the neurons. The electronmicroscope shows them to be lipofuscin-like inclusions, as well as "curvilinear" or "fingerprint-bodies". Depositions are also to be found in astrocytes and in the cells of the vascular walls. The ganglioside pattern is normal in the brain tissue of the biochemically investigated case. Of the two late infantile cases the first represents a GM2-gangliosidosis, the second one corresponds to the ceroid-lipofuscinosis. The adult patient, who suffered from an ill-defined psychiatric disease and died at the age of 51 presents a diagnostically problematic case, showing a relatively slight, regionally rather differently accentuated intraneuronal storage of granular material and biochemically a slight increase in ganglioside GM2. On discussing our own findings and commenting on the relevant literature various aspects of amaurotic idiocies are considered, such as genetics, neuropsychiatry, ophthalmology, pathomorphology and biochemistry. In this respect special attention is paid to the pathomorphological substrate documented, as localization, degree and kind of tissue changes determine the clinical picture. This is also the case for the correlation between the findings of the different fields, so e.g. concerning the ophthalmological findings it is shown, that in gangliosidoses with preserved ERG histologically a storage in the nerve cells of the ganglion cell-layer only is to be found, where as the ceroid-lipofuscinoses with early onset of deterioration of vision and extinguished ERG in the histological picture of the retina show an additional severe lesion of the layer of rods and cones...

Adolescent

Morphological study of skin biopsy specimens: a contribution to the diagnosis of metabolic disorders with involvement of the nervous system.

Skin biopsies were performed in 71 patients affected by the following disorders: ceroid-lipofuscinoses (17 cases), mucopolysaccharidoses (13 cases) mucolipidoses (seven cases), lipidoses (18 cases), metabolic diseases to be further classified (seven cases), acid maltase deficiency (nine cases). After a survey of semithin sections, the skin specimens were examined with the electron microscope. In most of the cases, epithelial cells, hair follicles, fibroblasts, eccrine sweat glands, smooth muscle cells, sebaceous glands, and nerve bundles were available. In 62 cases (87.3%), positive diagnostic information was obtained while in seven other cases (9.9%) suggestive features were discovered which could support the final diagnosis. In only two cases (2.8%) were the results negative. We conclude that, in association with enzymatic assays in the cultured fibroblasts, a skin biopsy specimen provides a simple opportunity for the combination of both morphological and biochemical diagnosis of storage disorders, precluding major surgical procedures.

Adolescent